code stringlengths 2 1.05M | repo_name stringlengths 5 101 | path stringlengths 4 991 | language stringclasses 3 values | license stringclasses 5 values | size int64 2 1.05M |
|---|---|---|---|---|---|
---
layout: default
---
<article>
<div class="center">
<h1>{{ page.title }}</h1>
<time>{{ page.date | date: '%B %-d, %Y' }}</time>
</div>
<div class="divider"></div>
{{ content }}
</article>
<div class="page-navigation">
{% if page.next.url %}
<a class="next" href="{{page.next.url | prepend:site.baseurl }}" title="NEXT: {{page.next.title}}"><<</a>
<span> · </span>
{% endif %}
<a class="home" href="{{site.baseurl}}/" title="Back to Homepage">Home</a>
{% if page.previous.url %}
<span> · </span>
<a class="prev" href="{{page.previous.url | prepend:site.baseurl}}" title="PREV: {{page.previous.title}}">>></a>
{% endif %}
{% include disqus.html %}
</div>
| XingyuZhou989/blog | _layouts/post.html | HTML | mit | 720 |
<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="utf-8" />
<title>User agent detail - Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36</title>
<link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/materialize/0.97.3/css/materialize.min.css">
<link href="https://fonts.googleapis.com/icon?family=Material+Icons" rel="stylesheet">
<link href="../circle.css" rel="stylesheet">
</head>
<body>
<div class="container">
<div class="section">
<h1 class="header center orange-text">User agent detail</h1>
<div class="row center">
<h5 class="header light">
Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
</h5>
</div>
</div>
<div class="section">
<table class="striped"><tr><th></th><th colspan="3">General</th><th colspan="5">Device</th><th colspan="3">Bot</th><th colspan="2"></th></tr><tr><th>Provider</th><th>Browser</th><th>Engine</th><th>OS</th><th>Brand</th><th>Model</th><th>Type</th><th>Is mobile</th><th>Is touch</th><th>Is bot</th><th>Name</th><th>Type</th><th>Parse time</th><th>Actions</th></tr><tr><th colspan="14" class="green lighten-3">Test suite</th></tr><tr><td>UAParser<br /><small>v0.5.0.2</small><br /><small>vendor/thadafinser/uap-core/tests/test_device.yaml</small></td><td> </td><td><i class="material-icons">close</i></td><td> </td><td style="border-left: 1px solid #555">Simvalley</td><td>SP-121</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-cfed3005-df48-4fa8-bf03-4f6ef8988f59">Detail</a>
<!-- Modal Structure -->
<div id="modal-cfed3005-df48-4fa8-bf03-4f6ef8988f59" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>UAParser result detail</h4>
<p><pre><code class="php">Array
(
[user_agent_string] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
[family] => SP-121
[brand] => Simvalley
[model] => SP-121
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><th colspan="14" class="green lighten-3">Providers</th></tr><tr><td>BrowscapFull<br /><small>6014</small><br /></td><td>Chrome 30.0</td><td>Blink </td><td>Android 4.2</td><td style="border-left: 1px solid #555"></td><td></td><td>Mobile Phone</td><td>yes</td><td>yes</td><td style="border-left: 1px solid #555"></td><td></td><td></td><td>0.021</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-47a9cd06-e213-4882-bc34-db6aed664223">Detail</a>
<!-- Modal Structure -->
<div id="modal-47a9cd06-e213-4882-bc34-db6aed664223" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>BrowscapFull result detail</h4>
<p><pre><code class="php">stdClass Object
(
[browser_name_regex] => /^mozilla\/5\.0 \(.*linux.*android.4\.2.*\) applewebkit\/.* \(khtml.* like gecko.*\) chrome\/30\..*safari\/.*$/
[browser_name_pattern] => mozilla/5.0 (*linux*android?4.2*) applewebkit/* (khtml* like gecko*) chrome/30.*safari/*
[parent] => Chrome 30.0 for Android
[comment] => Chrome 30.0
[browser] => Chrome
[browser_type] => Browser
[browser_bits] => 32
[browser_maker] => Google Inc
[browser_modus] => unknown
[version] => 30.0
[majorver] => 30
[minorver] => 0
[platform] => Android
[platform_version] => 4.2
[platform_description] => Android OS
[platform_bits] => 32
[platform_maker] => Google Inc
[alpha] =>
[beta] =>
[win16] =>
[win32] =>
[win64] =>
[frames] => 1
[iframes] => 1
[tables] => 1
[cookies] => 1
[backgroundsounds] =>
[javascript] => 1
[vbscript] =>
[javaapplets] =>
[activexcontrols] =>
[ismobiledevice] => 1
[istablet] =>
[issyndicationreader] =>
[crawler] =>
[isfake] =>
[isanonymized] =>
[ismodified] =>
[cssversion] => 3
[aolversion] => 0
[device_name] => general Mobile Phone
[device_maker] => unknown
[device_type] => Mobile Phone
[device_pointing_method] => touchscreen
[device_code_name] => general Mobile Phone
[device_brand_name] => unknown
[renderingengine_name] => Blink
[renderingengine_version] => unknown
[renderingengine_description] => a WebKit Fork by Google
[renderingengine_maker] => Google Inc
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>BrowscapLite<br /><small>6014</small><br /></td><td>Chrome </td><td><i class="material-icons">close</i></td><td>Android </td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>Mobile Phone</td><td>yes</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0.007</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-42bb56ba-b834-47c5-bea0-c0270e9ab371">Detail</a>
<!-- Modal Structure -->
<div id="modal-42bb56ba-b834-47c5-bea0-c0270e9ab371" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>BrowscapLite result detail</h4>
<p><pre><code class="php">stdClass Object
(
[browser_name_regex] => /^mozilla\/5\.0 \(.*linux.*android.*\) applewebkit\/.* \(khtml.* like gecko\) chrome\/.*safari\/.*$/
[browser_name_pattern] => mozilla/5.0 (*linux*android*) applewebkit/* (khtml* like gecko) chrome/*safari/*
[parent] => Chrome Generic for Android
[comment] => Chrome Generic
[browser] => Chrome
[browser_type] => unknown
[browser_bits] => 0
[browser_maker] => unknown
[browser_modus] => unknown
[version] => 0.0
[majorver] => 0
[minorver] => 0
[platform] => Android
[platform_version] => unknown
[platform_description] => unknown
[platform_bits] => 0
[platform_maker] => unknown
[alpha] => false
[beta] => false
[win16] => false
[win32] => false
[win64] => false
[frames] => false
[iframes] => false
[tables] => false
[cookies] => false
[backgroundsounds] => false
[javascript] => false
[vbscript] => false
[javaapplets] => false
[activexcontrols] => false
[ismobiledevice] => 1
[istablet] =>
[issyndicationreader] => false
[crawler] => false
[isfake] => false
[isanonymized] => false
[ismodified] => false
[cssversion] => 0
[aolversion] => 0
[device_name] => unknown
[device_maker] => unknown
[device_type] => Mobile Phone
[device_pointing_method] => unknown
[device_code_name] => unknown
[device_brand_name] => unknown
[renderingengine_name] => unknown
[renderingengine_version] => unknown
[renderingengine_description] => unknown
[renderingengine_maker] => unknown
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>BrowscapPhp<br /><small>6014</small><br /></td><td>Chrome 30.0</td><td><i class="material-icons">close</i></td><td>Android </td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>Mobile Phone</td><td>yes</td><td>yes</td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.016</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-ad0041a2-b0f4-43f6-a70d-cad1443caa68">Detail</a>
<!-- Modal Structure -->
<div id="modal-ad0041a2-b0f4-43f6-a70d-cad1443caa68" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>BrowscapPhp result detail</h4>
<p><pre><code class="php">stdClass Object
(
[browser_name_regex] => /^mozilla\/5\.0 \(.*linux.*android.4\.2.*\) applewebkit\/.* \(khtml.* like gecko.*\) chrome\/30\..*safari\/.*$/
[browser_name_pattern] => mozilla/5.0 (*linux*android?4.2*) applewebkit/* (khtml* like gecko*) chrome/30.*safari/*
[parent] => Chrome 30.0 for Android
[comment] => Chrome 30.0
[browser] => Chrome
[browser_type] => unknown
[browser_bits] => 0
[browser_maker] => Google Inc
[browser_modus] => unknown
[version] => 30.0
[majorver] => 30
[minorver] => 0
[platform] => Android
[platform_version] => unknown
[platform_description] => unknown
[platform_bits] => 0
[platform_maker] => unknown
[alpha] => false
[beta] => false
[win16] => false
[win32] => false
[win64] => false
[frames] => false
[iframes] => false
[tables] => false
[cookies] => false
[backgroundsounds] => false
[javascript] => false
[vbscript] => false
[javaapplets] => false
[activexcontrols] => false
[ismobiledevice] => 1
[istablet] =>
[issyndicationreader] => false
[crawler] =>
[isfake] => false
[isanonymized] => false
[ismodified] => false
[cssversion] => 0
[aolversion] => 0
[device_name] => unknown
[device_maker] => unknown
[device_type] => Mobile Phone
[device_pointing_method] => touchscreen
[device_code_name] => unknown
[device_brand_name] => unknown
[renderingengine_name] => unknown
[renderingengine_version] => unknown
[renderingengine_description] => unknown
[renderingengine_maker] => unknown
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>DonatjUAParser<br /><small>v0.5.1</small><br /></td><td>Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0.001</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-15fbc1f0-2615-4d42-b5d9-a30dd647b050">Detail</a>
<!-- Modal Structure -->
<div id="modal-15fbc1f0-2615-4d42-b5d9-a30dd647b050" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>DonatjUAParser result detail</h4>
<p><pre><code class="php">Array
(
[platform] => Android
[browser] => Chrome
[version] => 30.0.1599.82
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>JenssegersAgent<br /><small>v2.3.3</small><br /></td><td>Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td>AndroidOS 4.2.2</td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>yes</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.002</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-b85a2b91-6a55-4436-a82c-1ea0d46e2e51">Detail</a>
<!-- Modal Structure -->
<div id="modal-b85a2b91-6a55-4436-a82c-1ea0d46e2e51" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>JenssegersAgent result detail</h4>
<p><pre><code class="php">Array
(
[browserName] => Chrome
[browserVersion] => 30.0.1599.82
[osName] => AndroidOS
[osVersion] => 4.2.2
[deviceModel] => WebKit
[isMobile] => 1
[isRobot] =>
[botName] =>
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>NeutrinoApiCom<br /><small></small><br /></td><td>Chrome Mobile 30.0.1599.82</td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"></td><td>SP-121</td><td>mobile-browser</td><td>yes</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.30902</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-8c2a7a4e-3fbf-4df2-8d61-5e730422f67b">Detail</a>
<!-- Modal Structure -->
<div id="modal-8c2a7a4e-3fbf-4df2-8d61-5e730422f67b" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>NeutrinoApiCom result detail</h4>
<p><pre><code class="php">stdClass Object
(
[mobile_screen_height] => 480
[is_mobile] => 1
[type] => mobile-browser
[mobile_brand] => Generic
[mobile_model] => SP-121
[version] => 30.0.1599.82
[is_android] => 1
[browser_name] => Chrome Mobile
[operating_system_family] => Android
[operating_system_version] => 4.2.2
[is_ios] =>
[producer] => Google Inc.
[operating_system] => Android 4.2 Jelly Bean
[mobile_screen_width] => 320
[mobile_browser] => Android Webkit
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>PiwikDeviceDetector<br /><small>3.6.1</small><br /></td><td>Chrome Mobile 30.0</td><td>Blink </td><td>Android 4.2</td><td style="border-left: 1px solid #555"></td><td></td><td>smartphone</td><td>yes</td><td></td><td style="border-left: 1px solid #555"></td><td></td><td></td><td>0.003</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-4a941d34-a8d3-4914-9724-346f60ad7046">Detail</a>
<!-- Modal Structure -->
<div id="modal-4a941d34-a8d3-4914-9724-346f60ad7046" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>PiwikDeviceDetector result detail</h4>
<p><pre><code class="php">Array
(
[client] => Array
(
[type] => browser
[name] => Chrome Mobile
[short_name] => CM
[version] => 30.0
[engine] => Blink
)
[operatingSystem] => Array
(
[name] => Android
[short_name] => AND
[version] => 4.2
[platform] =>
)
[device] => Array
(
[brand] =>
[brandName] =>
[model] =>
[device] => 1
[deviceName] => smartphone
)
[bot] =>
[extra] => Array
(
[isBot] =>
[isBrowser] => 1
[isFeedReader] =>
[isMobileApp] =>
[isPIM] =>
[isLibrary] =>
[isMediaPlayer] =>
[isCamera] =>
[isCarBrowser] =>
[isConsole] =>
[isFeaturePhone] =>
[isPhablet] =>
[isPortableMediaPlayer] =>
[isSmartDisplay] =>
[isSmartphone] => 1
[isTablet] =>
[isTV] =>
[isDesktop] =>
[isMobile] => 1
[isTouchEnabled] =>
)
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>SinergiBrowserDetector<br /><small>6.0.1</small><br /></td><td>Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td></td><td><i class="material-icons">close</i></td><td>yes</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-ec1cd248-02b0-457e-8a9d-35bb99af008c">Detail</a>
<!-- Modal Structure -->
<div id="modal-ec1cd248-02b0-457e-8a9d-35bb99af008c" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>SinergiBrowserDetector result detail</h4>
<p><pre><code class="php">Array
(
[browser] => Sinergi\BrowserDetector\Browser Object
(
[userAgent:Sinergi\BrowserDetector\Browser:private] => Sinergi\BrowserDetector\UserAgent Object
(
[userAgentString:Sinergi\BrowserDetector\UserAgent:private] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
)
[name:Sinergi\BrowserDetector\Browser:private] => Chrome
[version:Sinergi\BrowserDetector\Browser:private] => 30.0.1599.82
[isRobot:Sinergi\BrowserDetector\Browser:private] =>
[isChromeFrame:Sinergi\BrowserDetector\Browser:private] =>
[isFacebookWebView:Sinergi\BrowserDetector\Browser:private] =>
[isCompatibilityMode:Sinergi\BrowserDetector\Browser:private] =>
)
[operatingSystem] => Sinergi\BrowserDetector\Os Object
(
[name:Sinergi\BrowserDetector\Os:private] => Android
[version:Sinergi\BrowserDetector\Os:private] => 4.2.2
[isMobile:Sinergi\BrowserDetector\Os:private] => 1
[userAgent:Sinergi\BrowserDetector\Os:private] => Sinergi\BrowserDetector\UserAgent Object
(
[userAgentString:Sinergi\BrowserDetector\UserAgent:private] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
)
)
[device] => Sinergi\BrowserDetector\Device Object
(
[name:Sinergi\BrowserDetector\Device:private] => unknown
[userAgent:Sinergi\BrowserDetector\Device:private] => Sinergi\BrowserDetector\UserAgent Object
(
[userAgentString:Sinergi\BrowserDetector\UserAgent:private] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
)
)
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>UAParser<br /><small>v3.4.5</small><br /></td><td>Chrome Mobile 30.0.1599</td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555">Simvalley</td><td>SP-121</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.003</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-3160e405-8a8f-46dd-8f47-5115f06462d2">Detail</a>
<!-- Modal Structure -->
<div id="modal-3160e405-8a8f-46dd-8f47-5115f06462d2" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>UAParser result detail</h4>
<p><pre><code class="php">UAParser\Result\Client Object
(
[ua] => UAParser\Result\UserAgent Object
(
[major] => 30
[minor] => 0
[patch] => 1599
[family] => Chrome Mobile
)
[os] => UAParser\Result\OperatingSystem Object
(
[major] => 4
[minor] => 2
[patch] => 2
[patchMinor] =>
[family] => Android
)
[device] => UAParser\Result\Device Object
(
[brand] => Simvalley
[model] => SP-121
[family] => SP-121
)
[originalUserAgent] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>UserAgentApiCom<br /><small></small><br /></td><td>Chrome 30.0.1599.82</td><td>WebKit 537.36</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>Mobile</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.15101</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-afeb05fb-26b9-4509-b8ac-0c604a9e97d6">Detail</a>
<!-- Modal Structure -->
<div id="modal-afeb05fb-26b9-4509-b8ac-0c604a9e97d6" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>UserAgentApiCom result detail</h4>
<p><pre><code class="php">stdClass Object
(
[platform_name] => Android
[platform_version] => 4.2.2
[platform_type] => Mobile
[browser_name] => Chrome
[browser_version] => 30.0.1599.82
[engine_name] => WebKit
[engine_version] => 537.36
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>UserAgentStringCom<br /><small></small><br /></td><td>Android Webkit Browser </td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td></td><td>0.062</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-08a9ddfb-838f-48d7-9ede-1d132306b2ee">Detail</a>
<!-- Modal Structure -->
<div id="modal-08a9ddfb-838f-48d7-9ede-1d132306b2ee" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>UserAgentStringCom result detail</h4>
<p><pre><code class="php">stdClass Object
(
[agent_type] => Browser
[agent_name] => Android Webkit Browser
[agent_version] => --
[os_type] => Android
[os_name] => Android
[os_versionName] =>
[os_versionNumber] => 4.2.2
[os_producer] =>
[os_producerURL] =>
[linux_distibution] => Null
[agent_language] =>
[agent_languageTag] =>
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>WhatIsMyBrowserCom<br /><small></small><br /></td><td>Chrome 30.0.1599.82</td><td>WebKit 537.36</td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0.23101</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-5fc1ff22-a74d-481b-9ad1-fcfde73ded9c">Detail</a>
<!-- Modal Structure -->
<div id="modal-5fc1ff22-a74d-481b-9ad1-fcfde73ded9c" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>WhatIsMyBrowserCom result detail</h4>
<p><pre><code class="php">stdClass Object
(
[operating_system_name] => Android
[simple_sub_description_string] =>
[simple_browser_string] => Chrome 30 on Android (Jelly Bean)
[browser_version] => 30
[extra_info] => Array
(
)
[operating_platform] =>
[extra_info_table] => stdClass Object
(
[System Build] => JDQ39
)
[layout_engine_name] => WebKit
[detected_addons] => Array
(
)
[operating_system_flavour_code] =>
[hardware_architecture] =>
[operating_system_flavour] =>
[operating_system_frameworks] => Array
(
)
[browser_name_code] => chrome
[operating_system_version] => Jelly Bean
[simple_operating_platform_string] =>
[is_abusive] =>
[layout_engine_version] => 537.36
[browser_capabilities] => Array
(
)
[operating_platform_vendor_name] =>
[operating_system] => Android (Jelly Bean)
[operating_system_version_full] => 4.2.2
[operating_platform_code] =>
[browser_name] => Chrome
[operating_system_name_code] => android
[user_agent] => Mozilla/5.0 (Linux; Android 4.2.2; SP-121 Build/JDQ39) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/30.0.1599.82 Mobile Safari/537.36
[browser_version_full] => 30.0.1599.82
[browser] => Chrome 30
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>WhichBrowser<br /><small>v2.0.18</small><br /></td><td>Chrome 30</td><td>Blink </td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"></td><td>SP-121</td><td>mobile:smart</td><td>yes</td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0.003</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-083a336f-5d73-4505-84f3-c5fc9bb78652">Detail</a>
<!-- Modal Structure -->
<div id="modal-083a336f-5d73-4505-84f3-c5fc9bb78652" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>WhichBrowser result detail</h4>
<p><pre><code class="php">Array
(
[browser] => Array
(
[name] => Chrome
[version] => 30
[type] => browser
)
[engine] => Array
(
[name] => Blink
)
[os] => Array
(
[name] => Android
[version] => 4.2.2
)
[device] => Array
(
[type] => mobile
[subtype] => smart
[model] => SP-121
)
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>Woothee<br /><small>v1.2.0</small><br /></td><td>Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>smartphone</td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td>0</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-f00e7198-0e22-49fe-bad0-dbb3a9cde9b9">Detail</a>
<!-- Modal Structure -->
<div id="modal-f00e7198-0e22-49fe-bad0-dbb3a9cde9b9" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>Woothee result detail</h4>
<p><pre><code class="php">Array
(
[name] => Chrome
[vendor] => Google
[version] => 30.0.1599.82
[category] => smartphone
[os] => Android
[os_version] => 4.2.2
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>Wurfl<br /><small>1.7.1.0</small><br /></td><td>Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"></td><td></td><td>Smartphone</td><td>yes</td><td>yes</td><td style="border-left: 1px solid #555"></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0.018</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-a2bedf8c-4a95-42a7-96c5-aaf233b2ac50">Detail</a>
<!-- Modal Structure -->
<div id="modal-a2bedf8c-4a95-42a7-96c5-aaf233b2ac50" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>Wurfl result detail</h4>
<p><pre><code class="php">Array
(
[virtual] => Array
(
[is_android] => true
[is_ios] => false
[is_windows_phone] => false
[is_app] => false
[is_full_desktop] => false
[is_largescreen] => false
[is_mobile] => true
[is_robot] => false
[is_smartphone] => true
[is_touchscreen] => true
[is_wml_preferred] => false
[is_xhtmlmp_preferred] => false
[is_html_preferred] => true
[advertised_device_os] => Android
[advertised_device_os_version] => 4.2.2
[advertised_browser] => Chrome
[advertised_browser_version] => 30.0.1599.82
[complete_device_name] => Generic Android 4.2
[device_name] => Generic Android 4.2
[form_factor] => Smartphone
[is_phone] => true
[is_app_webview] => false
)
[all] => Array
(
[brand_name] => Generic
[model_name] => Android 4.2
[unique] => true
[ununiqueness_handler] =>
[is_wireless_device] => true
[device_claims_web_support] => true
[has_qwerty_keyboard] => true
[can_skip_aligned_link_row] => true
[uaprof] =>
[uaprof2] =>
[uaprof3] =>
[nokia_series] => 0
[nokia_edition] => 0
[device_os] => Android
[mobile_browser] => Android Webkit
[mobile_browser_version] =>
[device_os_version] => 4.2
[pointing_method] => touchscreen
[release_date] => 2012_october
[marketing_name] =>
[model_extra_info] =>
[nokia_feature_pack] => 0
[can_assign_phone_number] => true
[is_tablet] => false
[manufacturer_name] =>
[is_bot] => false
[is_google_glass] => false
[proportional_font] => false
[built_in_back_button_support] => false
[card_title_support] => true
[softkey_support] => false
[table_support] => true
[numbered_menus] => false
[menu_with_select_element_recommended] => false
[menu_with_list_of_links_recommended] => true
[icons_on_menu_items_support] => false
[break_list_of_links_with_br_element_recommended] => true
[access_key_support] => false
[wrap_mode_support] => false
[times_square_mode_support] => false
[deck_prefetch_support] => false
[elective_forms_recommended] => true
[wizards_recommended] => false
[image_as_link_support] => false
[insert_br_element_after_widget_recommended] => false
[wml_can_display_images_and_text_on_same_line] => false
[wml_displays_image_in_center] => false
[opwv_wml_extensions_support] => false
[wml_make_phone_call_string] => wtai://wp/mc;
[chtml_display_accesskey] => false
[emoji] => false
[chtml_can_display_images_and_text_on_same_line] => false
[chtml_displays_image_in_center] => false
[imode_region] => none
[chtml_make_phone_call_string] => tel:
[chtml_table_support] => false
[xhtml_honors_bgcolor] => true
[xhtml_supports_forms_in_table] => true
[xhtml_support_wml2_namespace] => false
[xhtml_autoexpand_select] => false
[xhtml_select_as_dropdown] => false
[xhtml_select_as_radiobutton] => false
[xhtml_select_as_popup] => false
[xhtml_display_accesskey] => false
[xhtml_supports_invisible_text] => false
[xhtml_supports_inline_input] => false
[xhtml_supports_monospace_font] => false
[xhtml_supports_table_for_layout] => true
[xhtml_supports_css_cell_table_coloring] => true
[xhtml_format_as_css_property] => false
[xhtml_format_as_attribute] => false
[xhtml_nowrap_mode] => false
[xhtml_marquee_as_css_property] => false
[xhtml_readable_background_color1] => #FFFFFF
[xhtml_readable_background_color2] => #FFFFFF
[xhtml_allows_disabled_form_elements] => true
[xhtml_document_title_support] => true
[xhtml_preferred_charset] => iso-8859-1
[opwv_xhtml_extensions_support] => false
[xhtml_make_phone_call_string] => tel:
[xhtmlmp_preferred_mime_type] => text/html
[xhtml_table_support] => true
[xhtml_send_sms_string] => sms:
[xhtml_send_mms_string] => mms:
[xhtml_file_upload] => supported
[cookie_support] => true
[accept_third_party_cookie] => true
[xhtml_supports_iframe] => full
[xhtml_avoid_accesskeys] => true
[xhtml_can_embed_video] => none
[ajax_support_javascript] => true
[ajax_manipulate_css] => true
[ajax_support_getelementbyid] => true
[ajax_support_inner_html] => true
[ajax_xhr_type] => standard
[ajax_manipulate_dom] => true
[ajax_support_events] => true
[ajax_support_event_listener] => true
[ajax_preferred_geoloc_api] => w3c_api
[xhtml_support_level] => 4
[preferred_markup] => html_web_4_0
[wml_1_1] => false
[wml_1_2] => false
[wml_1_3] => false
[html_wi_w3_xhtmlbasic] => true
[html_wi_oma_xhtmlmp_1_0] => true
[html_wi_imode_html_1] => false
[html_wi_imode_html_2] => false
[html_wi_imode_html_3] => false
[html_wi_imode_html_4] => false
[html_wi_imode_html_5] => false
[html_wi_imode_htmlx_1] => false
[html_wi_imode_htmlx_1_1] => false
[html_wi_imode_compact_generic] => false
[html_web_3_2] => true
[html_web_4_0] => true
[voicexml] => false
[multipart_support] => false
[total_cache_disable_support] => false
[time_to_live_support] => false
[resolution_width] => 320
[resolution_height] => 480
[columns] => 60
[max_image_width] => 320
[max_image_height] => 480
[rows] => 40
[physical_screen_width] => 34
[physical_screen_height] => 50
[dual_orientation] => true
[density_class] => 1.0
[wbmp] => true
[bmp] => false
[epoc_bmp] => false
[gif_animated] => false
[jpg] => true
[png] => true
[tiff] => false
[transparent_png_alpha] => true
[transparent_png_index] => true
[svgt_1_1] => true
[svgt_1_1_plus] => false
[greyscale] => false
[gif] => true
[colors] => 65536
[webp_lossy_support] => true
[webp_lossless_support] => true
[post_method_support] => true
[basic_authentication_support] => true
[empty_option_value_support] => true
[emptyok] => false
[nokia_voice_call] => false
[wta_voice_call] => false
[wta_phonebook] => false
[wta_misc] => false
[wta_pdc] => false
[https_support] => true
[phone_id_provided] => false
[max_data_rate] => 3600
[wifi] => true
[sdio] => false
[vpn] => false
[has_cellular_radio] => true
[max_deck_size] => 2000000
[max_url_length_in_requests] => 256
[max_url_length_homepage] => 0
[max_url_length_bookmark] => 0
[max_url_length_cached_page] => 0
[max_no_of_connection_settings] => 0
[max_no_of_bookmarks] => 0
[max_length_of_username] => 0
[max_length_of_password] => 0
[max_object_size] => 0
[downloadfun_support] => false
[directdownload_support] => true
[inline_support] => false
[oma_support] => true
[ringtone] => false
[ringtone_3gpp] => false
[ringtone_midi_monophonic] => false
[ringtone_midi_polyphonic] => false
[ringtone_imelody] => false
[ringtone_digiplug] => false
[ringtone_compactmidi] => false
[ringtone_mmf] => false
[ringtone_rmf] => false
[ringtone_xmf] => false
[ringtone_amr] => false
[ringtone_awb] => false
[ringtone_aac] => false
[ringtone_wav] => false
[ringtone_mp3] => false
[ringtone_spmidi] => false
[ringtone_qcelp] => false
[ringtone_voices] => 1
[ringtone_df_size_limit] => 0
[ringtone_directdownload_size_limit] => 0
[ringtone_inline_size_limit] => 0
[ringtone_oma_size_limit] => 0
[wallpaper] => false
[wallpaper_max_width] => 0
[wallpaper_max_height] => 0
[wallpaper_preferred_width] => 0
[wallpaper_preferred_height] => 0
[wallpaper_resize] => none
[wallpaper_wbmp] => false
[wallpaper_bmp] => false
[wallpaper_gif] => false
[wallpaper_jpg] => false
[wallpaper_png] => false
[wallpaper_tiff] => false
[wallpaper_greyscale] => false
[wallpaper_colors] => 2
[wallpaper_df_size_limit] => 0
[wallpaper_directdownload_size_limit] => 0
[wallpaper_inline_size_limit] => 0
[wallpaper_oma_size_limit] => 0
[screensaver] => false
[screensaver_max_width] => 0
[screensaver_max_height] => 0
[screensaver_preferred_width] => 0
[screensaver_preferred_height] => 0
[screensaver_resize] => none
[screensaver_wbmp] => false
[screensaver_bmp] => false
[screensaver_gif] => false
[screensaver_jpg] => false
[screensaver_png] => false
[screensaver_greyscale] => false
[screensaver_colors] => 2
[screensaver_df_size_limit] => 0
[screensaver_directdownload_size_limit] => 0
[screensaver_inline_size_limit] => 0
[screensaver_oma_size_limit] => 0
[picture] => false
[picture_max_width] => 0
[picture_max_height] => 0
[picture_preferred_width] => 0
[picture_preferred_height] => 0
[picture_resize] => none
[picture_wbmp] => false
[picture_bmp] => false
[picture_gif] => false
[picture_jpg] => false
[picture_png] => false
[picture_greyscale] => false
[picture_colors] => 2
[picture_df_size_limit] => 0
[picture_directdownload_size_limit] => 0
[picture_inline_size_limit] => 0
[picture_oma_size_limit] => 0
[video] => false
[oma_v_1_0_forwardlock] => false
[oma_v_1_0_combined_delivery] => false
[oma_v_1_0_separate_delivery] => false
[streaming_video] => true
[streaming_3gpp] => true
[streaming_mp4] => true
[streaming_mov] => false
[streaming_video_size_limit] => 0
[streaming_real_media] => none
[streaming_flv] => false
[streaming_3g2] => false
[streaming_vcodec_h263_0] => 10
[streaming_vcodec_h263_3] => -1
[streaming_vcodec_mpeg4_sp] => 2
[streaming_vcodec_mpeg4_asp] => -1
[streaming_vcodec_h264_bp] => 3.0
[streaming_acodec_amr] => nb
[streaming_acodec_aac] => lc
[streaming_wmv] => none
[streaming_preferred_protocol] => rtsp
[streaming_preferred_http_protocol] => apple_live_streaming
[wap_push_support] => false
[connectionless_service_indication] => false
[connectionless_service_load] => false
[connectionless_cache_operation] => false
[connectionoriented_unconfirmed_service_indication] => false
[connectionoriented_unconfirmed_service_load] => false
[connectionoriented_unconfirmed_cache_operation] => false
[connectionoriented_confirmed_service_indication] => false
[connectionoriented_confirmed_service_load] => false
[connectionoriented_confirmed_cache_operation] => false
[utf8_support] => true
[ascii_support] => false
[iso8859_support] => false
[expiration_date] => false
[j2me_cldc_1_0] => false
[j2me_cldc_1_1] => false
[j2me_midp_1_0] => false
[j2me_midp_2_0] => false
[doja_1_0] => false
[doja_1_5] => false
[doja_2_0] => false
[doja_2_1] => false
[doja_2_2] => false
[doja_3_0] => false
[doja_3_5] => false
[doja_4_0] => false
[j2me_jtwi] => false
[j2me_mmapi_1_0] => false
[j2me_mmapi_1_1] => false
[j2me_wmapi_1_0] => false
[j2me_wmapi_1_1] => false
[j2me_wmapi_2_0] => false
[j2me_btapi] => false
[j2me_3dapi] => false
[j2me_locapi] => false
[j2me_nokia_ui] => false
[j2me_motorola_lwt] => false
[j2me_siemens_color_game] => false
[j2me_siemens_extension] => false
[j2me_heap_size] => 0
[j2me_max_jar_size] => 0
[j2me_storage_size] => 0
[j2me_max_record_store_size] => 0
[j2me_screen_width] => 0
[j2me_screen_height] => 0
[j2me_canvas_width] => 0
[j2me_canvas_height] => 0
[j2me_bits_per_pixel] => 0
[j2me_audio_capture_enabled] => false
[j2me_video_capture_enabled] => false
[j2me_photo_capture_enabled] => false
[j2me_capture_image_formats] => none
[j2me_http] => false
[j2me_https] => false
[j2me_socket] => false
[j2me_udp] => false
[j2me_serial] => false
[j2me_gif] => false
[j2me_gif89a] => false
[j2me_jpg] => false
[j2me_png] => false
[j2me_bmp] => false
[j2me_bmp3] => false
[j2me_wbmp] => false
[j2me_midi] => false
[j2me_wav] => false
[j2me_amr] => false
[j2me_mp3] => false
[j2me_mp4] => false
[j2me_imelody] => false
[j2me_rmf] => false
[j2me_au] => false
[j2me_aac] => false
[j2me_realaudio] => false
[j2me_xmf] => false
[j2me_wma] => false
[j2me_3gpp] => false
[j2me_h263] => false
[j2me_svgt] => false
[j2me_mpeg4] => false
[j2me_realvideo] => false
[j2me_real8] => false
[j2me_realmedia] => false
[j2me_left_softkey_code] => 0
[j2me_right_softkey_code] => 0
[j2me_middle_softkey_code] => 0
[j2me_select_key_code] => 0
[j2me_return_key_code] => 0
[j2me_clear_key_code] => 0
[j2me_datefield_no_accepts_null_date] => false
[j2me_datefield_broken] => false
[receiver] => false
[sender] => false
[mms_max_size] => 0
[mms_max_height] => 0
[mms_max_width] => 0
[built_in_recorder] => false
[built_in_camera] => true
[mms_jpeg_baseline] => false
[mms_jpeg_progressive] => false
[mms_gif_static] => false
[mms_gif_animated] => false
[mms_png] => false
[mms_bmp] => false
[mms_wbmp] => false
[mms_amr] => false
[mms_wav] => false
[mms_midi_monophonic] => false
[mms_midi_polyphonic] => false
[mms_midi_polyphonic_voices] => 0
[mms_spmidi] => false
[mms_mmf] => false
[mms_mp3] => false
[mms_evrc] => false
[mms_qcelp] => false
[mms_ota_bitmap] => false
[mms_nokia_wallpaper] => false
[mms_nokia_operatorlogo] => false
[mms_nokia_3dscreensaver] => false
[mms_nokia_ringingtone] => false
[mms_rmf] => false
[mms_xmf] => false
[mms_symbian_install] => false
[mms_jar] => false
[mms_jad] => false
[mms_vcard] => false
[mms_vcalendar] => false
[mms_wml] => false
[mms_wbxml] => false
[mms_wmlc] => false
[mms_video] => false
[mms_mp4] => false
[mms_3gpp] => false
[mms_3gpp2] => false
[mms_max_frame_rate] => 0
[nokiaring] => false
[picturemessage] => false
[operatorlogo] => false
[largeoperatorlogo] => false
[callericon] => false
[nokiavcard] => false
[nokiavcal] => false
[sckl_ringtone] => false
[sckl_operatorlogo] => false
[sckl_groupgraphic] => false
[sckl_vcard] => false
[sckl_vcalendar] => false
[text_imelody] => false
[ems] => false
[ems_variablesizedpictures] => false
[ems_imelody] => false
[ems_odi] => false
[ems_upi] => false
[ems_version] => 0
[siemens_ota] => false
[siemens_logo_width] => 101
[siemens_logo_height] => 29
[siemens_screensaver_width] => 101
[siemens_screensaver_height] => 50
[gprtf] => false
[sagem_v1] => false
[sagem_v2] => false
[panasonic] => false
[sms_enabled] => true
[wav] => false
[mmf] => false
[smf] => false
[mld] => false
[midi_monophonic] => false
[midi_polyphonic] => false
[sp_midi] => false
[rmf] => false
[xmf] => false
[compactmidi] => false
[digiplug] => false
[nokia_ringtone] => false
[imelody] => false
[au] => false
[amr] => false
[awb] => false
[aac] => true
[mp3] => true
[voices] => 1
[qcelp] => false
[evrc] => false
[flash_lite_version] =>
[fl_wallpaper] => false
[fl_screensaver] => false
[fl_standalone] => false
[fl_browser] => false
[fl_sub_lcd] => false
[full_flash_support] => false
[css_supports_width_as_percentage] => true
[css_border_image] => webkit
[css_rounded_corners] => webkit
[css_gradient] => none
[css_spriting] => true
[css_gradient_linear] => none
[is_transcoder] => false
[transcoder_ua_header] => user-agent
[rss_support] => false
[pdf_support] => true
[progressive_download] => true
[playback_vcodec_h263_0] => 10
[playback_vcodec_h263_3] => -1
[playback_vcodec_mpeg4_sp] => 0
[playback_vcodec_mpeg4_asp] => -1
[playback_vcodec_h264_bp] => 3.0
[playback_real_media] => none
[playback_3gpp] => true
[playback_3g2] => false
[playback_mp4] => true
[playback_mov] => false
[playback_acodec_amr] => nb
[playback_acodec_aac] => none
[playback_df_size_limit] => 0
[playback_directdownload_size_limit] => 0
[playback_inline_size_limit] => 0
[playback_oma_size_limit] => 0
[playback_acodec_qcelp] => false
[playback_wmv] => none
[hinted_progressive_download] => true
[html_preferred_dtd] => html4
[viewport_supported] => true
[viewport_width] => device_width_token
[viewport_userscalable] => no
[viewport_initial_scale] =>
[viewport_maximum_scale] =>
[viewport_minimum_scale] =>
[mobileoptimized] => false
[handheldfriendly] => false
[canvas_support] => full
[image_inlining] => true
[is_smarttv] => false
[is_console] => false
[nfc_support] => false
[ux_full_desktop] => false
[jqm_grade] => A
[is_sencha_touch_ok] => false
)
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr><tr><td>Zsxsoft<br /><small>1.3</small><br /></td><td>Google Chrome 30.0.1599.82</td><td><i class="material-icons">close</i></td><td>Android 4.2.2</td><td style="border-left: 1px solid #555"></td><td></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td style="border-left: 1px solid #555"><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td><i class="material-icons">close</i></td><td>0</td><td>
<!-- Modal Trigger -->
<a class="modal-trigger btn waves-effect waves-light" href="#modal-5d43e024-b46c-44f6-8914-529b05569bc2">Detail</a>
<!-- Modal Structure -->
<div id="modal-5d43e024-b46c-44f6-8914-529b05569bc2" class="modal modal-fixed-footer">
<div class="modal-content">
<h4>Zsxsoft result detail</h4>
<p><pre><code class="php">Array
(
[browser] => Array
(
[link] => http://google.com/chrome/
[title] => Google Chrome 30.0.1599.82
[name] => Google Chrome
[version] => 30.0.1599.82
[code] => chrome
[image] => img/16/browser/chrome.png
)
[os] => Array
(
[link] => http://www.android.com/
[name] => Android
[version] => 4.2.2
[code] => android
[x64] =>
[title] => Android 4.2.2
[type] => os
[dir] => os
[image] => img/16/os/android.png
)
[device] => Array
(
[link] =>
[title] =>
[model] =>
[brand] =>
[code] => null
[dir] => device
[type] => device
[image] => img/16/device/null.png
)
[platform] => Array
(
[link] => http://www.android.com/
[name] => Android
[version] => 4.2.2
[code] => android
[x64] =>
[title] => Android 4.2.2
[type] => os
[dir] => os
[image] => img/16/os/android.png
)
)
</code></pre></p>
</div>
<div class="modal-footer">
<a href="#!" class="modal-action modal-close waves-effect waves-green btn-flat ">close</a>
</div>
</div>
</td></tr></table>
</div>
<div class="section">
<h1 class="header center orange-text">About this comparison</h1>
<div class="row center">
<h5 class="header light">
The primary goal of this project is simple<br />
I wanted to know which user agent parser is the most accurate in each part - device detection, bot detection and so on...<br />
<br />
The secondary goal is to provide a source for all user agent parsers to improve their detection based on this results.<br />
<br />
You can also improve this further, by suggesting ideas at <a href="https://github.com/ThaDafinser/UserAgentParserComparison">ThaDafinser/UserAgentParserComparison</a><br />
<br />
The comparison is based on the abstraction by <a href="https://github.com/ThaDafinser/UserAgentParser">ThaDafinser/UserAgentParser</a>
</h5>
</div>
</div>
<div class="card">
<div class="card-content">
Comparison created <i>2016-05-10 08:02:48</i> | by
<a href="https://github.com/ThaDafinser">ThaDafinser</a>
</div>
</div>
</div>
<script src="https://code.jquery.com/jquery-2.1.4.min.js"></script>
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<div class="sidebar-block">
<div class="sidebar-wrapper">
<h2 class="toc"><a href="/">{{ _('Table Of Contents') }}</a></h2>
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{% set toctree = toctree(maxdepth=2, collapse=True, includehidden=True) %}
{% if toctree %}
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| tylerdave/remarker | remarker/templates/default.html | HTML | mit | 279 |
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<table cellspacing="0" cellpadding="0">
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<td id="projectalign" style="padding-left: 0.5em;">
<div id="projectname">libfly
 <span id="projectnumber">6.2.2</span>
</div>
<div id="projectbrief">C++20 utility library for Linux, macOS, and Windows</div>
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<div class="title">fly::coders::HuffmanCode Member List</div> </div>
</div><!--header-->
<div class="contents">
<p>This is the complete list of members for <a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a>, including all inherited members.</p>
<table class="directory">
<tr class="even"><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html#ab5f9bbe661705633a2f20fb56bbb42d2">HuffmanCode</a>() noexcept</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html#a0ff8c030a228cb6b4a524e366a7ae555">HuffmanCode</a>(symbol_type symbol, code_type code, length_type length) noexcept</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr class="even"><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html#a078860559bf39a783bab03fb8f6b2485">HuffmanCode</a>(HuffmanCode &&code) noexcept</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr bgcolor="#f0f0f0"><td class="entry"><b>m_code</b> (defined in <a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a>)</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr bgcolor="#f0f0f0" class="even"><td class="entry"><b>m_length</b> (defined in <a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a>)</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr bgcolor="#f0f0f0"><td class="entry"><b>m_symbol</b> (defined in <a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a>)</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
<tr class="even"><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html#a326b978d11f6e1a9be3bb950b0c8bc9b">operator<</a>(const HuffmanCode &left, const HuffmanCode &right)</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"><span class="mlabel">friend</span></td></tr>
<tr><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html#a41dec587fe98a17082cbcf4508c6c1df">operator=</a>(HuffmanCode &&code) noexcept</td><td class="entry"><a class="el" href="structfly_1_1coders_1_1_huffman_code.html">fly::coders::HuffmanCode</a></td><td class="entry"></td></tr>
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| trflynn89/libfly | docs/structfly_1_1coders_1_1_huffman_code-members.html | HTML | mit | 6,818 |
<!doctype html>
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| sidmonta/SoulPatchJS | demo/misc/index.html | HTML | mit | 1,023 |
---
layout: default
title: Django guide
description:
---
<section class="bs-docs-section">
<h1 id="first-level" class="page-header">Overview</h1>
<p>
This is a collection of guides documenting common activities
while developing django applications.
</p>
</section>
<section class="bs-docs-section">
<h1 id="bootstrapping">Bootstrapping</h1>
<p>
We are using our <a href="https://github.com/codecentric-labs-zero/django-project-template">Django project template</a> for bootstrapping a new django application.
<br>
If you have done this before there is a tl:dr version of the instructions for bootstraping and continuous deliver in the README of our template.
<br>
<h3>Creating new project:</h3>
You can create a new project from our template by running this inside a Python 3 virtual environment:<br>
<span class="text-danger">***Change [project_name] with the real project name (do not use special characters)***</span>
<code><br>
$ virtualenv --python=python3 venv<br>
$ . venv/bin/activate<br>
$ pip install Django==1.10<br>
$ venv/bin/django-admin startproject [project_name] \<br>
--template https://github.com/codecentric-labs-zero/django-project-template/archive/master.zip \<br>
--name .flooignore,.gitignore,Procfile,.env \<br>
--extension py,md,txt,sh,ini,yml<br>
</code>
</section>
<section class="bs-docs-section">
<h1 id="cd">Setting up <span class="text-success">with</span> continuous delivery</h1>
<p>
In the template there is a script <code>bootstrap.sh</code> that we use to setup continuous delivery on heroku and circleci.<br>
This script will create github project and set it up on heroku and circleci so it is important that you are part of codecentric-labs-zero<br>
organizations on Heroku and GitHub so you would be granted permisions for creating projects and apps.<br>
Please note that this can and should only be done once for a project.
</p>
<p>Before starting the bootstrap.sh script you need to configure your GITHUB_TOKEN, CIRCLE_TOKEN and to login to Heroku console.<br>
First if necessary, make script executable:<br>
<code>$ chmod u+x bootstrap.sh</code>
</p>
<p>
Export GITHUB_TOKEN and CIRCLE_TOKEN:<br>
<code><br>
$ export GITHUB_TOKEN=[your github token]<br>
$ export CIRCLE_TOKEN=[your circle token]
</code>
</p>
<p>
Login to Heroku console:<br>
<code>
$ heroku login
</code>
</p>
<p>
Start bootstrap script:<br>
<code>
$ ./bootstrap.sh
</code>
</p>
</section>
<section class="bs-docs-section">
<h1 id="wcd">Setting up <span class="text-danger">without</span> continuous delivery</h1>
<p>
If you prefer not to set up the delivery pipeline, you can simply prepare the project for development:
</p>
<p>
Make scripts executable:<br>
<code>$ chmod u+x manage.py<br>
$ chmod u+x merge-base-ff.sh
</code>
</p>
<p>
Delete bootstrap script:<br>
<code>
$ rm bootstrap.sh
</code>
</p>
<p>
Add project name to README file, install requirements, migrate db and git init the project:<br>
<code><br>
$ echo "# [project name]" > README.md<br>
$ pip install -r requirements.txt<br>
$ ./manage.py migrate<br>
$ py.test<br>
$ git init<br>
$ git commit -am "Initial project setup"
</code>
</p>
</section>
<section class="bs-docs-section">
<h1 id="setup-testing">Setup Testing Enviroment</h1>
<p>
We use <a href="http://docs.seleniumhq.org/">selenium</a> for functional testing.<br>
To run our functional tests you need a runing selenium server with chromedriver on your machine.
</p>
<h3 id="install-appium">Install selenium</h3>
<p>
You just need to download selenium and run it.<br>
Download <a href="http://docs.seleniumhq.org/download/">selenium</a><br>
Download <a href="https://sites.google.com/a/chromium.org/chromedriver/downloads">chromeDriver</a><br>
</p>
<h3 id="run-selenium">Run selenium</h3>
<ul>
<li>
<h4 id="run-selenium-linux-mac">Run selenium on linux/mac</h4>
<p>
Move chromeDriver from download folder to: <code>/usr/local/share/chromedriver</code><br>
<span class="text-success">*** you do not have to move it there(you can have it wherever you won't) but if you move it to that specific folder<br>
you won't need to tell selenium where the driver is every time you start it.***</span><br>
<code>
sudo mv -f ~/Downloads/chromedriver /usr/local/share/chromedriver<br>
</code>
Make chromeDriver executable<br>
<code>
chmod +x ~/usr/local/share/chromedriver
</code><br>
Run selenium<br>
<code>
java -jar -Dwebdriver.chrome.driver=/[path to chromedriver]/chromedriver ~/[path to selenium]/selenium-server-standalone.jar <br>
</code>
<span>Example:</span><br>
<code>
java -jar -Dwebdriver.chrome.driver=/usr/local/bin/chromedriver ~/Downloads/selenium-server-standalone.jar
</code><br>
<span>If you moved chromdriver to <code>/usr/local/share/</code>:</span><br>
<code>
java -jar ~/Downloads/selenium-server-standalone.jar
</code>
</p>
</li>
<li>
<h4 id="run-selenium-windows">Run selenium on windows</h4>
<p>
To run selenium on windows you need to start it with variable Dwebdriver.chrome.driver wich is pointing to your chromedriver<br>
<code>
java jar -Dwebdriver.chrome.driver=/[path to chromedriver]/chromedriver ~/[path to selenium]/selenium-server-standalone.jar
</code><br>
<span>Example:</span><br>
<code>
java -jar -Dwebdriver.chrome.driver=/Downloads/chromedriver.exe ~/Downloads/selenium-server-standalone.jar
</code>
</p>
</li>
</
</section>
<section class="bs-docs-section">
<h1 id="running-tests-pycharm">Running tests from pycharm</h1>
<p>
From pycharm toolbar menu go to:<br>
<ul>
<li>Run/Edit configuration<br></li>
<li>In Run/Debug configuration window clik on + to add new run configuration<br></li>
<li>Select Python tests<br></li>
<li>Select py.test<br></li>
<li>Set Target to root folder of project<br></li>
<button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#addConfig" aria-expanded="false" aria-controls="addConfig">
Show/hide Screenshot
</button>
<div class="collapse" id="addConfig">
<img class="img-responsive" src="../assets/images/django-add-new-run-configuration-for-tests.png" />
</div>
<li>Add two Enviroment Variables:<br>
<button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#addVariables" aria-expanded="false" aria-controls="addVariables">
Show/hide Screenshot
</button>
<div class="collapse" id="addVariables">
<img class="img-responsive" src="../assets/images/django-add-variables.png" />
</div>
<code><br>
DJANGO_SECRET_KEY=whatevervalue<br>
SELENIUM_URI=http://localhost:4444/wd/hub
</code><br></li>
<li>Run this configuration</li>
</ul>
</p>
</section>
<section class="bs-docs-section">
<h1 id="running-tests-terminal">Running tests from terminal</h1>
<p>
<ul>
<li>
Activate yout virtual env:<br>
<code> . venv/bin/activate</code><br>
</li>
<li>
You need to export two Enviroment Variables:<br>
<code>
$ export DJANGO_SECRET_KEY=whatevervalue<br>
$ export SELENIUM_URI=http://localhost:4444/wd/hub <br>
</code>
</li>
<li>
Run py.test:<br>
<code>$ py.test</code><br>
</li>
</ul>
</p>
</section>
<section class="bs-docs-section">
<h1 id="new-relic-integration">New Relic integration</h1>
<p>For django app monitoring we are using<a href="https://newrelic.com/"> New Relic</a>,<br/>
which is now included into Django app template.<br/>
Steps for setting up New Relic on application that is deployed to Heroku are:<br/>
<ul>
<li>Install New Relic addon by using heroku toolbelt<br/>
<code>heroku --app appName addons:create newrelic:$planlevel</code>
</li>
<li>Give you application unique name<br/>
<code>heroku --app appName config:set NEW_RELIC_APP_NAME='Your Application Name'</code>
</li>
<li>Add newrelic dependency to requirements.txt file, you can specify the version</li>
<code>newrelic==n.n.n.n</code>
</li>
<li>Modify web entry of Procfile by prefixing newrelic-admin run-program, for example<br/>
<code>web: newrelic-admin run-program gunicorn mysite.wsgi</code>
</li>
<li>To verify that New Relic is enabled run<br/>
<code>heroku --app appName env | grep NEW_RELIC</code>
</li>
<li>Write a ticket to New Relic <a href="https://support.newrelic.com/">support</a> to <br/>
get the admin rights, because default accounts created through Heroku have user status.</br>
</li>
<li>After getting admin status you can set up alerts by going to New Relic site throught Heroku<br/>
Alerts > the alert policy for appName > Channels and groups > Create channel
</ul>
</p>
</section>
| codecentric-labs-zero/codecentric-labs-zero.github.io | pages/django.html | HTML | mit | 9,166 |
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<h1 class="title">TleceBaseResponseModel Methods</h1>
<p />
<p>
The following tables list the members exposed by the
<a href="topic_00000000000000E1.html">TleceBaseResponseModel</a>
type.
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<th>
Name
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<th>
Description
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inheritedMember
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<td>
<img alt="Public method" title="Public method" src="msdn2019/pubmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.equals">Equals(Object)</a>
</td>
<td>
Determines whether the specified object is equal to the current object.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Protected method" title="Protected method" src="msdn2019/protmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.finalize">Finalize</a>
</td>
<td>
Allows an object to try to free resources and perform other cleanup operations before it is reclaimed by garbage collection.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Public method" title="Public method" src="msdn2019/pubmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.gethashcode">GetHashCode</a>
</td>
<td>
Serves as the default hash function.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Public method" title="Public method" src="msdn2019/pubmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.gettype">GetType</a>
</td>
<td>
Gets the <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.type">Type</a> of the current instance.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Protected method" title="Protected method" src="msdn2019/protmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.memberwiseclone">MemberwiseClone</a>
</td>
<td>
Creates a shallow copy of the current <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Public method" title="Public method" src="msdn2019/pubmethod.png"></img>
</td>
<td>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object.tostring">ToString</a>
</td>
<td>
Returns a string that represents the current object.
(inherited from <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.object">Object</a>).
</td>
</tr>
</table>
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Top
</a>
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</div>
<div class="section_container">
<div class="section_heading">
<span><a href="javascript:void(0)" title="Collapse" onclick="toggleSection(this);">Extension Methods</a></span>
<div> </div>
</div>
<div id="ExtensionMethodsSection" class="section">
<table class="memberListTable">
<tr>
<th></th>
<th>
Name
</th>
<th>
Description
</th>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Public extension method" title="Public extension method" src="msdn2019/pubextensionmethod.png"></img>
</td>
<td>
<a href="topic_00000000000000E6.html">SetError(this TleceBaseResponseModel, string)</a>
</td>
<td>
(Defined by <a target="_top" href="topic_00000000000000E4.html" onclick="this.target='';return true;">TleceBaseResponseModelExtension</a>).
</td>
</tr>
<tr class="
inheritedMember
">
<td>
<img alt="Public extension method" title="Public extension method" src="msdn2019/pubextensionmethod.png"></img>
</td>
<td>
<a href="topic_00000000000000E5.html">SetOk(this TleceBaseResponseModel, string)</a>
</td>
<td>
(Defined by <a target="_top" href="topic_00000000000000E4.html" onclick="this.target='';return true;">TleceBaseResponseModelExtension</a>).
</td>
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<div>
<a href="topic_00000000000000E1.html">TleceBaseResponseModel Class</a><br />
<a href="topic_00000000000000E0.html">Tlece.Common.Models Namespace</a><br />
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| asiboro/asiboro.github.io | vsdoc/topic_00000000000000E1_methods--.html | HTML | mit | 9,565 |
---
layout: post
title: 'Our Next Meetup: "Using Akka to Scale Gilt''s Massive Push Notification System"'
date: '2014-03-12T15:09:28-04:00'
tags:
- Gilt
- Gilt Tech
- Gilt Groupe
- Adam Kaplan
- push notifications
- Akka
- Typesafe platform
- New York Mobile App Developer Meetup
- NYMAD
- meetups
- NYC
- Mobile Development
tumblr_url: http://tech.gilt.com/post/79380200541/our-next-meetup-using-akka-to-scale-gilts
---
<p><img src="https://31.media.tumblr.com/fec7c3780b7a6fcde84b81a52a36aec9/tumblr_inline_n2c7ifPhmN1s17bu5.png"/></p>
<p>On Tuesday, March 18, Gilt and the <a href="http://www.meetup.com/NYCMAD/events/168007732/" target="_blank">New York Mobile App Developer meetup group</a> (NYMAD) will co-host an exciting tech talk by Gilt Principal Software Engineer <strong>Adam Kaplan</strong>. In “Using Akka to Scale Gilt’s Massive Push Notification System,” Adam will:</p>
<ul><li>describe the engineering behind Gilt’s push notification system, which can send three million messages in less than 60 seconds</li>
<li>give a brief history of push notifications at Gilt, then focus on the development of his team’s current system: a distributed architecture built with Scala, Akka, ZooKeeper, and other technologies</li>
<li>explain how Akka’s clustering capabilities not only make mass messaging possible, but also promote overall system integrity, scalability, and better performance (and, on the business side of things, higher revenues!)</li>
<li>place push notifications in the context of Gilt’s general engineering culture, which emphasizes a micro-services architecture, fault tolerance, and (the good kind of) redundancy</li>
<li>give a forward-looking view of where push at Gilt is going – and how the work his team performs ensures that all of those millions of messages stay on the right side of that line between “push notifications” and “spam”</li>
</ul><p>The meetup begins at 6:30 PM–just <a href="http://www.meetup.com/NYCMAD/events/168007732/" target="_blank">go here</a> to RSVP. Food and beverages on the house. Hope to see you on Tuesday!</p>
| nataliab/tech-blog | _posts/tumblr/2014-03-12-our-next-meetup-using-akka-to-scale-gilts.html | HTML | mit | 2,153 |
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</html> | coq-bench/coq-bench.github.io-old | clean/Linux-x86_64-4.01.0-1.2.0/unstable/hott/contrib:tait/8.4.dev/index.html | HTML | mit | 4,029 |
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<p>Look for the good in others and they'lll see the good in you.</p>
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</html> | david995/phpprojects | Ejercicios/DISEÑO DE INTERFACES/BLOQUE 2 TEMA 1,2,3,4/Bloque 2- ejercicios/Tema 2/Ejercicio1.html | HTML | mit | 746 |
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<!-- ======== START OF class DATA ======== -->
<h1 class="interface">awe6.interfaces.IScene</h1>
<dl>
<dt>type</dt>
<dd>interface</dd>
<dt>implements</dt>
<dd><a href="../../awe6/interfaces/IViewable.html" class="type">IViewable</a></dd>
<dd><a href="../../awe6/interfaces/IEntityCollection.html" class="type">IEntityCollection</a></dd>
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The IScene interface should be implemented by objects intending to represent scene states in the ISceneManager.
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<a name="isDisposable"></a>
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<div class="comment"> Sets whether the mute button is displayed / active in the overlay.</div>
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<div class="comment"> Sets whether the session is automatically saved when this scene is advanced. In most cases this should be true.</div>
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<div class="member">
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<a name="type"></a>
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pymel.core.datatypes.fabs ¶
fabs ( x ) ¶
Return the absolute value of the float x.
This function has been overriden from math.fabs to work element-wise on iterables
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<h1>pymel.core.datatypes.fabs<a class="headerlink" href="#pymel-core-datatypes-fabs" title="Permalink to this headline">¶</a></h1>
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<tt class="descname">fabs</tt><big>(</big><em>x</em><big>)</big><a class="headerlink" href="#pymel.core.datatypes.fabs" title="Permalink to this definition">¶</a></dt>
<dd><p>Return the absolute value of the float x.
This function has been overriden from math.fabs to work element-wise on iterables</p>
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<pre xml:space="preserve" class="brush: vb">Public Property Categories() As <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a>(Of <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>)</pre>
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<pre xml:space="preserve" class="brush: csharp">public <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a><<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>> Categories {get; set;}</pre>
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<pre xml:space="preserve" class="brush: cpp">public: <br />property <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a><<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>^>^ Categories { <br /> <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a><<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>^>^ get( ); <br /> void set( <br /> <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a><<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>^>^ value <br /> ); <br />}</pre>
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<h4 class="subHeading">
Property Value</h4>
<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/system.collections.generic.list-1">List</a><<a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.mvc.rendering.selectlistitem">SelectListItem</a>>
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<a href="topic_0000000000000996.html">StageQuestionVideoIndexModel Class</a><br />
<a href="topic_0000000000000986.html">Tlece.Recruitment.Models.StageQuestionVideo Namespace</a><br />
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<p>This is a high level documentation outline that is to be filled in as we progress.</p>
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<h3><a class="anchor" id="index_a">- a -</a></h3><ul>
<li>alarm_flag
: <a class="el" href="radiotftp_8c.html#a0fddd88045c5b5bcecfec29219fbec80">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_b">- b -</a></h3><ul>
<li>background
: <a class="el" href="radiotftp_8c.html#adc27b6689a1e932f70c4cc706b723ea3">radiotftp.c</a>
</li>
<li>baud
: <a class="el" href="radiotftp_8c.html#a3128588f7aafa08fbf72984b61b9ac51">radiotftp.c</a>
</li>
<li>buf
: <a class="el" href="radiotftp_8c.html#ac779683109f9a71eee3bef6aff5b4dcb">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_c">- c -</a></h3><ul>
<li>command_buffer
: <a class="el" href="radiotftp_8c.html#acf73d5f08913d2952bf8a60c6a088e50">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_d">- d -</a></h3><ul>
<li>dial_tty
: <a class="el" href="radiotftp_8c.html#a934394ef9a2a49025f911c5733e570f4">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_e">- e -</a></h3><ul>
<li>eth_dst
: <a class="el" href="radiotftp_8c.html#ac3176c49c4e4663ca7edde9478b00176">radiotftp.c</a>
</li>
<li>eth_src
: <a class="el" href="radiotftp_8c.html#a4db57bd3c5ef2c723afdee3615fd7077">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_i">- i -</a></h3><ul>
<li>idle_flag
: <a class="el" href="radiotftp_8c.html#a02fecce62db76d446cceec8d87e330f9">radiotftp.c</a>
</li>
<li>io
: <a class="el" href="radiotftp_8c.html#ab554e7c51bbd6e3eb8e93f14d62668fa">radiotftp.c</a>
</li>
<li>io_flag
: <a class="el" href="radiotftp_8c.html#a4506902b6476e2c20a3cf30b0144443f">radiotftp.c</a>
</li>
<li>io_index
: <a class="el" href="radiotftp_8c.html#a0dd66613a7ca09fc9c70f30f35605ab4">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_m">- m -</a></h3><ul>
<li>mainTimerHandler
: <a class="el" href="timers_8c.html#a84e5f9541daca9ca1e2b3c185ae4dce9">timers.c</a>
</li>
<li>manchester_buffer
: <a class="el" href="radiotftp_8c.html#aa9fa1d4d24adbaee51aa47634b21e0ec">radiotftp.c</a>
</li>
<li>my_ip_address
: <a class="el" href="radiotftp_8c.html#a6e0508d2f3fe444e2c86e784785bb784">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_o">- o -</a></h3><ul>
<li>old
: <a class="el" href="radiotftp_8c.html#a5b7b38070243fb49133d8ea576c5c103">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_p">- p -</a></h3><ul>
<li>preamble
: <a class="el" href="radiotftp_8c.html#a0ee790d630b0a4def6fb76e627ee71f2">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_q">- q -</a></h3><ul>
<li>queue_flag
: <a class="el" href="radiotftp_8c.html#aecd60782e894cf84cf45e3ea2901a687">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_r">- r -</a></h3><ul>
<li>restore
: <a class="el" href="radiotftp_8c.html#a1e93a9cba7205356e04ce291f2cdc194">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_s">- s -</a></h3><ul>
<li>sa_alarm
: <a class="el" href="radiotftp_8c.html#a5edba51aeb9384f25d7dc659db848817">radiotftp.c</a>
</li>
<li>sa_io
: <a class="el" href="radiotftp_8c.html#abbbcf4205db563bd9d8e3637acc82c38">radiotftp.c</a>
</li>
<li>serialportFd
: <a class="el" href="radiotftp_8c.html#ad5d8ff630186cb56cbc4b9cb931a5002">radiotftp.c</a>
</li>
<li>signalCount
: <a class="el" href="radiotftp_8c.html#a990cc2e56a8f075b041b75a912823e94">radiotftp.c</a>
</li>
<li>syncword
: <a class="el" href="radiotftp_8c.html#a96d3c0f4106cb573e5ef72eb3fabc438">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_t">- t -</a></h3><ul>
<li>tempFile
: <a class="el" href="radiotftp_8c.html#a998e8cdb1a5cab218bde1de1009e3931">radiotftp.c</a>
</li>
<li>tempFileName
: <a class="el" href="radiotftp_8c.html#a4c92107f39641b109a1a5ccb8d983057">radiotftp.c</a>
</li>
<li>timer_flag
: <a class="el" href="radiotftp_8c.html#accb4ae119b6b85eda30f468b716c6b83">radiotftp.c</a>
</li>
<li>transmit_buffer
: <a class="el" href="radiotftp_8c.html#a3687e4712fed60d6abf69bd614c95271">radiotftp.c</a>
</li>
<li>transmit_length
: <a class="el" href="radiotftp_8c.html#af39615e6e63a7228eaf9ab46bdedbc3a">radiotftp.c</a>
</li>
</ul>
<h3><a class="anchor" id="index_u">- u -</a></h3><ul>
<li>udp_buffer
: <a class="el" href="radiotftp_8c.html#a3f19a8b618dc7d10ad02ab3dbebd95d4">radiotftp.c</a>
</li>
<li>udp_dst
: <a class="el" href="radiotftp_8c.html#ae706fdaab1d55a0f9318245e0fc23903">radiotftp.c</a>
</li>
<li>udp_dst_prt
: <a class="el" href="radiotftp_8c.html#a6f7563fd7e047c9d84fae0e849a4d22c">radiotftp.c</a>
</li>
<li>udp_src
: <a class="el" href="radiotftp_8c.html#ad5bd9ea4b691e5f10d763eb7282b7d32">radiotftp.c</a>
</li>
<li>udp_src_prt
: <a class="el" href="radiotftp_8c.html#aeb47530036f11b906499d0d95bb34ec9">radiotftp.c</a>
</li>
</ul>
</div>
<hr class="footer"/><address style="text-align: right;"><small>Generated on Fri Jun 8 18:01:25 2012 for KthWsnLongrangeRadioUplink by
<a href="http://www.doxygen.org/index.html">
<img class="footer" src="doxygen.png" alt="doxygen"/></a> 1.6.3 </small></address>
</body>
</html>
| alpsayin/radiotftp | doc/html/globals_vars.html | HTML | mit | 7,125 |
<!DOCTYPE html>
<html>
<head>
<title>Jake's Site</title>
<link href="../css/bootstrap.min.css" rel="stylesheet">
<link href="../css/myStyles.css" rel="stylesheet">
<script src="https://ajax.googleapis.com/ajax/libs/jquery/2.1.3/jquery.min.js"></script>
<script type="text/javascript" src="../js/myApp.js"></script>
<link href="https://fonts.googleapis.com/icon?family=Material+Icons" rel="stylesheet">
</head>
<body id = "body-content">
<div>hi projects</div>
</body> | jkrth617/jkrth617.github.io | info/projects.html | HTML | mit | 480 |
<tr record_id="{{ record.pk }}">
<td class="select-input row-action-cell mktg-col-sm" record_id="{{ record.pk }}">
<button type="button" class="btn btn-link delete-step-1 float-left" record_id="{{ record.pk }}">
<span class="glyphicon glyphicon-remove-sign"></span>
</button>
<button type="button" class="btn btn-link btn-duplicate float-right collapse in" record_id="{{ record.pk }}">
<span class="glyphicon glyphicon-duplicate"></span>
</button>
</td>
<td class="select-input mktg-col-xs">
<select class="form-control record-select person-field" record_id="{{ record.pk }}" name="main_category">
{% for option in cat_choices %}
<option value="{{ option.0 }}" {% if record.main_category == option.0 %}selected="selected"{% endif %}>
{{ option.1 }}
</option>
{% endfor %}
</select>
</td>
<td class="select-input mktg-col-xs">
<select class="form-control record-select person-field" record_id="{{ record.pk }}" name="division1">
{% for option in div_choices %}
<option value="{{ option.0 }}" {% if record.division1 == option.0 %}selected="selected"{% endif %}>
{{ option.1 }}
</option>
{% endfor %}
</select>
</td>
<td class="text-input mktg-col-xl" cell-for="company">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="company" value="{{ record.company|default_if_none:'' }}" />
</td>
<td class="text-input mktg-col-lg">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="name" value="{{ record.name|default_if_none:'' }}"/>
</td>
<td class="text-input mktg-col-lg">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="title" value="{{ record.title|default_if_none:'' }}" />
</td>
<td class="text-input mktg-col-xs" cell-for="dept">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="dept" value="{{ record.dept|default_if_none:'' }}" />
</td>
<td class="text-input mktg-col-md" cell-for="phone">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="phone" value="{{ record.phone|default_if_none:'' }}" />
</td>
<td class="text-input mktg-col-ml">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="email" value="{{ record.email|default_if_none:'' }}" type="email" />
</td>
<td class="text-input mktg-col-ml">
<textarea rows="1" class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="industry">{{ record.industry|default_if_none:'' }}</textarea>
</td>
<td class="select-display mktg-col-xxs">
{% if record.has_registration_history %}
<span class="glyphicon glyphicon-ok"></span>
{% endif %}
</td>
<td class="select-input mktg-col-xs">
<select class="form-control record-select person-field" record_id="{{ record.pk }}" name="geo">
{% for option in geo_choices %}
<option value="{{ option.0 }}" {% if record.geo == option.0 %}selected="selected"{% endif %}>
{{ option.1 }}
</option>
{% endfor %}
</select>
</td>
<td class="select-input mktg-col-xs">
<input type="checkbox" class="form-control record-checkbox person-field" record_id="{{ record.pk }}" name="do_not_email" {% if record.do_not_email %}checked{% endif %} />
</td>
<!-- State/prov field -->
<td class="select-display mktg-col-xs font-sm">
<span name="state_prov" record_id="{{ record.id }}">{{ record.state_prov }}</span>
</td>
<td class="text-display mktg-col-sm">
<span name="modified_by" record_id="{{ record.id }}">
{{ record.modified_by.username }}
</span>
</td>
<td class="text-display mktg-col-sm">
<span name="date_modified" record_id="{{ record.id }}">
{{ record.date_modified|date:"SHORT_DATE_FORMAT" }}
</span>
</td>
<td class="text-display mktg-col-sm">
<span name="created_by" record_id="{{ record.id }}">
{{ record.created_by.username }}
</span>
</td>
<td class="text-display mktg-col-sm">
<span name="date_created" record_id="{{ record.id }}">
{{ record.date_created|date:"SHORT_DATE_FORMAT" }}
</span>
</td>
<td class="select-input mktg-col-xs">
<select class="form-control record-select person-field" record_id="{{ record.pk }}" name="main_category2">
{% for option in cat_choices %}
<option value="{{ option.0 }}" {% if record.main_category2 == option.0 %}selected="selected"{% endif %}>
{{ option.1 }}
</option>
{% endfor %}
</select>
</td>
<td class="select-input mktg-col-xs">
<select class="form-control record-select person-field" record_id="{{ record.pk }}" name="division2">
{% for option in div_choices %}
<option value="{{ option.0 }}" {% if record.division2 == option.0 %}selected="selected"{% endif %}>
{{ option.1 }}
</option>
{% endfor %}
</select>
</td>
<td class="select-input mktg-col-xs">
<input type="checkbox" class="form-control record-checkbox person-field" record_id="{{ record.pk }}" name="do_not_call" {% if record.do_not_call %}checked{% endif %} />
</td>
<td class="text-input mktg-col-ml">
<input class="form-control table-field record-field person-field" record_id="{{ record.pk }}" name="email_alternate" value="{{ record.email_alternate|default_if_none:'' }}" type="email" />
</td>
</tr>
| asterix135/infonex_crm | marketing/templates/marketing/index_addins/table_row.html | HTML | mit | 5,557 |
<!DOCTYPE html><html><head><title>https://francojc.github.io/tags/r-projects/</title><link rel="canonical" href="https://francojc.github.io/tags/r-projects/"/><meta name="robots" content="noindex"><meta charset="utf-8" /><meta http-equiv="refresh" content="0; url=https://francojc.github.io/tags/r-projects/" /></head></html> | francojc/francojc.github.io | tags/r-projects/page/1/index.html | HTML | mit | 325 |
<!DOCTYPE html>
<html>
<head>
<meta charset="utf-8" />
<meta http-equiv="X-UA-Compatible" content="IE=edge" />
<title>AirHacX Official Blog</title>
<meta name="description" content="" />
<meta name="HandheldFriendly" content="True" />
<meta name="viewport" content="width=device-width, initial-scale=1.0" />
<link rel="shortcut icon" href="//blog.airhacx.com/themes/Casper/favicon.ico">
<link rel="stylesheet" type="text/css" href="//blog.airhacx.com/themes/Casper/assets/css/screen.css?v=1.0.0" />
<link rel="stylesheet" type="text/css" href="//fonts.googleapis.com/css?family=Merriweather:300,700,700italic,300italic|Open+Sans:700,400" />
<link rel="canonical" href="http://blog.airhacx.com" />
<meta name="generator" content="Ghost ?" />
<link rel="alternate" type="application/rss+xml" title="AirHacX Official Blog" href="http://blog.airhacx.com/rss" />
<link rel="stylesheet" href="//cdnjs.cloudflare.com/ajax/libs/highlight.js/8.4/styles/default.min.css">
</head>
<body class="tag-template tag-GSM home-template">
<header class="main-header tag-head no-cover">
<nav class="main-nav overlay clearfix">
<a class="back-button icon-arrow-left" href="http://blog.airhacx.com">Home</a>
<!-- <a class="subscribe-button icon-feed" href="http://blog.airhacx.com/tag/GSM/rss/">GSM</a> -->
</nav>
<div class="vertical">
<div class="main-header-content inner">
<h1 class="page-title">GSM</h1>
<h2 class="page-description">
A 1-post collection
</h2>
</div>
</div>
</header>
<main class="content" role="main">
<div class="extra-pagination inner">
<nav class="pagination" role="navigation">
<span class="page-number">Page 1 of 1</span>
</nav>
</div>
<article class="post tag-Tracking-Unit tag-AirTrack tag-GPS tag-GSM">
<header class="post-header">
<h2 class="post-title"><a href="http://blog.airhacx.com/2015/11/30/AirHacX-Tracking-Unit.html">AirHacX Tracking Unit</a></h2>
</header>
<section class="post-excerpt">
<p>We are working on a device called Tracking Unit. It helps you to connect you to the Internet. The unit contains three major modules WiFi, GPS <a class="read-more" href="http://blog.airhacx.com/2015/11/30/AirHacX-Tracking-Unit.html">»</a></p>
</section>
<footer class="post-meta">
on <a href="http://blog.airhacx.com/tag/Tracking-Unit">Tracking Unit</a>, <a href="http://blog.airhacx.com/tag/AirTrack"> AirTrack</a>, <a href="http://blog.airhacx.com/tag/GPS"> GPS</a>, <a href="http://blog.airhacx.com/tag/GSM"> GSM</a>
<time class="post-date" datetime="2015-11-30">30 November 2015</time>
</footer>
</article>
<nav class="pagination" role="navigation">
<span class="page-number">Page 1 of 1</span>
</nav>
</main>
<footer class="site-footer clearfix">
<section class="copyright"><a href="http://blog.airhacx.com">AirHacX Official Blog</a> © 2015</section>
<section class="poweredby">Proudly published with <a href="http://hubpress.io">HubPress</a></section>
</footer>
<script src="//cdnjs.cloudflare.com/ajax/libs/jquery/2.1.3/jquery.min.js?v="></script> <script src="//cdnjs.cloudflare.com/ajax/libs/moment.js/2.9.0/moment-with-locales.min.js?v="></script> <script src="//cdnjs.cloudflare.com/ajax/libs/highlight.js/8.4/highlight.min.js?v="></script>
<script type="text/javascript">
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hljs.initHighlightingOnLoad();
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ga('create', 'UA-70096408-1', 'auto');
ga('send', 'pageview');
</script>
</body>
</html>
| AirHacX/blog.airhacx.com | tag/GSM/index.html | HTML | mit | 4,602 |
<section ng-controller="ArticlesController" ng-init="findOne()">
<div class="page-header">
<h1 ng-bind="article.title"></h1>
</div>
<div class="pull-right" ng-show="authentication.user._id == article.user._id">
<a class="btn btn-primary" ui-sref="articles.edit({articleId: article._id})">
<i class="glyphicon glyphicon-edit"></i>
</a>
<a class="btn btn-primary" ng-click="remove();">
<i class="glyphicon glyphicon-trash"></i>
</a>
</div>
<small>
<em class="text-muted">
Posted on
<span ng-bind="article.created | date:'mediumDate'"></span>
by
<span ng-bind="article.user.displayName"></span>
</em>
</small>
<md-content>
<div layout="row" layout-xs="column">
<div flex>
<p class="lead" ng-bind="article.content"></p>
</div>
<div flex>
<div ng-repeat="fragment in article.fragments">
<p> {{fragment}} </p> </br>
</div>
<div ng-repeat="fragmentType in article.fragmentTypes">
<p> {{fragmentType}} </p> </br>
</div>
</div>
</div>
</md-content>
</section>
| oolawo09/Threshold | modules/articles/client/views/view-article.client.view.html | HTML | mit | 1,128 |
<HTML>
<HEAD>
Thu Dec 05 11:51:37 CET 2013
</HEAD>
<BODY>
<PRE>
<table width="100%" border>
<tr><th>Log Message</th><th>Time</th></tr>
<tr><td>Initial Rule added:sell 0.01 BTC on mtgox if price goes below 74.0 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>Initial Rule added:buy 1.9 LTC on btce if price goes below 2.3 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>Initial Rule added:sell 0.4 BTC on bitstamp if price goes above 150.4 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>Initial Rule added:buy 0.037 BTC on mtgox if price goes above 10.0 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>[mtgox] Last price of 1 BTC: 1000.0 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>[mtgox] Last price of 1 BTC: 751.51 EUR</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>[btce] Last price of 1 BTC: 910.2 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>[btce] Last price of 1 LTC: 32.42 USD</td><td>Dec 05,2013 11:51</td></tr>
<tr><td>[bitstamp] Last price of 1 BTC: 925.02 USD</td><td>Dec 05,2013 11:51</td></tr>
</table>
</PRE></BODY>
</HTML>
| adv0r/botcoin | Botcoin-javafx/logs/1386240694188_log.html | HTML | mit | 1,048 |
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd">
<html xmlns="http://www.w3.org/1999/xhtml">
<head>
<meta http-equiv="Content-Type" content="text/html; charset=utf-8" />
<meta name="GENERATOR" content="VSdocman - documentation generator; https://www.helixoft.com" />
<link rel="icon" href="favicon.ico">
<title>CompanyCvRequestDto.Video Property</title>
<link rel="stylesheet" type="text/css" href="msdn2019/toc.css" />
<script src="msdn2019/toc.js"></script>
<link rel="stylesheet" type="text/css" href="msdn2019/msdn2019.css"></link>
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<link href="SyntaxHighlighter/styles/shCore.css" rel="stylesheet" type="text/css" />
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<script type="text/javascript">
SyntaxHighlighter.all();
</script>
<link rel="stylesheet" type="text/css" href="vsdocman_overrides.css"></link>
</head>
<body style="direction: ltr;">
<div id="topic">
<!--HEADER START-->
<div id="header">
<div id="header-top-container">
<div id="header-top-parent-container1">
<div id="header-top-container1">
<div id="runningHeaderText1"><a id="headerLogo" href="#" onclick="window.location.href = getCssCustomProperty('--headerLogoLink'); return false;">logo</a></div>
<div id="runningHeaderText1b"><script>
document.write(getCssCustomProperty('--headerTopCustomLineHtml'));
</script></div>
</div>
</div>
<div id="header-top-container2">
<div id="runningHeaderText">SOLUTION-WIDE PROPERTIES Reference</div>
<div id="search-bar-container">
<form id="search-bar" action="search--.html">
<input id="HeaderSearchInput" type="search" name="search" placeholder="Search" >
<button id="btn-search" class="c-glyph" title="Search">
<span>Search</span>
</button>
</form>
<button id="cancel-search" class="cancel-search" title="Cancel">
<span>Cancel</span>
</button>
</div>
</div>
</div>
<hr />
<div id="header-breadcrumbs"></div>
<div id="headerLinks">
</div>
<hr />
</div>
<!--HEADER END-->
<div id="mainSection">
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</div>
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</div>
<div id="mainBody">
<h1 class="title">CompanyCvRequestDto.Video Property</h1>
<div class="metadata">
Namespace:
<a href="topic_0000000000000699.html">Tlece.Recruitment.Models.Company</a>
<br />Assembly: Tlece.Recruitment (in Tlece.Recruitment.dll)
</div>
<div class="section_container">
<div id="syntaxSection" class="section">
<div id="syntaxCodeBlocks">
<div class="codeSnippetContainer">
<div class="codeSnippetTabs">
<div class="codeSnippetTabLeftCornerActive">
</div>
<div class="codeSnippetTab csFirstTab csActiveTab codeVB">
<a>VB</a>
</div>
<div class="codeSnippetTab csNaTab codeCsharp">
<a href="javascript: CodeSnippet_SetLanguage('Csharp');">C#</a>
</div>
<div class="codeSnippetTab csNaTab codeFsharp">
<a href="javascript: CodeSnippet_SetLanguage('Fsharp');">F#</a>
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<a href="javascript: CodeSnippet_SetLanguage('Cpp');">C++</a>
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<a href="javascript: CodeSnippet_SetLanguage('JScript');">JScript</a>
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<a title="Copy to clipboard." href="javascript:void(0)" onclick="CopyCode(this);">Copy</a>
</div>
<div class="codeSnippetCode codeVB">
<pre xml:space="preserve" class="brush: vb">Public Property Video() As <a target="_top" href="https://docs.microsoft.com/en-us/dotnet/api/microsoft.aspnetcore.http.iformfile">IFormFile</a></pre>
</div>
<div class="codeSnippetCode codeNA">
<pre xml:space="preserve">This language is not supported or no code example is available.</pre>
</div>
</div>
</div>
<div class="codeSnippetContainer">
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<div class="codeSnippetTabLeftCorner">
</div>
<div class="codeSnippetTab csFirstTab csNaTab codeVB">
<a>VB</a>
</div>
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<a href="javascript: CodeSnippet_SetLanguage('Csharp');">C#</a>
</div>
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<a href="javascript: CodeSnippet_SetLanguage('Fsharp');">F#</a>
</div>
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<a href="javascript: CodeSnippet_SetLanguage('Cpp');">C++</a>
</div>
<div class="codeSnippetTab csLastTab csNaTab codeJScript">
<a href="javascript: CodeSnippet_SetLanguage('JScript');">JScript</a>
</div>
<div class="codeSnippetTabRightCorner">
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<a title="Copy to clipboard." href="javascript:void(0)" onclick="CopyCode(this);">Copy</a>
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pymel.core.runtime.MirrorSkinWeights ¶
MirrorSkinWeights ( *args , **kwargs ) ¶
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<h1>pymel.core.runtime.MirrorSkinWeights<a class="headerlink" href="#pymel-core-runtime-mirrorskinweights" title="Permalink to this headline">¶</a></h1>
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<tt class="descname">MirrorSkinWeights</tt><big>(</big><em>*args</em>, <em>**kwargs</em><big>)</big><a class="headerlink" href="#pymel.core.runtime.MirrorSkinWeights" title="Permalink to this definition">¶</a></dt>
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Class: DropboxApi::Endpoints::Files::Move
— Documentation by YARD 0.9.26
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<span class='title'><span class='object_link'><a href="../../../DropboxApi.html" title="DropboxApi (module)">DropboxApi</a></span></span> » <span class='title'><span class='object_link'><a href="../../Endpoints.html" title="DropboxApi::Endpoints (module)">Endpoints</a></span></span> » <span class='title'><span class='object_link'><a href="../Files.html" title="DropboxApi::Endpoints::Files (module)">Files</a></span></span>
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<span class="title">Move</span>
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<div id="content"><h1>Class: DropboxApi::Endpoints::Files::Move
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<dt>Inherits:</dt>
<dd>
<span class="inheritName"><span class='object_link'><a href="../Rpc.html" title="DropboxApi::Endpoints::Rpc (class)">Rpc</a></span></span>
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<li>Object</li>
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<li class="next">DropboxApi::Endpoints::Files::Move</li>
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<a href="#" class="inheritanceTree">show all</a>
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<dt>Includes:</dt>
<dd><span class='object_link'><a href="../../OptionsValidator.html" title="DropboxApi::OptionsValidator (module)">OptionsValidator</a></span></dd>
</dl>
<dl>
<dt>Defined in:</dt>
<dd>lib/dropbox_api/endpoints/files/move.rb</dd>
</dl>
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<h2>
Constant Summary
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<dl class="constants">
<dt id="Method-constant" class="">Method =
</dt>
<dd><pre class="code"><span class='symbol'>:post</span></pre></dd>
<dt id="Path-constant" class="">Path =
</dt>
<dd><pre class="code"><span class='tstring'><span class='tstring_beg'>'</span><span class='tstring_content'>/2/files/move</span><span class='tstring_end'>'</span></span></pre></dd>
<dt id="ResultType-constant" class="">ResultType =
</dt>
<dd><pre class="code"><span class='const'><span class='object_link'><a href="../../../DropboxApi.html" title="DropboxApi (module)">DropboxApi</a></span></span><span class='op'>::</span><span class='const'><span class='object_link'><a href="../../Metadata.html" title="DropboxApi::Metadata (module)">Metadata</a></span></span><span class='op'>::</span><span class='const'><span class='object_link'><a href="../../Metadata/Resource.html" title="DropboxApi::Metadata::Resource (class)">Resource</a></span></span></pre></dd>
<dt id="ErrorType-constant" class="">ErrorType =
</dt>
<dd><pre class="code"><span class='const'><span class='object_link'><a href="../../../DropboxApi.html" title="DropboxApi (module)">DropboxApi</a></span></span><span class='op'>::</span><span class='const'><span class='object_link'><a href="../../Errors.html" title="DropboxApi::Errors (module)">Errors</a></span></span><span class='op'>::</span><span class='const'><span class='object_link'><a href="../../Errors/RelocationError.html" title="DropboxApi::Errors::RelocationError (class)">RelocationError</a></span></span></pre></dd>
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<h2>
Instance Method Summary
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<ul class="summary">
<li class="public ">
<span class="summary_signature">
<a href="#move-instance_method" title="#move (instance method)">#<strong>move</strong>(from, to, options = {}) ⇒ Object </a>
</span>
<span class="summary_desc"><div class='inline'><p>Move a file or folder to a different location in the user's Dropbox.</p>
</div></span>
</li>
</ul>
<h3 class="inherited">Methods included from <span class='object_link'><a href="../../OptionsValidator.html" title="DropboxApi::OptionsValidator (module)">OptionsValidator</a></span></h3>
<p class="inherited"><span class='object_link'><a href="../../OptionsValidator.html#validate_options-instance_method" title="DropboxApi::OptionsValidator#validate_options (method)">#validate_options</a></span></p>
<h3 class="inherited">Methods inherited from <span class='object_link'><a href="../Rpc.html" title="DropboxApi::Endpoints::Rpc (class)">Rpc</a></span></h3>
<p class="inherited"><span class='object_link'><a href="../Rpc.html#build_connection-instance_method" title="DropboxApi::Endpoints::Rpc#build_connection (method)">#build_connection</a></span>, <span class='object_link'><a href="../Rpc.html#build_request-instance_method" title="DropboxApi::Endpoints::Rpc#build_request (method)">#build_request</a></span>, <span class='object_link'><a href="../Rpc.html#request_body-instance_method" title="DropboxApi::Endpoints::Rpc#request_body (method)">#request_body</a></span></p>
<h3 class="inherited">Methods inherited from <span class='object_link'><a href="../Base.html" title="DropboxApi::Endpoints::Base (class)">Base</a></span></h3>
<p class="inherited"><span class='object_link'><a href="../Base.html#add_endpoint-class_method" title="DropboxApi::Endpoints::Base.add_endpoint (method)">add_endpoint</a></span>, <span class='object_link'><a href="../Base.html#initialize-instance_method" title="DropboxApi::Endpoints::Base#initialize (method)">#initialize</a></span></p>
<div id="constructor_details" class="method_details_list">
<h2>Constructor Details</h2>
<p class="notice">This class inherits a constructor from <span class='object_link'><a href="../Base.html#initialize-instance_method" title="DropboxApi::Endpoints::Base#initialize (method)">DropboxApi::Endpoints::Base</a></span></p>
</div>
<div id="instance_method_details" class="method_details_list">
<h2>Instance Method Details</h2>
<div class="method_details first">
<h3 class="signature first" id="move-instance_method">
#<strong>move</strong>(from, to, options = {}) ⇒ <tt>Object</tt>
</h3><div class="docstring">
<div class="discussion">
<p>Move a file or folder to a different location in the user's Dropbox.</p>
<p>If the source path is a folder all its contents will be moved.</p>
</div>
</div>
<div class="tags">
<p class="tag_title">Parameters:</p>
<ul class="param">
<li>
<span class='name'>from</span>
<span class='type'>(<tt>String</tt>)</span>
—
<div class='inline'><p>Path in the user's Dropbox to be copied or moved.</p>
</div>
</li>
<li>
<span class='name'>to</span>
<span class='type'>(<tt>String</tt>)</span>
—
<div class='inline'><p>Path in the user's Dropbox that is the destination.</p>
</div>
</li>
</ul>
<p class="tag_title">Options Hash (<tt>options</tt>):</p>
<ul class="option">
<li>
<span class="name">autorename</span>
<span class="type">(<tt>Boolean</tt>)</span>
<span class="default">
</span>
— <div class='inline'><p>If there's a conflict, have the
Dropbox server try to autorename the file to avoid the conflict. The
default for this field is <code>false</code>.</p>
</div>
</li>
</ul>
</div>
<table class="source_code">
<tr>
<td>
<pre class="lines">
20
21
22
23
24
25
26
27
28
29
30
31
32</pre>
</td>
<td>
<pre class="code"><span class="info file"># File 'lib/dropbox_api/endpoints/files/move.rb', line 20</span>
<span class='id identifier rubyid_add_endpoint'>add_endpoint</span> <span class='symbol'>:move</span> <span class='kw'>do</span> <span class='op'>|</span><span class='id identifier rubyid_from'>from</span><span class='comma'>,</span> <span class='id identifier rubyid_to'>to</span><span class='comma'>,</span> <span class='id identifier rubyid_options'>options</span> <span class='op'>=</span> <span class='lbrace'>{</span><span class='rbrace'>}</span><span class='op'>|</span>
<span class='comment'># We're not implementing support for the `allow_shared_folder` option
</span> <span class='comment'># because according to Dropbox's documentation: "This field is always
</span> <span class='comment'># true for move".
</span> <span class='id identifier rubyid_validate_options'>validate_options</span><span class='lparen'>(</span><span class='lbracket'>[</span>
<span class='symbol'>:autorename</span>
<span class='rbracket'>]</span><span class='comma'>,</span> <span class='id identifier rubyid_options'>options</span><span class='rparen'>)</span>
<span class='id identifier rubyid_perform_request'>perform_request</span> <span class='id identifier rubyid_options'>options</span><span class='period'>.</span><span class='id identifier rubyid_merge'>merge</span><span class='lparen'>(</span><span class='lbrace'>{</span>
<span class='label'>from_path:</span> <span class='id identifier rubyid_from'>from</span><span class='comma'>,</span>
<span class='label'>to_path:</span> <span class='id identifier rubyid_to'>to</span>
<span class='rbrace'>}</span><span class='rparen'>)</span>
<span class='kw'>end</span></pre>
</td>
</tr>
</table>
</div>
</div>
</div>
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<h2>WaSP: Lutando por Standards</h2>
<p>O World Wide Web Consortium (<a href="http://www.w3c.org/" title="W3C website">W3C</a>), juntamente com outros grupos e organismos reguladores, estabeleceu tecnologias para criação e interpretação de conteúdo para a Web. Estas tecnologias, a que chamamos “standards Web”, são cuidadosamente concebidas para dar os maiores benefícios ao maior número possível de utilizadores da Web, assegurando ao mesmo tempo a viabilidade a longo prazo de qualquer documento que seja publicado na Web. Ver barra lateral para mais detalhes.</p>
<p>Conceber e construir sites usando estes standards simplifica os processos e baixa os custos de produção, obtendo-se ao mesmo tempo sites acessíveis a mais pessoas e a mais tipos de dispositivos de Internet. Os sites desenvolvidos desta forma continuarão a funcionar correctamente à medida que os browsers tradicionais evoluem e novos dispositivos de Internet surgem no mercado.</p>
<p>Parece claro e faz bastante sentido. Então qual é o problema? E porque é que existe o Web Standards Project?</p>
<h3>O Problema</h3>
<p>Apesar dos principais browsers terem sido envolvidos na criação de standards Web desde a formação do W3C, durante muitos anos o seguimento dessas regras não foi tido em conta. Ao lançar browsers que não suportavam os standards uniformemente, os fabricantes fragmentaram desnecessariamente a Web, prejudicando de igual forma designers, programadores, utilizadores e empresas.</p>
<p>A falta de suporte uniforme para os standards do W3C deixou os consumidores frustrados: se usassem o browser “errado”, muitos não conseguiriam aceder ao conteúdo ou executar as transacções pretendidas. De entre aqueles mais frequentemente afectados estavam as pessoas com incapacidades ou necessidades especiais.</p>
<h4>Dilemas e Custos</h4>
<p>Ao mesmo tempo, a falta de suporte uniforme aos standards do W3C deixou designers, programadores de Web e donos de sites num terrível dilema: teriam os recursos necessários para implementar múltiplas versões de cada página Web, de forma a adaptá-las a browsers incompatíveis? Em caso negativo, que browsers deveriam ignorar, e quantos milhões de visitantes estariam na disposição de afastar? De qualquer das formas, o custo era demasiado elevado. Ainda é.</p>
<p>O fracturado mercado dos browsers provocava um aumento de pelo menos 25% ao custo de desenvolvimento de cada site. Devido a restrições orçamentais, muitos programadores de Web produziam sites que deixavam de fora potenciais clientes. Muitos programadores que sabiam da existência de standards não viam utilidade em criar sites para browsers que não os seguiam. Outros sabiam pouco ou nada sobre standards – e muitos ainda não sabem, incluindo algumas das maiores consultoras que parecem compreender ASP, Java, Flash MX, e .NET, todavia não percebem quase nada sobre marcação estruturada, folhas de estilo, ou a importância da separação entre estrutura e apresentação.</p>
<p>Alguns designers, limitados pela incompatibilidade dos browsers, excluíram deliberadamente dos seus sites todas as tecnologias de Web, à excepção das mais antigas e universais. Tais sites funcionavam frequentemente em todos os browsers, mas a custo da funcionalidade e da limitação do apelo ao consumidor.</p>
<p>Outros usavam editores e ferramentas de publicação para gerar múltiplas “camadas” de código e marcação, optimizados para as especificidades dos browsers mais populares. Este processo levou a desperdícios de dinheiro e de largura de banda, e deu frequentemente origem a sites que deixaram de funcionar na geração seguinte de browsers (nunca funcionaram em browsers e dispositivos alternativos, desde leitores de écran, Lynx e PDAs até browsers menos populares tais como o Opera). A Web está repleta de “restos mortais” de sites em tempos impressionantes que não funcionam nos browsers e dispositivos contemporâneos. Para piorar as coisas, tais sites continuam a ser criados todos os dias.</p>
<p>Alguns designers ficaram de tal forma frustrados que simplesmente viraram as costas aos standards Web, e começaram a desenvolver exclusivamente em ambientes proprietários. Apesar de ricas em termos de potencial criativo, tais tecnologias sofrem de fraca acessibilidade, a não dão resposta a necessidades comuns tais como: imprimir, marcar sites (bookmarking), copiar e colar, e outras tarefas que os utilizadores da Web efectuam em sites informativos ou transaccionais.</p>
<h4>Nascido da Necessidade</h4>
<p>Em resposta a estes problemas, o Web Standards Project (WaSP) foi formado em 1998 com o objectivo de promover os standards Web e encorajar os fabricantes de browsers a fazer o mesmo, assegurando desse modo um acesso simples e com menos custos para todos.</p>
<p>Apesar da nossa mensagem ter sido inicialmente recebida com resistência, particularmente pelos departamentos de marketing e relações públicas das empresas produtoras de browsers, no final levámos a melhor—em parte porque os engenheiros de muitas companhias concordaram connosco e viram o WaSP como um aliado nas suas batalhas internas com os administradores.</p>
<p>Com início em 2000, um a um, os principais browsers foram cumprindo a promessa de suportar muitos dos standards por nós (por vezes ruidosamente) promovidos. Os browsers lideres de mercado actuais, bem como vários competidores, fornecem excelente suporte a HTML 4, XHTML 1, CSS, ECMAScript (a versão standard do JavaScript), e o DOM—ou estão em vias de o fazer.</p>
<p>Graças a estes browsers, os designers e programadores de Web estão finalmente livres para construir sites com XHTML e CSS e, em muitos casos, separar a estrutura da apresentação para maximizar a portabilidade e a acessibilidade. Com alguma cautela, os designers podem usar o standard DOM do W3C para adicionar “comportamentos” sofisticados aos sites.</p>
<p>Então qual o problema, e porque é que ainda existe o Web Standards Project?</p>
<h3>Desafios Futuros</h3>
<p>Apesar de os browsers de hoje suportarem standards, dezenas de milhares de designers e programadores Web continuam a usar métodos ultrapassados que misturam estrutura e apresentação, em alguns casos evitando completamente as estruturas semânticas e usando de forma errada o (X)HTML como ferramenta de design. Alguns profissionais muito bem pagos continuam a produzir inúmeros sites inválidos e inacessíveis, cheios de marcação estruturalmente sem sentido, enormes mapeamentos de imagem, excesso de tabelas dentro de outras tabelas, e scripts de detecção ultrapassados que causam exactamente os mesmos problemas de usabilidade que era suposto originalmente prevenirem.</p>
<p>Muitos livros sobre desenvolvimento para a Web ainda ensinam métodos ultrapassados, e muitos profissionais constroem com orgulho sites cujo aspecto é exactamente o mesmo nos browsers que obedecem a standards e nos que não obedecem, mas a custo da acessibilidade, da viabilidade a longo prazo, e da compatibilidade em versões futuras. Outros desenvolvem código proprietário que apenas funciona numa mão cheia dos browsers mais populares.</p>
<p>Deste modo, um dos objectivos principais do WaSP é fornecer recursos de formação que possam ajudar os nossos pares a aprender os métodos que obedecem aos standards, o que é do seu interesse, dos seus clientes e dos utilizadores dos sites.</p>
<p>Muitos profissionais trabalham recorrendo a ambientes de edição visuais, desenvolvidos no auge da “Guerra dos Browsers”. Tal como mencionado acima, tais ferramentas criam em geral sites inválidos e não semânticos, optimizados não para standards, mas para as peculiaridades das versões 4.0 dos browsers. Em 2002, dois dos principais editores visuais melhoraram grandemente o suporte a standards Web e a acessibilidade (um dos quais com a ajuda do Web Standards Project). Mas para fazer uso destes melhoramentos, os profissionais devem aprender as bases e os benefícios de desenhar e construir sites com standards Web. Este facto aponta mais uma vez para a necessidade de formar os programadores.</p>
<p>Os clientes e gestores de sites também necessitam desta informação, caso pretendam criar sites que sejam acessíveis aos browsers actuais, e que se mantenham viáveis à medida que os browsers e outros dispositivos evoluem. é esperança do WaSP que, uma vez informados dos benefícios que os standards trazem, os responsáveis pelos sites deixem de os olhar como uma espécie de publicidade impressa que deve ser vista exactamente da mesma forma em todos os ambientes. E que, em vez disso, foquem a atenção em fornecer conteúdos e funcionalidades apropriados dentro do contexto de uma apresentação que pode variar ligeiramente de acordo com as necessidades e capacidades de diferentes browsers e dispositivos.</p>
<h3>Texto da Missão Original</h3>
<p>O texto original da Missão do WaSP de 1998 está disponível em <a href="http://archive.webstandards.org/index.html" title="http://archive.webstandards.org">archive.Webstandards.org</a></p>
<p>© 1998-2002 Web Standards Project, www.webstandards.org </p>
<p>Versão Portuguesa por: <a title="site" href="http://www.pedromendes.com/">Pedro Mendes</a><br /> Actualizado em: 2002/09/03<br /> Versão original deste documento: <a href="/index.html">www.webstandards.org/about/mission</a></p>
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<div class="pullquote pt" lang="pt"><h5>Que "Standards?"</h5>
<p>Quando falamos de "standards" para a Web, queremos dizer:</p>
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<dd><a href="http://www.w3.org/TR/html401" title="HTML 4.01 Specification">Hypertext Markup Language (<span class="abbr">HTML</span>) 4.01</a></dd>
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<dd><a href="http://www.w3.org/DOM/DOMTR#dom2" title="DOM Level 2 Specification Links">DOM Nível 2</a></dd>
<dd><a href="http://www.w3.org/TR/2004/REC-DOM-Level-3-Core-20040407" title="DOM Level 3 Specification Core">DOM Nível 3 (Core)</a> </dd>
<dt>Linguagens de Scripting</dt>
<dd><a href="http://www.ecma.ch/ecma1/STAND/ECMA-262.HTM" title="ECMA 262 Standard">ECMAScript 262</a> (a versão standard do JavaScript)</dd>
</dl>
<p>...bem como standards emergentes, tais como para browsers para televisão e PDA.</p></div>
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SmcGuard (SMC v. 6_1_0 API Specification)
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<b>SMC</b><br><font size=-1>6_1_0</font></EM>
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SUMMARY: <A HREF="#nested_classes_inherited_from_class_net.sf.smc.model.SmcElement">NESTED</A> | <A HREF="#fields_inherited_from_class_net.sf.smc.model.SmcElement">FIELD</A> | <A HREF="#constructor_summary">CONSTR</A> | <A HREF="#method_summary">METHOD</A></FONT></TD>
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net.sf.smc.model</FONT>
<BR>
Class SmcGuard</H2>
<PRE>
java.lang.Object
<IMG SRC="../../../../resources/inherit.gif" ALT="extended by "><A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">net.sf.smc.model.SmcElement</A>
<IMG SRC="../../../../resources/inherit.gif" ALT="extended by "><B>net.sf.smc.model.SmcGuard</B>
</PRE>
<HR>
<DL>
<DT><PRE>public final class <B>SmcGuard</B><DT>extends <A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">SmcElement</A></DL>
</PRE>
<P>
This is the second half of a
<A HREF="../../../../net/sf/smc/model/SmcTransition.html" title="class in net.sf.smc.model"><CODE>transition</CODE></A> definition.
This contains the:
<ul>
<li>
reference to the parent transition,
</li>
<li>
the guard condition (which may be an empty string),
</li>
<li>
the transition type,
</li>
<li>
the end state,
</li>
<li>
the push state (if this is a push transition type),
</li>
<li>
the pop arguments (if this is a pop transition type) and
</li>
<li>
the transition action list (may be empty).
</li>
</ul>
Most transitions have no condition, go directly to the next
state and have zero or more actions. The push and pop
transitions allow FSM "subroutines" to be defined. If a common
state machine sequence needs to be accessed from different
states in the main map, then SMC encourages developers to
define that common sequence in a separate map and to push
to this submap from the main map states. When the submap
completes its work a pop transition is used to return to
the point of departure in the main map. The pop transition
"returns" a transition and optional argument list which is
applied to the restored main map state. In short, push and
pop transitions allow redundant state sequences to be defined
once instead of duplicated multiple times within a single FSM.
<P>
<P>
<DL>
<DT><B>See Also:</B><DD><A HREF="../../../../net/sf/smc/model/SmcTransition.html" title="class in net.sf.smc.model"><CODE>SmcTransition</CODE></A>,
<A HREF="../../../../net/sf/smc/model/SmcAction.html" title="class in net.sf.smc.model"><CODE>SmcAction</CODE></A></DL>
<HR>
<P>
<!-- ======== NESTED CLASS SUMMARY ======== -->
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<TH ALIGN="left" COLSPAN="2"><FONT SIZE="+2">
<B>Nested Class Summary</B></FONT></TH>
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<A NAME="nested_classes_inherited_from_class_net.sf.smc.model.SmcElement"><!-- --></A>
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<TR BGCOLOR="#EEEEFF" CLASS="TableSubHeadingColor">
<TH ALIGN="left"><B>Nested classes/interfaces inherited from class net.sf.smc.model.<A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">SmcElement</A></B></TH>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE><A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html" title="enum in net.sf.smc.model">SmcElement.TransType</A></CODE></TD>
</TR>
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<!-- =========== FIELD SUMMARY =========== -->
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<TH ALIGN="left" COLSPAN="2"><FONT SIZE="+2">
<B>Field Summary</B></FONT></TH>
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<A NAME="fields_inherited_from_class_net.sf.smc.model.SmcElement"><!-- --></A>
<TABLE BORDER="1" WIDTH="100%" CELLPADDING="3" CELLSPACING="0" SUMMARY="">
<TR BGCOLOR="#EEEEFF" CLASS="TableSubHeadingColor">
<TH ALIGN="left"><B>Fields inherited from class net.sf.smc.model.<A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">SmcElement</A></B></TH>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE><A HREF="../../../../net/sf/smc/model/SmcElement.html#_lineNumber">_lineNumber</A>, <A HREF="../../../../net/sf/smc/model/SmcElement.html#_name">_name</A>, <A HREF="../../../../net/sf/smc/model/SmcElement.html#NIL_STATE">NIL_STATE</A></CODE></TD>
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<!-- ======== CONSTRUCTOR SUMMARY ======== -->
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<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#SmcGuard(java.lang.String, int, net.sf.smc.model.SmcTransition)">SmcGuard</A></B>(java.lang.String cond,
int lineNumber,
<A HREF="../../../../net/sf/smc/model/SmcTransition.html" title="class in net.sf.smc.model">SmcTransition</A> transition)</CODE>
<BR>
Creates a guard instance for the given transition, line
number and condition.</TD>
</TR>
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<!-- ========== METHOD SUMMARY =========== -->
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<B>Method Summary</B></FONT></TH>
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<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#accept(net.sf.smc.model.SmcVisitor)">accept</A></B>(<A HREF="../../../../net/sf/smc/model/SmcVisitor.html" title="class in net.sf.smc.model">SmcVisitor</A> visitor)</CODE>
<BR>
Calls the visitor's visit method for this finite state
machine element.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.util.List<<A HREF="../../../../net/sf/smc/model/SmcAction.html" title="class in net.sf.smc.model">SmcAction</A>></CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getActions()">getActions</A></B>()</CODE>
<BR>
Returns the transition action list.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.lang.String</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getCondition()">getCondition</A></B>()</CODE>
<BR>
Returns the guard condition.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.lang.String</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getEndState()">getEndState</A></B>()</CODE>
<BR>
Returns the transition end state name.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.lang.String</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getPopArgs()">getPopArgs</A></B>()</CODE>
<BR>
Returns the pop transition arguments.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.lang.String</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getPushState()">getPushState</A></B>()</CODE>
<BR>
Returns the push state name.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> <A HREF="../../../../net/sf/smc/model/SmcTransition.html" title="class in net.sf.smc.model">SmcTransition</A></CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getTransition()">getTransition</A></B>()</CODE>
<BR>
Returns the transition to which this guard belongs.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> <A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html" title="enum in net.sf.smc.model">SmcElement.TransType</A></CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#getTransType()">getTransType</A></B>()</CODE>
<BR>
Returns the transition type.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> boolean</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#hasCtxtReference()">hasCtxtReference</A></B>()</CODE>
<BR>
Returns <code>true</code> if this guard references the
<code>ctxt</code> variable and <code>false</code> otherwise.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#setActions(java.util.List)">setActions</A></B>(java.util.List<<A HREF="../../../../net/sf/smc/model/SmcAction.html" title="class in net.sf.smc.model">SmcAction</A>> actions)</CODE>
<BR>
Sets the transition actions.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#setEndState(java.lang.String)">setEndState</A></B>(java.lang.String endState)</CODE>
<BR>
Sets the transition end state name.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#setPopArgs(java.lang.String)">setPopArgs</A></B>(java.lang.String args)</CODE>
<BR>
Set the pop transition arguments.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#setPushState(java.lang.String)">setPushState</A></B>(java.lang.String state)</CODE>
<BR>
Sets the push state name.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#setTransType(net.sf.smc.model.SmcElement.TransType)">setTransType</A></B>(<A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html" title="enum in net.sf.smc.model">SmcElement.TransType</A> transType)</CODE>
<BR>
Sets the transition type.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE> java.lang.String</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../net/sf/smc/model/SmcGuard.html#toString()">toString</A></B>()</CODE>
<BR>
Returns the transition guard text representation.</TD>
</TR>
</TABLE>
<A NAME="methods_inherited_from_class_net.sf.smc.model.SmcElement"><!-- --></A>
<TABLE BORDER="1" WIDTH="100%" CELLPADDING="3" CELLSPACING="0" SUMMARY="">
<TR BGCOLOR="#EEEEFF" CLASS="TableSubHeadingColor">
<TH ALIGN="left"><B>Methods inherited from class net.sf.smc.model.<A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">SmcElement</A></B></TH>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE><A HREF="../../../../net/sf/smc/model/SmcElement.html#getLineNumber()">getLineNumber</A>, <A HREF="../../../../net/sf/smc/model/SmcElement.html#getName()">getName</A>, <A HREF="../../../../net/sf/smc/model/SmcElement.html#merge(java.util.List, java.util.List, java.util.Comparator)">merge</A></CODE></TD>
</TR>
</TABLE>
<A NAME="methods_inherited_from_class_java.lang.Object"><!-- --></A>
<TABLE BORDER="1" WIDTH="100%" CELLPADDING="3" CELLSPACING="0" SUMMARY="">
<TR BGCOLOR="#EEEEFF" CLASS="TableSubHeadingColor">
<TH ALIGN="left"><B>Methods inherited from class java.lang.Object</B></TH>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE>clone, equals, finalize, getClass, hashCode, notify, notifyAll, wait, wait, wait</CODE></TD>
</TR>
</TABLE>
<P>
<!-- ========= CONSTRUCTOR DETAIL ======== -->
<A NAME="constructor_detail"><!-- --></A>
<TABLE BORDER="1" WIDTH="100%" CELLPADDING="3" CELLSPACING="0" SUMMARY="">
<TR BGCOLOR="#CCCCFF" CLASS="TableHeadingColor">
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<B>Constructor Detail</B></FONT></TH>
</TR>
</TABLE>
<A NAME="SmcGuard(java.lang.String, int, net.sf.smc.model.SmcTransition)"><!-- --></A><H3>
SmcGuard</H3>
<PRE>
public <B>SmcGuard</B>(java.lang.String cond,
int lineNumber,
<A HREF="../../../../net/sf/smc/model/SmcTransition.html" title="class in net.sf.smc.model">SmcTransition</A> transition)</PRE>
<DL>
<DD>Creates a guard instance for the given transition, line
number and condition.
<P>
<DL>
<DT><B>Parameters:</B><DD><CODE>cond</CODE> - transition guard condition.<DD><CODE>lineNumber</CODE> - where this guard appears in the .sm
file.<DD><CODE>transition</CODE> - guard belongs to this transition.</DL>
</DL>
<!-- ============ METHOD DETAIL ========== -->
<A NAME="method_detail"><!-- --></A>
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<B>Method Detail</B></FONT></TH>
</TR>
</TABLE>
<A NAME="accept(net.sf.smc.model.SmcVisitor)"><!-- --></A><H3>
accept</H3>
<PRE>
public void <B>accept</B>(<A HREF="../../../../net/sf/smc/model/SmcVisitor.html" title="class in net.sf.smc.model">SmcVisitor</A> visitor)</PRE>
<DL>
<DD>Calls the visitor's visit method for this finite state
machine element.
<P>
<DD><DL>
<DT><B>Specified by:</B><DD><CODE><A HREF="../../../../net/sf/smc/model/SmcElement.html#accept(net.sf.smc.model.SmcVisitor)">accept</A></CODE> in class <CODE><A HREF="../../../../net/sf/smc/model/SmcElement.html" title="class in net.sf.smc.model">SmcElement</A></CODE></DL>
</DD>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>visitor</CODE> - The visitor instance.<DT><B>See Also:</B><DD><A HREF="../../../../net/sf/smc/model/SmcVisitor.html" title="class in net.sf.smc.model"><CODE>SmcVisitor</CODE></A></DL>
</DD>
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getTransition</H3>
<PRE>
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<DL>
<DD>Returns the transition to which this guard belongs.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the transition to which this guard belongs.</DL>
</DD>
</DL>
<HR>
<A NAME="getCondition()"><!-- --></A><H3>
getCondition</H3>
<PRE>
public java.lang.String <B>getCondition</B>()</PRE>
<DL>
<DD>Returns the guard condition.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the guard condition.</DL>
</DD>
</DL>
<HR>
<A NAME="getTransType()"><!-- --></A><H3>
getTransType</H3>
<PRE>
public <A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html" title="enum in net.sf.smc.model">SmcElement.TransType</A> <B>getTransType</B>()</PRE>
<DL>
<DD>Returns the transition type.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the transition type.</DL>
</DD>
</DL>
<HR>
<A NAME="getEndState()"><!-- --></A><H3>
getEndState</H3>
<PRE>
public java.lang.String <B>getEndState</B>()</PRE>
<DL>
<DD>Returns the transition end state name.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the transition end state name.</DL>
</DD>
</DL>
<HR>
<A NAME="getPushState()"><!-- --></A><H3>
getPushState</H3>
<PRE>
public java.lang.String <B>getPushState</B>()</PRE>
<DL>
<DD>Returns the push state name. This is only valid if the
transition is a
<A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html#TRANS_PUSH"><CODE>push</CODE></A>
transition. This state become the current state after the
transition completes. It is <i>not</i> the state pushed on
to the state stack.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the push state name.</DL>
</DD>
</DL>
<HR>
<A NAME="getPopArgs()"><!-- --></A><H3>
getPopArgs</H3>
<PRE>
public java.lang.String <B>getPopArgs</B>()</PRE>
<DL>
<DD>Returns the pop transition arguments. This is only valid
if the transition type is a
<A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html#TRANS_POP"><CODE>pop</CODE></A>
transition.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the pop transition arguments.</DL>
</DD>
</DL>
<HR>
<A NAME="hasCtxtReference()"><!-- --></A><H3>
hasCtxtReference</H3>
<PRE>
public boolean <B>hasCtxtReference</B>()</PRE>
<DL>
<DD>Returns <code>true</code> if this guard references the
<code>ctxt</code> variable and <code>false</code> otherwise. The
<code>ctxt</code> variable plays a similar rote as <code>this</code>
or <code>self</code> in object-oriented programming languages.
<code>ctxt</code> is the first parameter for all transitions
and is a reference to the FSM context instance (even if
a transitions has no defined parameters it still has this
one).
<P>
<DD><DL>
<DT><B>Returns:</B><DD><code>true</code> if this guard references the
<code>ctxt</code> variable and <code>false</code> otherwise.</DL>
</DD>
</DL>
<HR>
<A NAME="getActions()"><!-- --></A><H3>
getActions</H3>
<PRE>
public java.util.List<<A HREF="../../../../net/sf/smc/model/SmcAction.html" title="class in net.sf.smc.model">SmcAction</A>> <B>getActions</B>()</PRE>
<DL>
<DD>Returns the transition action list.
<P>
<DD><DL>
<DT><B>Returns:</B><DD>the transition action list.</DL>
</DD>
</DL>
<HR>
<A NAME="setTransType(net.sf.smc.model.SmcElement.TransType)"><!-- --></A><H3>
setTransType</H3>
<PRE>
public void <B>setTransType</B>(<A HREF="../../../../net/sf/smc/model/SmcElement.TransType.html" title="enum in net.sf.smc.model">SmcElement.TransType</A> transType)</PRE>
<DL>
<DD>Sets the transition type.
<P>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>transType</CODE> - the transition type.</DL>
</DD>
</DL>
<HR>
<A NAME="setEndState(java.lang.String)"><!-- --></A><H3>
setEndState</H3>
<PRE>
public void <B>setEndState</B>(java.lang.String endState)</PRE>
<DL>
<DD>Sets the transition end state name.
<P>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>endState</CODE> - the end state name.</DL>
</DD>
</DL>
<HR>
<A NAME="setPushState(java.lang.String)"><!-- --></A><H3>
setPushState</H3>
<PRE>
public void <B>setPushState</B>(java.lang.String state)</PRE>
<DL>
<DD>Sets the push state name.
<P>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>state</CODE> - a state name.</DL>
</DD>
</DL>
<HR>
<A NAME="setPopArgs(java.lang.String)"><!-- --></A><H3>
setPopArgs</H3>
<PRE>
public void <B>setPopArgs</B>(java.lang.String args)</PRE>
<DL>
<DD>Set the pop transition arguments.
<P>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>args</CODE> - pop transition arguments.</DL>
</DD>
</DL>
<HR>
<A NAME="setActions(java.util.List)"><!-- --></A><H3>
setActions</H3>
<PRE>
public void <B>setActions</B>(java.util.List<<A HREF="../../../../net/sf/smc/model/SmcAction.html" title="class in net.sf.smc.model">SmcAction</A>> actions)</PRE>
<DL>
<DD>Sets the transition actions. May not be <code>null</code> but
may be empty.
<P>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>actions</CODE> - transition actions.</DL>
</DD>
</DL>
<HR>
<A NAME="toString()"><!-- --></A><H3>
toString</H3>
<PRE>
public java.lang.String <B>toString</B>()</PRE>
<DL>
<DD>Returns the transition guard text representation.
<P>
<DD><DL>
<DT><B>Overrides:</B><DD><CODE>toString</CODE> in class <CODE>java.lang.Object</CODE></DL>
</DD>
<DD><DL>
<DT><B>Returns:</B><DD>the transition guard text representation.</DL>
</DD>
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<h1 class="post-title p-name" itemprop="name headline">Encrypt a partition on Linux</h1>
<p class="post-meta">
<time class="dt-published" datetime="2015-12-05T00:00:00+00:00" itemprop="datePublished">Dec 5, 2015
</time></p>
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<p>An encrypted partition can add a layer of security to your system. When initialized, it will ask for the passphrase which, if unavailable, will not allow proper mounting. This renders the information on the drive as unreadable.</p>
<p>Most systems use the <a href="https://en.wikipedia.org/wiki/Linux_Unified_Key_Setup">Linux Unified Key Setup</a> (LUKS for short) format for encryption and this can be a standard install for most distribution.</p>
<h2 id="steps-for-setting-up-luks">Steps for setting up LUKS</h2>
<h3 id="setting-up-the-drive">Setting up the drive</h3>
<p>Firstly you should have a partition drive that is unmounted and unformatted (no filesystem). The filesystem will be added once encryption has been setup.</p>
<p>You must also have the <strong>cryptsetup</strong> tool install. On Ubuntu, this is achieved with:</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ sudo aptitude install cryptsetup
</code></pre></div></div>
<p><strong>sudo</strong> must be used for all of these commands.</p>
<p>To set up the drive for LUKS, enter this command:</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ sudo cryptsetup luksFormat /dev/drive
</code></pre></div></div>
<p>This drive can be a <a href="/sysadmin/2015/08/21/how-to-set-up-lvm-linux.html">Logical Volume Management drive</a>, or some other disk.</p>
<p>After this, you will need to enter “YES” (without quotes) to confirm that you want to encrypt the drive. Note that the response is all uppercase.</p>
<p>Then you will need to enter a passphrase which will be used to encrypt the drive.</p>
<p>You will need to open the drive with:</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ cryptsetup --verbose luksOpen /dev/drive/ SECRET_NAME
</code></pre></div></div>
<p>Replace SECRET_NAME with a name of your choice - this will be referred to later.</p>
<p>Formatting the drive is done as usual</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ sudo mkfs.ext4 /dev/mapper/SECRET_NAME
</code></pre></div></div>
<h3 id="opening-the-drive">Opening the drive</h3>
<p>Mounting the drive for use:</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ sudo mount /dev/mapper/SECRET_NAME /mnt/encrypted_disk
</code></pre></div></div>
<h3 id="closing-the-drive-once-finished">Closing the drive once finished</h3>
<p>You must <strong>luksClose</strong> the drive once you have finished writing to it.</p>
<div class="highlighter-rouge"><div class="highlight"><pre class="highlight"><code>$ sudo umount /mnt/encrypted_disk
$ sudo cryptsetup luksClose /dev/mapper/SECRET_NAME
</code></pre></div></div>
<p>This will write out all data and finish with it. To reuse you must start again at the step above with <strong>luksOpen</strong> command.</p>
<h3 id="conclusion">Conclusion</h3>
<p>This will encrypt and mount a drive on your machine which will stay safe if you don’t reveal the passphrase to anyone. You can auotmount this at boot, and either be prompted for the passphrase, or have the passphrase stored in a file. However, automatically decrypting and mounting on boot will be a waste of time, as anyone who has access to that machine will already have bypassed the encryption stage.</p>
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<a class="navbar-item" href="#第1部分-Java-反射机制介绍">1 <b>第1部分 Java 反射机制介绍</b></a>
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Java 反射机制(包括组成、结构、示例说明等内容)
</h1>
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<time datetime="2012-03-04T01:02:00.000Z" itemprop="datePublished">3月 4 2012</time>
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38 分钟 read (About 5660 words)
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<blockquote>
<p><strong>目录</strong><br><a href="#anchor1">第1部分 Java 反射机制介绍</a><br><a href="#anchor2">第2部分 Class 详细说明</a> </p>
</blockquote>
<p><a name="anchor1"></a></p>
<h1 id="第1部分-Java-反射机制介绍"><a href="#第1部分-Java-反射机制介绍" class="headerlink" title="第1部分 Java 反射机制介绍"></a>第1部分 Java 反射机制介绍</h1><p>Java 反射机制。<br>通俗来讲呢,就是在运行状态中,我们可以根据“类的部分已经的信息”来还原“类的全部的信息”。这里“类的部分已经的信息”,可以是“类名”或“类的对象”等信息。“类的全部信息”就是指“类的属性,方法,继承关系和Annotation注解”等内容。</p>
<p>举个简单的例子:假设对于类ReflectionTest.java,我们知道的唯一信息是它的类名是“com.skywang.Reflection”。这时,我们想要知道ReflectionTest.java的其它信息(比如它的构造函数,它的成员变量等等),要怎么办呢?</p>
<p>这就需要用到“反射”。通过反射,我们可以解析出ReflectionTest.java的完整信息,包括它的构造函数,成员变量,继承关系等等。</p>
<p>在了解了“java 反射机制”的概念之后,接下来思考一个问题:如何根据类的类名,来获取类的完整信息呢?</p>
<p>这个过程主要分为两步:<br>第1步:根据“类名”来获取对应类的Class对象。<br>第2步:通过Class对象的函数接口,来读取“类的构造函数,成员变量”等信息。</p>
<p>下面,我们根据示例来加深对这个概念的理解。示例如下(Demo1.java):</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
public class Demo1 {
public static void main(String[] args) {
try {
// 根据“类名”获取 对应的Class对象
Class<?> cls = Class.forName("com.skywang.test.Person");
// 新建对象。newInstance()会调用类不带参数的构造函数
Object obj = cls.newInstance();
System.out.println("cls="+cls);
} catch (Exception e) {
e.printStackTrace();
}
}
}
class Person {
public Person() {
System.out.println("create Person");
}
}</code></pre><p>运行结果:</p>
<pre><code>create Person
cls=class com.skywang.test.Person</code></pre><p>说明:<br>(01) Person类的完整包名是”com.skywang.test.Person”。而 Class.forName(“com.skywang.test.Person”); 这一句的作用是,就是根据Person的包名来获取Person的Class对象。<br>(02) 接着,我们调用Class对象的newInstance()方法,创建Person对象。</p>
<p>现在,我们知道了“java反射机制”的概念以及它的原理。有了这个总体思想之后,接下来,我们可以开始对反射进行深入研究了。</p>
<p><a name="anchor2"></a></p>
<h1 id="第2部分-Class-详细说明"><a href="#第2部分-Class-详细说明" class="headerlink" title="第2部分 Class 详细说明"></a>第2部分 Class 详细说明</h1><h2 id="1-获取Class对象的方法"><a href="#1-获取Class对象的方法" class="headerlink" title="1. 获取Class对象的方法"></a>1. 获取Class对象的方法</h2><p>我这里总结了4种常用的“获取Class对象”的方法:<br><strong>方法1</strong>:Class.forName(“类名字符串”) (注意:类名字符串必须是全称,包名+类名)<br><strong>方法2</strong>:类名.class<br><strong>方法3</strong>:实例对象.getClass()<br><strong>方法4</strong>:”类名字符串”.getClass()</p>
<p>下面,我们通过示例演示这4种方法。示例如下(Demo2.java):</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
public class Demo2 {
public static void main(String[] args) {
try {
// 方法1:Class.forName("类名字符串") (注意:类名字符串必须是全称,包名+类名)
//Class cls1 = Class.forName("com.skywang.test.Person");
Class<?> cls1 = Class.forName("com.skywang.test.Person");
//Class<Person> cls1 = Class.forName("com.skywang.test.Person");
// 方法2:类名.class
Class cls2 = Person.class;
// 方法3:实例对象.getClass()
Person person = new Person();
Class cls3 = person.getClass();
// 方法4:"类名字符串".getClass()
String str = "com.skywang.test.Person";
Class cls4 = str.getClass();
System.out.printf("cls1=%s, cls2=%s, cls3=%s, cls4=%s\n", cls1, cls2, cls3, cls4);
} catch (Exception e) {
e.printStackTrace();
}
}
}
class Person {
public Person() {
System.out.println("create Person");
}
}</code></pre><p>运行结果:</p>
<pre><code>create Person
cls1=class com.skywang.test.Person, cls2=class com.skywang.test.Person, cls3=class com.skywang.test.Person, cls4=class java.lang.String</code></pre><h2 id="2-Class的API说明"><a href="#2-Class的API说明" class="headerlink" title="2 Class的API说明"></a>2 Class的API说明</h2><p>Class的全部API如下表:</p>
<pre><code>public static Class forName(String className)
public static Class forName(String name, boolean initialize, ClassLoader loader)
public Constructor getConstructor(Class[] parameterTypes)
public Constructor[] getConstructors()
public Constructor getDeclaredConstructor(Class[] parameterTypes)
public Constructor[] getDeclaredConstructors()
public Constructor getEnclosingConstructor()
public Method getMethod(String name, Class[] parameterTypes)
public Method[] getMethods()
public Method getDeclaredMethod(String name, Class[] parameterTypes)
public Method[] getDeclaredMethods()
public Method getEnclosingMethod()
public Field getField(String name)
public Field[] getFields()
public Field getDeclaredField(String name)
public Field[] getDeclaredFields()
public Type[] getGenericInterfaces()
public Type getGenericSuperclass()
public Annotation<A> getAnnotation(Class annotationClass)
public Annotation[] getAnnotations()
public Annotation[] getDeclaredAnnotations()
public boolean isAnnotation()
public boolean isAnnotationPresent(Class annotationClass)
public boolean isAnonymousClass()
public boolean isArray()
public boolean isAssignableFrom(Class cls)
public boolean desiredAssertionStatus()
public Class<U> asSubclass(Class clazz)
public Class getSuperclass()
public Class getComponentType()
public Class getDeclaringClass()
public Class getEnclosingClass()
public Class[] getClasses()
public Class[] getDeclaredClasses()
public Class[] getInterfaces()
public boolean isEnum()
public boolean isInstance(Object obj)
public boolean isInterface()
public boolean isLocalClass()
public boolean isMemberClass()
public boolean isPrimitive()
public boolean isSynthetic()
public String getSimpleName()
public String getName()
public String getCanonicalName()
public String toString()
public ClassLoader getClassLoader()
public Package getPackage()
public int getModifiers()
public ProtectionDomain getProtectionDomain()
public URL getResource(String name)
public InputStream getResourceAsStream(String name)
public Object cast(Object obj)
public Object newInstance()
public Object[] getSigners()
public Object[] getEnumConstants()
public TypeVariable[] getTypeParameters()</code></pre><p>我们根据类的特性,将Class中的类分为4部分进行说明:构造函数,成员方法,成员变量,类的其它信息(如注解、包名、类名、继承关系等等)。Class中涉及到Annotation(注解)的相关API,可以点击查看前一章节关于Annotation的详细介绍。</p>
<h3 id="2-1-构造函数"><a href="#2-1-构造函数" class="headerlink" title="2.1 构造函数"></a>2.1 构造函数</h3><p>“构造函数”相关API</p>
<pre><code>// 获取“参数是parameterTypes”的public的构造函数
public Constructor getConstructor(Class[] parameterTypes)
// 获取全部的public的构造函数
public Constructor[] getConstructors()
// 获取“参数是parameterTypes”的,并且是类自身声明的构造函数,包含public、protected和private方法。
public Constructor getDeclaredConstructor(Class[] parameterTypes)
// 获取类自身声明的全部的构造函数,包含public、protected和private方法。
public Constructor[] getDeclaredConstructors()
// 如果这个类是“其它类的构造函数中的内部类”,调用getEnclosingConstructor()就是这个类所在的构造函数;若不存在,返回null。
public Constructor getEnclosingConstructor()</code></pre><p>接下来,我们通过示例对这些API进行说明。示例代码(DemoClassContructor.java)如下:</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
import java.lang.reflect.Constructor;
/**
* java Class类的Constructor相关API的测试函数
*
* @author skywang
*/
public class DemoClassContructor {
public static void main(String[] args) {
// getDeclaredConstructor() 的测试函数
testGetDeclaredConstructor() ;
// getConstructor() 的测试函数
testGetConstructor() ;
// getEnclosingConstructor() 的测试函数
testGetEnclosingConstructor() ;
}
/**
* getDeclaredConstructor() 的测试函数
*/
public static void testGetDeclaredConstructor() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,获取构造函数
Constructor cst1 = cls.getDeclaredConstructor();
Constructor cst2 = cls.getDeclaredConstructor(new Class[]{String.class});
Constructor cst3 = cls.getDeclaredConstructor(new Class[]{String.class, int.class, Gender.class});
// 根据构造函数,创建相应的对象
cst1.setAccessible(true); // 因为Person中Person()是private的,所以这里要设置为可访问
Object p1 = cst1.newInstance();
Object p2 = cst2.newInstance("Juce");
Object p3 = cst3.newInstance("Jody", 34, Gender.MALE);
System.out.printf("%-30s: p1=%s, p2=%s, p3=%s\n",
"getConstructor()", p1, p2, p3);
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* getConstructor() 的测试函数
*/
public static void testGetConstructor() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,获取构造函数
//Constructor cst1 = cls.getConstructor(); // 抛出异常,因为默认构造函数是private权限。
//Constructor cst2 = cls.getConstructor(new Class[]{String.class});// 抛出异常,因为该构造函数是protected权限。
Constructor cst3 = cls.getConstructor(new Class[]{String.class, int.class, Gender.class});
// 根据构造函数,创建相应的对象
//Object p1 = cst1.newInstance();
//cst1.setAccessible(true); // 因为Person中Person()是private的,所以这里要设置为可访问
//Object p1 = cst1.newInstance();
//Object p2 = cst2.newInstance("Kim");
Object p3 = cst3.newInstance("Katter", 36, Gender.MALE);
System.out.printf("%-30s: p3=%s\n",
"getConstructor()", p3);
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* getEnclosingConstructor() 的测试函数
*/
public static void testGetEnclosingConstructor() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用Person类中有内部类InnerA的构造函数
Constructor cst = cls.getDeclaredConstructor(new Class[]{String.class, int.class});
// 根据构造函数,创建相应的对象
Object obj = cst.newInstance("Ammy", 18);
System.out.printf("%-30s: obj=%s\n",
"getEnclosingConstructor()", obj);
} catch (Exception e) {
e.printStackTrace();
}
}
}
// 枚举类型。表示“性别”
enum Gender{
MALE, FEMALE
}
// 人
class Person {
private Gender gender; // 性别
private int age; // 年龄
private String name; // 姓名
private Person() {
this.name = "unknown";
this.age = 0;
this.gender = Gender.FEMALE;
System.out.println("call--\"private Person()\"");
}
protected Person(String name) {
this.name = name;
this.age = 0;
this.gender = Gender.FEMALE;
System.out.println("call--\"protected Person(String name)\"");
}
public Person(String name, int age, Gender gender) {
this.name = name;
this.age = age;
this.gender = gender;
System.out.println("call--\"public Person(String name, int age, Gender gender)\"");
}
public Person(String name, int age) {
this.name = name;
this.age = age;
this.gender = Gender.FEMALE;
//内部类在构造方法中
class InnerA{
}
// 获取InnerA的Class对象
Class cls = InnerA.class;
// 获取“封闭该内部类(InnerA)”的构造方法
Constructor cst = cls.getEnclosingConstructor();
System.out.println("call--\"public Person(String name, int age)\" cst="+cst);
}
@Override
public String toString() {
return "("+name+", "+age+", "+gender+")";
}
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>call--"private Person()"
call--"protected Person(String name)"
call--"public Person(String name, int age, Gender gender)"
getConstructor() : p1=(unknown, 0, FEMALE), p2=(Juce, 0, FEMALE), p3=(Jody, 34, MALE)
call--"public Person(String name, int age, Gender gender)"
getConstructor() : p3=(Katter, 36, MALE)
call--"public Person(String name, int age)" cst=public com.skywang.test.Person(java.lang.String,int)
getEnclosingConstructor() : obj=(Ammy, 18, FEMALE)</code></pre><p>说明:<br>(01) 首先,要搞清楚Person类,它是我们自定义的类。专门用来测试这些API的。Person中有一个成员变量gender;它是Gender对象,Gender是一个枚举类。取值可以是MALE或者FEMALE。</p>
<p>(02) testGetDeclaredConstructor() 是“getDeclaredConstructor() 的测试函数”。getDeclaredConstructor()可以“获取类中任意的构造函数,包含public、protected和private方法”。</p>
<p>(03) testGetConstructor() 是“getConstructor() 的测试函数”。getConstructor()只能“获取类中public的构造函数”。</p>
<p>(04) testGetEnclosingConstructor() 是“getEnclosingConstructor() 的测试函数”。<br>关于getEnclosingConstructor()的介绍,官方说法是“如果该 Class 对象表示构造方法中的一个本地或匿名类,则返回 Constructor 对象,它表示底层类的立即封闭构造方法。否则返回 null。” 通俗点来说,就是<strong><em>“如果一个类A的构造函数中定义了一个内部类InnerA,则通过InnerA的Class对象调用getEnclosingConstructor()方法,可以获取类A的这个构造函数”。</em></strong></p>
<h3 id="2-2-成员方法"><a href="#2-2-成员方法" class="headerlink" title="2.2 成员方法"></a>2.2 成员方法</h3><p> “成员方法”相关API</p>
<pre><code>// 获取“名称是name,参数是parameterTypes”的public的函数(包括从基类继承的、从接口实现的所有public函数)
public Method getMethod(String name, Class[] parameterTypes)
// 获取全部的public的函数(包括从基类继承的、从接口实现的所有public函数)
public Method[] getMethods()
// 获取“名称是name,参数是parameterTypes”,并且是类自身声明的函数,包含public、protected和private方法。
public Method getDeclaredMethod(String name, Class[] parameterTypes)
// 获取全部的类自身声明的函数,包含public、protected和private方法。
public Method[] getDeclaredMethods()
// 如果这个类是“其它类中某个方法的内部类”,调用getEnclosingMethod()就是这个类所在的方法;若不存在,返回null。
public Method getEnclosingMethod()</code></pre><p>接下来,我们通过示例对这些API进行说明。示例代码(DemoClassMethod.java)如下:</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
import java.lang.reflect.Method;
/**
* java Class类的Method相关API的测试函数
*
* @author skywang
*/
public class DemoClassMethod {
public static void main(String[] args) {
// getDeclaredMethod() 的测试函数
testGetDeclaredMethod() ;
// getMethod() 的测试函数
testGetMethod() ;
// getEnclosingMethod() 的测试函数
testGetEnclosingMethod() ;
}
/**
* getDeclaredMethod() 的测试函数
*/
public static void testGetDeclaredMethod() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用类的默认构造函数(不带参数)
Object person = cls.newInstance();
// 获取Person中的方法
Method mSetName = cls.getDeclaredMethod("setName", new Class[]{String.class});
Method mGetName = cls.getDeclaredMethod("getName", new Class[]{});
Method mSetAge = cls.getDeclaredMethod("setAge", new Class[]{int.class});
Method mGetAge = cls.getDeclaredMethod("getAge", new Class[]{});
Method mSetGender = cls.getDeclaredMethod("setGender", new Class[]{Gender.class});
Method mGetGender = cls.getDeclaredMethod("getGender", new Class[]{});
// 调用获取的方法
mSetName.invoke(person, new Object[]{"Jimmy"});
mSetAge.invoke(person, new Object[]{30});
mSetGender.setAccessible(true); // 因为Person中setGender()是private的,所以这里要设置为可访问
mSetGender.invoke(person, new Object[]{Gender.MALE});
String name = (String)mGetName.invoke(person, new Object[]{});
Integer age = (Integer)mGetAge.invoke(person, new Object[]{});
mGetGender.setAccessible(true); // 因为Person中getGender()是private的,所以这里要设置为可访问
Gender gender = (Gender)mGetGender.invoke(person, new Object[]{});
// 打印输出
System.out.printf("%-30s: person=%s, name=%s, age=%s, gender=%s\n",
"getDeclaredMethod()", person, name, age, gender);
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* getMethod() 的测试函数
*/
public static void testGetMethod() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用类的默认构造函数(不带参数)
Object person = cls.newInstance();
// 获取Person中的方法
Method mSetName = cls.getMethod("setName", new Class[]{String.class});
Method mGetName = cls.getMethod("getName", new Class[]{});
//Method mSetAge = cls.getMethod("setAge", new Class[]{int.class}); // 抛出异常,因为setAge()是protected权限。
//Method mGetAge = cls.getMethod("getAge", new Class[]{}); // 抛出异常,因为getAge()是protected权限。
//Method mSetGender = cls.getMethod("setGender", new Class[]{Gender.class}); // 抛出异常,因为setGender()是private权限。
//Method mGetGender = cls.getMethod("getGender", new Class[]{}); // 抛出异常,因为getGender()是private权限。
// 调用获取的方法
mSetName.invoke(person, new Object[]{"Phobe"});
//mSetAge.invoke(person, new Object[]{38});
//mSetGender.invoke(person, new Object[]{Gender.FEMALE});
String name = (String)mGetName.invoke(person, new Object[]{});
//Integer age = (Integer)mGetAge.invoke(person, new Object[]{});
//Gender gender = (Gender)mGetGender.invoke(person, new Object[]{});
// 打印输出
System.out.printf("%-30s: person=%s\n",
"getMethod()", person);
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* getEnclosingMethod() 的测试函数
*/
public static void testGetEnclosingMethod() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用类的默认构造函数(不带参数)
Object person = cls.newInstance();
// 根据class,调用Person类中有内部类InnerB的函数
Method mGetInner = cls.getDeclaredMethod("getInner", new Class[]{});
// 根据构造函数,创建相应的对象
mGetInner.invoke(person, new Object[]{});
System.out.printf("%-30s: person=%s\n",
"getEnclosingMethod", person);
} catch (Exception e) {
e.printStackTrace();
}
}
}
enum Gender{
MALE, FEMALE
}
class Person {
private Gender gender; // 性别
private int age; // 年龄
private String name; // 姓名
public Person() {
this("unknown", 0, Gender.FEMALE);
}
public Person(String name, int age, Gender gender) {
this.name = name;
this.age = age;
this.gender = gender;
}
// 获取”姓名“。权限是 public
public String getName() {
return name;
}
// 设置”姓名“。权限是 public
public void setName(String name) {
this.name = name;
}
// 获取”年龄“。权限是 protected
protected int getAge() {
return age;
}
// 设置”年龄“。权限是 protected
protected void setAge(int age) {
this.age = age;
}
// 获取“性别”。权限是 private
private Gender getGender() {
return gender;
}
// 设置“性别”。权限是 private
private void setGender(Gender gender) {
this.gender = gender;
}
// getInner() 中有内部类InnerB,用来测试getEnclosingMethod()
public void getInner() {
// 内部类
class InnerB{
}
// 获取InnerB的Class对象
Class cls = InnerB.class;
// 获取“封闭该内部类(InnerB)”的构造方法
Method cst = cls.getEnclosingMethod();
System.out.println("call--\"getInner()\" cst="+cst);
}
@Override
public String toString() {
return "("+name+", "+age+", "+gender+")";
}
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>getDeclaredMethod() : person=(Jimmy, 30, MALE), name=Jimmy, age=30, gender=MALE
getMethod() : person=(Phobe, 0, FEMALE)
call--"getInner()" cst=public void com.skywang.test.Person.getInner()
getEnclosingMethod : person=(unknown, 0, FEMALE)</code></pre><h3 id="2-3-成员变量"><a href="#2-3-成员变量" class="headerlink" title="2.3 成员变量"></a>2.3 成员变量</h3><p>“成员变量”的相关API</p>
<pre><code>// 获取“名称是name”的public的成员变量(包括从基类继承的、从接口实现的所有public成员变量)
public Field getField(String name)
// 获取全部的public成员变量(包括从基类继承的、从接口实现的所有public成员变量)
public Field[] getFields()
// 获取“名称是name”,并且是类自身声明的成员变量,包含public、protected和private成员变量。
public Field getDeclaredField(String name)
// 获取全部的类自身声明的成员变量,包含public、protected和private成员变量。
public Field[] getDeclaredFields()</code></pre><p>接下来,我们通过示例对这些API进行说明。示例代码(DemoClassField.java)如下:</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
import java.lang.reflect.Field;
/**
* java Class类的"成员变量"相关API的测试函数
*
* @author skywang
*/
public class DemoClassField {
public static void main(String[] args) {
// getDeclaredField() 的测试函数
testGetDeclaredField() ;
// getField() 的测试函数
testGetField() ;
}
/**
* getDeclaredField() 的测试函数
* getDeclaredField() 用于获取的是类自身声明的所有成员遍历,包含public、protected和private方法。
*/
public static void testGetDeclaredField() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用类的默认构造函数(不带参数)
Object person = cls.newInstance();
// 根据class,获取Filed
Field fName = cls.getDeclaredField("name");
Field fAge = cls.getDeclaredField("age");
Field fGender = cls.getDeclaredField("gender");
// 根据构造函数,创建相应的对象
fName.set(person, "Hamier");
fAge.set(person, 31);
fGender.setAccessible(true); // 因为"flag"是private权限,所以要设置访问权限为true;否则,会抛出异常。
fGender.set(person, Gender.FEMALE);
System.out.printf("%-30s: person=%s\n",
"getDeclaredField()", person);
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* getField() 的测试函数
* getField() 用于获取的是public的“成员”
*/
public static void testGetField() {
try {
// 获取Person类的Class
Class<?> cls = Class.forName("com.skywang.test.Person");
// 根据class,调用类的默认构造函数(不带参数)
Object person = cls.newInstance();
// 根据class,获取Filed
Field fName = cls.getField("name");
Field fAge = cls.getDeclaredField("age"); // 抛出异常,因为Person中age是protected权限。
Field fGender = cls.getDeclaredField("gender"); // 抛出异常,因为Person中gender是private权限。
// 根据构造函数,创建相应的对象
fName.set(person, "Grace");
//fAge.set(person, 26);
//fGender.set(person, Gender.FEMALE);
System.out.printf("%-30s: person=%s\n",
"getField()", person);
} catch (Exception e) {
e.printStackTrace();
}
}
}
// 枚举类型。表示“性别”
enum Gender{
MALE, FEMALE
}
// 人
class Person {
// private。性别
private Gender gender;
// protected。 年龄
protected int age;
// public。 姓名
public String name;
public Person() {
this("unknown", 0, Gender.FEMALE);
}
public Person(String name, int age, Gender gender) {
this.name = name;
this.age = age;
this.gender = gender;
}
@Override
public String toString() {
return "("+name+", "+age+", "+gender+")";
}
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>getDeclaredField() : person=(Hamier, 31, FEMALE)
getField() : person=(Grace, 0, FEMALE)</code></pre><h3 id="2-4-类的其它信息"><a href="#2-4-类的其它信息" class="headerlink" title="2.4 类的其它信息"></a>2.4 类的其它信息</h3><p><strong>2.4.1 “注解”相关的API</strong></p>
<pre><code>// 获取类的"annotationClass"类型的注解 (包括从基类继承的、从接口实现的所有public成员变量)
public Annotation<A> getAnnotation(Class annotationClass)
// 获取类的全部注解 (包括从基类继承的、从接口实现的所有public成员变量)
public Annotation[] getAnnotations()
// 获取类自身声明的全部注解 (包含public、protected和private成员变量)
public Annotation[] getDeclaredAnnotations()</code></pre><p>接下来,我们通过示例对这些API进行说明。示例代码(DemoClassAnnotation.java)如下:</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
import java.lang.annotation.Retention;
import java.lang.annotation.RetentionPolicy;
/**
* java Class类getAnnotation()的测试程序
*/
public class DemoClassAnnotation {
public static void main(String[] args) {
try {
// 根据“类名”获取 对应的Class对象
Class<?> cls = Class.forName("com.skywang.test.Person");
// 获取“Person类”的注解
MyAnnotation myann = cls.getAnnotation(MyAnnotation.class);
System.out.println("myann="+myann);
} catch (Exception e) {
e.printStackTrace();
}
}
}
/**
* MyAnnotation是自定义个一个Annotation
*/
@Retention(RetentionPolicy.RUNTIME)
@interface MyAnnotation {
}
/**
* MyAnnotation 是Person的注解。
*/
@MyAnnotation
class Person {
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>myann=@com.skywang.test.MyAnnotation()</code></pre><p>说明:<br>(01) MyAnnotation 是我们自定义个一个Annotation注解。若读者不明白“注解”,可以参考博文“<a href="/2012/03/03/annotation">Java Annotation认知(包括框架图、详细介绍、示例说明)</a>”<br>(02) getAnnotation()就是获取这个类的注解。</p>
<p><strong>2.4.2 “父类”和“接口”相关的API</strong></p>
<pre><code>// 获取实现的全部接口
public Type[] getGenericInterfaces()
// 获取父类
public Type getGenericSuperclass()</code></pre><p>示例代码(DemoClassInterface.java)如下:</p>
<pre><code>package com.skywang.test;
import java.io.Serializable;
import java.lang.Runnable;
import java.lang.Thread;
import java.lang.Class;
import java.lang.reflect.Type;
/**
* java Class类的有关父类和接口的测试
*/
public class DemoClassInterface {
public static void main(String[] args) {
try {
// 根据“类名”获取 对应的Class对象
Class<?> cls = Class.forName("com.skywang.test.Person");
// 获取“Person”的父类
Type father = cls.getGenericSuperclass();
// 获取“Person”实现的全部接口
Type[] intfs = cls.getGenericInterfaces();
System.out.println("father="+father);
for (Type t:intfs)
System.out.println("t="+t);
} catch (Exception e) {
e.printStackTrace();
}
}
}
/**
* Person 继承于 Object,并且实现了Serializable和Runnable接口
*/
class Person extends Object implements Serializable, Runnable{
@Override
public void run() {
}
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>father=class java.lang.Object
t=interface java.io.Serializable
t=interface java.lang.Runnable</code></pre><p><strong>2.4.3 剩余的API</strong></p>
<pre><code>// 获取“类名”
public String getSimpleName()
// 获取“完整类名”
public String getName()
// 类是不是“枚举类”
public boolean isEnum()
// obj是不是类的对象
public boolean isInstance(Object obj)
// 类是不是“接口”
public boolean isInterface()
// 类是不是“本地类”。本地类,就是定义在方法内部的类。
public boolean isLocalClass()
// 类是不是“成员类”。成员类,是内部类的一种,但是它不是“内部类”或“匿名类”。
public boolean isMemberClass()
// 类是不是“基本类型”。 基本类型,包括void和boolean、byte、char、short、int、long、float 和 double这几种类型。
public boolean isPrimitive()
// 类是不是“复合类”。 JVM中才会产生复合类,在java应用程序中不存在“复合类”!
public boolean isSynthetic()</code></pre><p>示例代码(DemoClassOtherAPIs.java)如下:</p>
<pre><code>package com.skywang.test;
import java.lang.Class;
import java.lang.Runnable;
import java.lang.annotation.ElementType;
import java.util.TreeMap;
/**
* java Class类的getName(), isInterface()等测试程序
*
* @author skywang
*/
public class DemoClassOtherAPIs {
public static void main(String[] args) {
Class cls = DemoClassOtherAPIs.class;
// 获取“类名”
System.out.printf("%-50s:getSimpleName()=%s\n", cls, cls.getSimpleName());
// 获取“完整类名”
System.out.printf("%-50s:getName()=%s\n", cls, cls.getName());
// 测试其它的API
testOtherAPIs() ;
}
public static void testOtherAPIs() {
// 本地类
class LocalA {
}
// 测试枚举类型。ElementType是一个枚举类
Class elementtypeCls = ElementType.class;
System.out.printf("%-50s:isEnum()=%s\n",
elementtypeCls, elementtypeCls.isEnum());
// 判断是不是类的对象
Class demoCls = DemoClassOtherAPIs.class;
DemoClassOtherAPIs demoObj = new DemoClassOtherAPIs();
System.out.printf("%-50s:isInstance(obj)=%s\n",
demoCls, demoCls.isInstance(demoObj));
// 类是不是“接口”
Class runCls = Runnable.class;
System.out.printf("%-50s:isInterface()=%s\n",
runCls, runCls.isInterface());
// 类是不是“本地类”。本地类,就是定义在方法内部的类。
Class localCls = LocalA.class;
System.out.printf("%-50s:isLocalClass()=%s\n",
localCls, localCls.isLocalClass());
// 类是不是“成员类”。成员类,是内部类的一种,但是它不是“内部类”或“匿名类”。
Class memCls = MemberB.class;
System.out.printf("%-50s:isMemberClass()=%s\n",
memCls, memCls.isMemberClass());
// 类是不是“基本类型”。 基本类型,包括void和boolean、byte、char、short、int、long、float 和 double这几种类型。
Class primCls = int.class;
System.out.printf("%-50s:isPrimitive()=%s\n",
primCls, primCls.isPrimitive());
// 类是不是“复合类”。 JVM中才会产生复合类,在java应用程序中不存在“复合类”!
Class synCls = DemoClassOtherAPIs.class;
System.out.printf("%-50s:isSynthetic()=%s\n",
synCls, synCls.isSynthetic());
}
// 内部成员类
class MemberB {
}
}</code></pre><p>注意:若程序无法运行,请检查“forName()”中的包名是否正确!forName()的参数必须是,Person类的完整包名。</p>
<p>运行结果:</p>
<pre><code>class com.skywang.test.DemoClassOtherAPIs :getSimpleName()=DemoClassOtherAPIs
class com.skywang.test.DemoClassOtherAPIs :getName()=com.skywang.test.DemoClassOtherAPIs
class java.lang.annotation.ElementType :isEnum()=true
class com.skywang.test.DemoClassOtherAPIs :isInstance(obj)=true
interface java.lang.Runnable :isInterface()=true
class com.skywang.test.DemoClassOtherAPIs$1LocalA :isLocalClass()=true
class com.skywang.test.DemoClassOtherAPIs$MemberB :isMemberClass()=true
int :isPrimitive()=true
class com.skywang.test.DemoClassOtherAPIs :isSynthetic()=false</code></pre><p>说明:isSynthetic()是用来判断Class是不是“复合类”。这在java应用程序中只会返回false,不会返回true。因为,JVM中才会产生复合类,在java应用程序中不存在“复合类”!</p>
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</style></head><body><div class="content"><h1>Polynomial discrimination</h1><pre class="codeinput"><span class="comment">% Section 8.6.2, Boyd & Vandenberghe "Convex Optimization"</span>
<span class="comment">% Original by Lieven Vandenberghe</span>
<span class="comment">% Adapted for CVX by Joelle Skaf - 10/23/05</span>
<span class="comment">% (a figure is generated)</span>
<span class="comment">%</span>
<span class="comment">% The goal is to find the polynomial of degree 4 on R^n that separates</span>
<span class="comment">% two sets of points {x_1,...,x_N} and {y_1,...,y_N}. We are trying to find</span>
<span class="comment">% the coefficients of an order-4-polynomial P(x) that would satisfy:</span>
<span class="comment">% minimize t</span>
<span class="comment">% s.t. P(x_i) <= t for i = 1,...,N</span>
<span class="comment">% P(y_i) >= t for i = 1,...,M</span>
<span class="comment">% Data generation</span>
rand(<span class="string">'state'</span>,0);
N = 100;
M = 120;
<span class="comment">% The points X lie within a circle of radius 0.9, with a wedge of points</span>
<span class="comment">% near [1.1,0] removed. The points Y lie outside a circle of radius 1.1,</span>
<span class="comment">% with a wedge of points near [1.1,0] added. The wedges are precisely what</span>
<span class="comment">% makes the separation difficult and interesting.</span>
X = 2 * rand(2,N) - 1;
X = X * diag(0.9*rand(1,N)./sqrt(sum(X.^2)));
Y = 2 * rand(2,M) - 1;
Y = Y * diag((1.1+rand(1,M))./sqrt(sum(Y.^2)));
d = sqrt(sum((X-[1.1;0]*ones(1,N)).^2));
Y = [ Y, X(:,d<0.9) ];
X = X(:,d>1);
N = size(X,2);
M = size(Y,2);
<span class="comment">% Construct Vandermonde-style monomial matrices</span>
p1 = [0,0,1,0,1,2,0,1,2,3,0,1,2,3,4]';
p2 = [0,1,1,2,2,2,3,3,3,3,4,4,4,4,4]'-p1;
np = length(p1);
op = ones(np,1);
monX = X(op,:) .^ p1(:,ones(1,N)) .* X(2*op,:) .^ p2(:,ones(1,N));
monY = Y(op,:) .^ p1(:,ones(1,M)) .* Y(2*op,:) .^ p2(:,ones(1,M));
<span class="comment">% Solution via CVX</span>
fprintf(1,<span class="string">'Finding the optimal polynomial of order 4 that separates the 2 classes...'</span>);
cvx_begin
variables <span class="string">a(np)</span> <span class="string">t(1)</span>
minimize ( t )
a'*monX <= t;
a'*monY >= -t;
<span class="comment">% For normalization purposes only</span>
norm(a) <= 1;
cvx_end
fprintf(1,<span class="string">'Done! \n'</span>);
<span class="comment">% Displaying results</span>
nopts = 2000;
angles = linspace(0,2*pi,nopts);
cont = zeros(2,nopts);
<span class="keyword">for</span> i=1:nopts
v = [cos(angles(i)); sin(angles(i))];
l = 0; u = 1;
<span class="keyword">while</span> ( u - l > 1e-3 )
s = (u+l)/2;
x = s * v;
<span class="keyword">if</span> a' * ( x(op,:) .^ p1 .* x(2*op) .^ p2 ) > 0,
u = s;
<span class="keyword">else</span>
l = s;
<span class="keyword">end</span>
<span class="keyword">end</span>;
s = (u+l)/2;
cont(:,i) = s*v;
<span class="keyword">end</span>;
graph = plot(X(1,:),X(2,:),<span class="string">'o'</span>, Y(1,:), Y(2,:),<span class="string">'o'</span>, cont(1,:), cont(2,:), <span class="string">'-'</span>);
set(graph(2),<span class="string">'MarkerFaceColor'</span>,[0 0.5 0]);
title(<span class="string">'Optimal order-4 polynomial that separates the 2 classes'</span>)
<span class="comment">% print -deps min-deg-discr.eps</span>
<span class="comment">%%%% Dual infeasible ?????</span>
</pre><pre class="codeoutput">Finding the optimal polynomial of order 4 that separates the 2 classes...
Calling sedumi: 227 variables, 16 equality constraints
For improved efficiency, sedumi is solving the dual problem.
------------------------------------------------------------
SeDuMi 1.21 by AdvOL, 2005-2008 and Jos F. Sturm, 1998-2003.
Alg = 2: xz-corrector, Adaptive Step-Differentiation, theta = 0.250, beta = 0.500
eqs m = 16, order n = 214, dim = 228, blocks = 2
nnz(A) = 3391 + 0, nnz(ADA) = 256, nnz(L) = 136
it : b*y gap delta rate t/tP* t/tD* feas cg cg prec
0 : 5.63E+02 0.000
1 : -6.06E-01 1.89E+02 0.000 0.3357 0.9000 0.9000 2.52 1 1 1.1E+02
2 : -1.71E-01 1.20E+02 0.000 0.6328 0.9000 0.9000 5.15 1 1 2.1E+01
3 : -2.99E-02 6.92E+01 0.000 0.5787 0.9000 0.9000 4.77 1 1 5.3E+00
4 : -1.28E-02 2.82E+01 0.000 0.4080 0.9000 0.9000 1.58 1 1 1.9E+00
5 : -6.88E-03 1.29E+01 0.000 0.4568 0.9000 0.9000 0.78 1 1 1.1E+00
6 : -1.75E-03 4.02E+00 0.000 0.3114 0.9000 0.9000 0.04 1 1 1.1E+00
7 : 7.71E-03 2.70E+00 0.000 0.6730 0.9000 0.9000 -0.38 1 1 7.2E-01
8 : 2.35E-02 1.70E+00 0.000 0.6271 0.9000 0.9000 0.62 1 1 4.5E-01
9 : 3.33E-02 9.54E-01 0.000 0.5629 0.9000 0.9000 0.61 1 1 2.8E-01
10 : 3.56E-02 3.00E-01 0.000 0.3143 0.9000 0.9000 0.75 1 1 9.7E-02
11 : 3.80E-02 1.42E-01 0.000 0.4736 0.9000 0.9000 0.67 1 1 5.3E-02
12 : 3.92E-02 7.55E-02 0.000 0.5318 0.9000 0.9000 0.68 1 1 3.1E-02
13 : 4.01E-02 4.32E-02 0.000 0.5719 0.9000 0.9000 0.61 1 1 2.1E-02
14 : 4.05E-02 2.08E-02 0.000 0.4813 0.9000 0.9000 0.73 1 1 1.0E-02
15 : 4.08E-02 1.01E-02 0.000 0.4849 0.9000 0.9000 0.70 1 1 5.7E-03
16 : 4.09E-02 2.22E-03 0.000 0.2200 0.9000 0.9000 0.91 1 1 1.3E-03
17 : 4.10E-02 1.76E-04 0.000 0.0795 0.9900 0.9900 0.95 1 1 1.0E-04
18 : 4.10E-02 4.65E-06 0.000 0.0263 0.9900 0.9901 1.00 1 1 2.5E-06
19 : 4.10E-02 9.10E-07 0.000 0.1959 0.9035 0.9000 1.00 1 1 5.2E-07
20 : 4.10E-02 1.09E-07 0.000 0.1199 0.9109 0.9000 1.00 1 1 8.1E-08
21 : 4.10E-02 2.01E-08 0.000 0.1839 0.9101 0.9000 1.00 2 2 1.8E-08
22 : 4.10E-02 5.18E-09 0.047 0.2582 0.9180 0.9000 1.00 2 2 5.9E-09
iter seconds digits c*x b*y
22 0.1 8.2 4.0993225471e-02 4.0993225182e-02
|Ax-b| = 4.7e-09, [Ay-c]_+ = 0.0E+00, |x|= 5.6e-01, |y|= 1.0e+00
Detailed timing (sec)
Pre IPM Post
1.000E-02 9.000E-02 0.000E+00
Max-norms: ||b||=1, ||c|| = 1,
Cholesky |add|=0, |skip| = 0, ||L.L|| = 34961.4.
------------------------------------------------------------
Status: Solved
Optimal value (cvx_optval): -0.0409932
Done!
</pre><img vspace="5" hspace="5" src="poly4_discr__01.png" alt=""> <p class="footer"><br>
Published with MATLAB® 7.9<br></p></div><!--
##### SOURCE BEGIN #####
%% Polynomial discrimination
% Section 8.6.2, Boyd & Vandenberghe "Convex Optimization"
% Original by Lieven Vandenberghe
% Adapted for CVX by Joelle Skaf - 10/23/05
% (a figure is generated)
%
% The goal is to find the polynomial of degree 4 on R^n that separates
% two sets of points {x_1,...,x_N} and {y_1,...,y_N}. We are trying to find
% the coefficients of an order-4-polynomial P(x) that would satisfy:
% minimize t
% s.t. P(x_i) <= t for i = 1,...,N
% P(y_i) >= t for i = 1,...,M
% Data generation
rand('state',0);
N = 100;
M = 120;
% The points X lie within a circle of radius 0.9, with a wedge of points
% near [1.1,0] removed. The points Y lie outside a circle of radius 1.1,
% with a wedge of points near [1.1,0] added. The wedges are precisely what
% makes the separation difficult and interesting.
X = 2 * rand(2,N) - 1;
X = X * diag(0.9*rand(1,N)./sqrt(sum(X.^2)));
Y = 2 * rand(2,M) - 1;
Y = Y * diag((1.1+rand(1,M))./sqrt(sum(Y.^2)));
d = sqrt(sum((X-[1.1;0]*ones(1,N)).^2));
Y = [ Y, X(:,d<0.9) ];
X = X(:,d>1);
N = size(X,2);
M = size(Y,2);
% Construct Vandermonde-style monomial matrices
p1 = [0,0,1,0,1,2,0,1,2,3,0,1,2,3,4]';
p2 = [0,1,1,2,2,2,3,3,3,3,4,4,4,4,4]'-p1;
np = length(p1);
op = ones(np,1);
monX = X(op,:) .^ p1(:,ones(1,N)) .* X(2*op,:) .^ p2(:,ones(1,N));
monY = Y(op,:) .^ p1(:,ones(1,M)) .* Y(2*op,:) .^ p2(:,ones(1,M));
% Solution via CVX
fprintf(1,'Finding the optimal polynomial of order 4 that separates the 2 classes...');
cvx_begin
variables a(np) t(1)
minimize ( t )
a'*monX <= t;
a'*monY >= -t;
% For normalization purposes only
norm(a) <= 1;
cvx_end
fprintf(1,'Done! \n');
% Displaying results
nopts = 2000;
angles = linspace(0,2*pi,nopts);
cont = zeros(2,nopts);
for i=1:nopts
v = [cos(angles(i)); sin(angles(i))];
l = 0; u = 1;
while ( u - l > 1e-3 )
s = (u+l)/2;
x = s * v;
if a' * ( x(op,:) .^ p1 .* x(2*op) .^ p2 ) > 0,
u = s;
else
l = s;
end
end;
s = (u+l)/2;
cont(:,i) = s*v;
end;
graph = plot(X(1,:),X(2,:),'o', Y(1,:), Y(2,:),'o', cont(1,:), cont(2,:), '-');
set(graph(2),'MarkerFaceColor',[0 0.5 0]);
title('Optimal order-4 polynomial that separates the 2 classes')
% print -deps min-deg-discr.eps
%%%% Dual infeasible ?????
##### SOURCE END #####
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<td>朱立倫<br>王如玄</td>
<td>男<br>女</td>
<td class="tdAlignRight">1,754</td>
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<td> </td>
<td>1</td>
<td>朱立倫<br>王如玄</td>
<td>男<br>女</td>
<td class="tdAlignRight">3,189</td>
<td class="tdAlignRight">41.9164</td>
<td>中國國民黨 推薦</td>
</tr>
<tr class="trT">
<td> </td>
<td>2</td>
<td>蔡英文<br>陳建仁</td>
<td>女<br>男</td>
<td class="tdAlignRight">3,110</td>
<td class="tdAlignRight">40.8780</td>
<td>民主進步黨 推薦</td>
</tr>
<tr class="trT">
<td> </td>
<td>3</td>
<td>宋楚瑜<br>徐欣瑩</td>
<td>男<br>女</td>
<td class="tdAlignRight">1,309</td>
<td class="tdAlignRight">17.2056</td>
<td>親民黨 推薦</td>
</tr>
<tr class="trFooterT">
<td colspan="7" align="right">投開票所數 已送/應送: 15/15 </td>
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<td align="center">?</td>
<td>同票待抽籤</td>
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<td valign="top" class="fontTimer"><img src="../images/clock2.png" alt="Sat, 16 Jan 2016 20:00:12 +0800" title="Sat, 16 Jan 2016 20:00:12 +0800"> 資料更新時間: 01/16 20:00:06 <br>(網頁每3分鐘自動更新一次)</td>
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<h1 class="entry-title">Comparative Phylogenetics Notebook (from Oww)</h1>
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<h2 id="wednesday">Wednesday</h2>
<h3 id="monte-carlo">Monte Carlo</h3>
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<li>Reading Sanderson’s nonparametric rate smoothing and semi-parametric r8s papers in Monte Carlo with Rannala. Comments on articles in text, but great discussion today, particularly Bruce’s take on this style of approach.</li>
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<ol style="list-style-type: decimal">
<li>Sanderson, M.J. Estimating absolute rates of molecular evolution and divergence times: a penalized likelihood approach. Molecular biology and evolution 19, 101-9(2002).</li>
<li>Sanderson, M.J. A Nonparametric Approach of Rate Constancy to Estimating Divergence Times in the Absence. Molecular Biology and Evolution 14, 1218-1231(1997).</li>
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<p><br /> ### Hastings lab presentation</p>
<p>Presented chalk talk on the Warning Signals project (see stochastic population dynamics notebook).</p>
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<p>Mendeley upgrade for Ubuntu up, still need to explore groups and reconsider organization of my lists…</p>
<h3 id="writing-lr-continues">Writing LR continues</h3>
<p>see version history.</p>
<h3 id="r-list-discussion-continued">R list discussion continued</h3>
<p>Good question about the applicability of lambda transforms to discrete models (though included in Geiger examples). Interpretation isn’t trivial, but neither can it be dismissed as simply incorrect to do. Here’s my take:</p>
<p>Good question. Lambda is often taken as a measure of phylogenetic signal. It’s just a tree transform, so it’s just a matter of trying to explain what it means to say a discrete model would fit better if you rescaled the tree like so. In the BM case, you would argue that lambda << 1 might mean something rather non-brownian is going on, making things forget their ancestry faster. In this case, it seems Lara is assuming an equal rates model, which means that an unbalanced fraction of taxa in a particular trait value can only be explained by phylogeny; not by the stationary solution of some model. A good fit with small lambda would indicate that the phylogeny was not being helpful in explaining this imbalance (imagine an 80/20 split in a binary trait arranged in the least parsimonious manner possible – this would prefer a small lambda and a hint that ecological forces are playing a more important role than phylogenetic inertia).</p>
<p>If the rates can call differ, small lambda (an unimportant influence of phylogeny) may be confounding with higher transition rates, such that the system can forget its ancestry quickly and reach the stationary distribution. In such cases estimating the tree transforms such as lambda will have identifiability issues – perhaps that plays a role in Lara’s convergence error messages.</p>
<p>In general if the model is fitting better with the tree transform then without it, this can be taken as an indication that the model itself isn’t a good description of the data. I think that’s as true in the land of continuous traits and BM as it is in discrete traits, regardless of how that particular transform is defined or motivated. Perhaps others would comment on this perspective.</p>
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<p>Interested in contributing to Hacker? We’d love your help. Hacker is an open source project, built one contribution at a time by users like you. See <a href="/CONTRIBUTING.md">the CONTRIBUTING file</a> for instructions on how to contribute.</p>
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<h3 id="running-tests">Running tests</h3>
<p>The theme contains a minimal test suite, to ensure a site with the theme would build successfully. To run the tests, simply run <code class="highlighter-rouge">script/cibuild</code>. You’ll need to run <code class="highlighter-rouge">script/bootstrap</code> one before the test script will work.</p>
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<table width="100%" border="0" cellpadding="6" cellspacing="1" class="tableT">
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<td>註記</td>
<td>號次</td>
<td>姓名</td>
<td>性別</td>
<td>得票數</td>
<td>得票率%</td>
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<td>1</td>
<td>杜文卿</td>
<td>男</td>
<td class="tdAlignRight">47,837</td>
<td class="tdAlignRight">35.8614</td>
<td>民主進步黨</td>
</tr>
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<td> </td>
<td>2</td>
<td>康世儒</td>
<td>男</td>
<td class="tdAlignRight">23,134</td>
<td class="tdAlignRight">17.3426</td>
<td>民國黨</td>
</tr>
<tr class="trT">
<td> </td>
<td>3</td>
<td>黃玉燕</td>
<td>女</td>
<td class="tdAlignRight">3,074</td>
<td class="tdAlignRight">2.3045</td>
<td>無</td>
</tr>
<tr class="trT">
<td> </td>
<td>4</td>
<td>陳超明</td>
<td>男</td>
<td class="tdAlignRight">56,373</td>
<td class="tdAlignRight">42.2605</td>
<td>中國國民黨</td>
</tr>
<tr class="trT">
<td> </td>
<td>5</td>
<td>林一方</td>
<td>男</td>
<td class="tdAlignRight">2,976</td>
<td class="tdAlignRight">2.2310</td>
<td>自由台灣黨</td>
</tr>
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<td colspan="7" align="right">投開票所數 已送/應送: 223/223 </td>
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<td align="center">◎</td>
<td>當選註記</td>
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<tr>
<td></td>
<td align="center">?</td>
<td>同票待抽籤</td>
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<td valign="top" class="fontTimer"><img src="../images/clock2.png" alt="Sat, 16 Jan 2016 19:42:12 +0800" title="Sat, 16 Jan 2016 19:42:12 +0800"> 資料更新時間:01/16 19:42:06 <br>(網頁每3分鐘自動更新一次)</td>
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<td class="fontNumber"> <img src="../images/nav.gif" alt="候選組數" title="候選組數"> <img src="../images/nav.gif" alt="候選組數" title="候選組數"> 候選組數:3 <img src="../images/nav.gif" alt="應選組數" title="應選組數"> <img src="../images/nav.gif" alt="應選組數" title="應選組數"> 應選組數:1</td>
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<td>得票率%</td>
<td>登記方式</td>
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<td>1</td>
<td>朱立倫<br>王如玄</td>
<td>男<br>女</td>
<td class="tdAlignRight">18,804</td>
<td class="tdAlignRight">23.0883</td>
<td>中國國民黨 推薦</td>
</tr>
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<td> </td>
<td>2</td>
<td>蔡英文<br>陳建仁</td>
<td>女<br>男</td>
<td class="tdAlignRight">54,262</td>
<td class="tdAlignRight">66.6249</td>
<td>民主進步黨 推薦</td>
</tr>
<tr class="trT">
<td> </td>
<td>3</td>
<td>宋楚瑜<br>徐欣瑩</td>
<td>男<br>女</td>
<td class="tdAlignRight">8,378</td>
<td class="tdAlignRight">10.2868</td>
<td>親民黨 推薦</td>
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<td colspan="7" align="right">投開票所數 已送/應送: 84/85 </td>
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<td align="center">◎</td>
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<div class="book"
data-level="3.1"
data-chapter-title="Dolphin右鍵選單"
data-filepath="content/integration/dolphin.md"
data-basepath="../.."
data-revision="Sat Feb 06 2016 01:29:45 GMT+0800 (CST)"
data-innerlanguage="">
<div class="book-summary">
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<li class="chapter " data-level="0" data-path="index.html">
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Introduction
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</li>
<li class="chapter " data-level="1" data-path="content/reference/index.html">
<a href="../../content/reference/index.html">
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<b>1.</b>
參考資料
</a>
</li>
<li class="chapter " data-level="2" data-path="content/start/index.html">
<a href="../../content/start/index.html">
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<b>2.</b>
入門
</a>
<ul class="articles">
<li class="chapter " data-level="2.1" data-path="content/start/install.html">
<a href="../../content/start/install.html">
<i class="fa fa-check"></i>
<b>2.1.</b>
下載安裝
</a>
</li>
<li class="chapter " data-level="2.2" data-path="content/start/cmd-atom.html">
<a href="../../content/start/cmd-atom.html">
<i class="fa fa-check"></i>
<b>2.2.</b>
atom指令的使用
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="3" data-path="content/integration/index.html">
<a href="../../content/integration/index.html">
<i class="fa fa-check"></i>
<b>3.</b>
整合
</a>
<ul class="articles">
<li class="chapter active" data-level="3.1" data-path="content/integration/dolphin.html">
<a href="../../content/integration/dolphin.html">
<i class="fa fa-check"></i>
<b>3.1.</b>
Dolphin右鍵選單
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="4" data-path="content/howto/index.html">
<a href="../../content/howto/index.html">
<i class="fa fa-check"></i>
<b>4.</b>
Howto
</a>
<ul class="articles">
<li class="chapter " data-level="4.1" data-path="content/howto/font.html">
<a href="../../content/howto/font.html">
<i class="fa fa-check"></i>
<b>4.1.</b>
設定中文字型
</a>
<ul class="articles">
<li class="chapter " data-level="4.1.1" data-path="content/howto/font-markdown-preview.html">
<a href="../../content/howto/font-markdown-preview.html">
<i class="fa fa-check"></i>
<b>4.1.1.</b>
如何設定「Mardown Preview」的中文字型
</a>
</li>
<li class="chapter " data-level="4.1.2" data-path="content/howto/font-atom-workspace.html">
<a href="../../content/howto/font-atom-workspace.html">
<i class="fa fa-check"></i>
<b>4.1.2.</b>
如何設定「Atom Workspace」的中文字型
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="4.2" data-path="content/howto/tongwen.html">
<a href="../../content/howto/tongwen.html">
<i class="fa fa-check"></i>
<b>4.2.</b>
繁簡轉換
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="5" data-path="content/cmd/index.html">
<a href="../../content/cmd/index.html">
<i class="fa fa-check"></i>
<b>5.</b>
指令
</a>
<ul class="articles">
<li class="chapter " data-level="5.1" data-path="content/start/cmd-apm.html">
<a href="../../content/start/cmd-apm.html">
<i class="fa fa-check"></i>
<b>5.1.</b>
apm指令的使用
</a>
<ul class="articles">
<li class="chapter " data-level="5.1.1" data-path="content/cmd/cmd-apm-list.html">
<a href="../../content/cmd/cmd-apm-list.html">
<i class="fa fa-check"></i>
<b>5.1.1.</b>
apm list
</a>
<ul class="articles">
<li class="chapter " data-level="5.1.1.1" data-path="content/cmd/cmd-apm-list-packages.html">
<a href="../../content/cmd/cmd-apm-list-packages.html">
<i class="fa fa-check"></i>
<b>5.1.1.1.</b>
apm list --packages
</a>
</li>
<li class="chapter " data-level="5.1.1.2" data-path="content/cmd/cmd-apm-list-themes.html">
<a href="../../content/cmd/cmd-apm-list-themes.html">
<i class="fa fa-check"></i>
<b>5.1.1.2.</b>
apm list --themes
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="5.1.2" data-path="content/cmd/cmd-apm-init.html">
<a href="../../content/cmd/cmd-apm-init.html">
<i class="fa fa-check"></i>
<b>5.1.2.</b>
apm init
</a>
<ul class="articles">
<li class="chapter " data-level="5.1.2.1" data-path="content/cmd/cmd-apm-init-package.html">
<a href="../../content/cmd/cmd-apm-init-package.html">
<i class="fa fa-check"></i>
<b>5.1.2.1.</b>
apm init --package
</a>
</li>
</ul>
</li>
<li class="chapter " data-level="5.1.3" data-path="content/cmd/cmd-apm-link.html">
<a href="../../content/cmd/cmd-apm-link.html">
<i class="fa fa-check"></i>
<b>5.1.3.</b>
apm link
</a>
</li>
<li class="chapter " data-level="5.1.4" data-path="content/cmd/cmd-apm-links.html">
<a href="../../content/cmd/cmd-apm-links.html">
<i class="fa fa-check"></i>
<b>5.1.4.</b>
apm links
</a>
</li>
<li class="chapter " data-level="5.1.5" data-path="content/cmd/cmd-apm-unlink.html">
<a href="../../content/cmd/cmd-apm-unlink.html">
<i class="fa fa-check"></i>
<b>5.1.5.</b>
apm unlink
</a>
</li>
</ul>
</li>
</ul>
</li>
<li class="divider"></li>
<li>
<a href="https://www.gitbook.com" target="blank" class="gitbook-link">
Published with GitBook
</a>
</li>
</ul>
</nav>
</div>
<div class="book-body">
<div class="body-inner">
<div class="book-header" role="navigation">
<!-- Actions Left -->
<!-- Title -->
<h1>
<i class="fa fa-circle-o-notch fa-spin"></i>
<a href="../../" >Atom Editor 使用筆記</a>
</h1>
</div>
<div class="page-wrapper" tabindex="-1" role="main">
<div class="page-inner">
<section class="normal" id="section-">
<h1 id="dolphin-右鍵選單">Dolphin 右鍵選單</h1>
<h2 id="產生資料夾「kdesharekde4servicesservicemenus」">產生資料夾「~/.kde/share/kde4/services/ServiceMenus/」</h2>
<p>執行</p>
<pre><code>$ mkdir ~/.kde/share/kde4/services/ServiceMenus/ -p
</code></pre><h2 id="切換資料夾「kdesharekde4servicesservicemenus」">切換資料夾「~/.kde/share/kde4/services/ServiceMenus/」</h2>
<p>執行</p>
<pre><code>$ cd ~/.kde/share/kde4/services/ServiceMenus/
</code></pre><h2 id="建立檔案「kdesharekde4servicesservicemenusatomdesktop」">建立檔案「~/.kde/share/kde4/services/ServiceMenus/atom.desktop」</h2>
<p>執行</p>
<pre><code>$ vi atom.desktop
</code></pre><p>填入下面的「<a href="../../resource/integration/atom.desktop">內容</a>」。</p>
<pre><code class="lang-ini"><span class="hljs-title">[Desktop Entry]</span>
<span class="hljs-setting">Type=<span class="hljs-value">Service</span></span>
<span class="hljs-setting">ServiceTypes=<span class="hljs-value">KonqPopupMenu/Plugin</span></span>
<span class="hljs-setting">MimeType=<span class="hljs-value">all/all;</span></span>
<span class="hljs-setting">Actions=<span class="hljs-value">OpenWithAtom;</span></span>
<span class="hljs-setting">X-KDE-Priority=<span class="hljs-value">TopLevel</span></span>
<span class="hljs-title">
[Desktop Action OpenWithAtom]</span>
<span class="hljs-setting">Name=<span class="hljs-value">Open with Atom</span></span>
<span class="hljs-setting">Icon=<span class="hljs-value">atom</span></span>
<span class="hljs-setting">Exec=<span class="hljs-value">atom %F</span></span>
</code></pre>
<h2 id="寫成「shell-script」">寫成「Shell Script」</h2>
<p>上面的步驟可以簡單的寫成下面的「<a href="../../resource/integration/atom-install.sh">Shell Script</a>」。</p>
<pre><code class="lang-sh"><span class="hljs-shebang">#!/bin/sh
</span>
Service_Dir=~/.kde/share/kde4/services/ServiceMenus/
mkdir <span class="hljs-variable">$Service_Dir</span> -p
<span class="hljs-built_in">cd</span> <span class="hljs-variable">$Service_Dir</span>
wget -c https://foreachsam.github.io/book-editor-atom/book/resource/integration/atom.desktop
</code></pre>
<h2 id="簡化步驟">簡化步驟</h2>
<p>所以只要執行下面這行指令,就可以完成上面的所有步驟了。</p>
<pre><code class="lang-sh">$ wget -qO- https://foreachsam.github.io/book-editor-atom/book/resource/integration/atom-install.sh | sh
</code></pre>
<p>或是</p>
<pre><code>$ curl -o- https://foreachsam.github.io/book-editor-atom/book/resource/integration/atom-install.sh | sh
</code></pre><p>以上參考「<a href="https://github.com/creationix/nvm#install-script" target="_blank">nvm</a>」的安裝指令。</p>
<p>或是</p>
<pre><code class="lang-sh">$ curl <span class="hljs-operator">-s</span>S https://foreachsam.github.io/book-editor-atom/book/resource/integration/atom-install.sh | sh
</code></pre>
<p>以上參考「<a href="https://getcomposer.org/download/" target="_blank">composer</a>」的安裝指令。</p>
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<h3><a id="add-something" class="anchor" href="#hardware-networking-basics" aria-hidden="true"><span class="octicon octicon-link"></span></a>Network Basics</h3>
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To navigate back to homepage --- <a href="http://ashumeow.github.io/ashumeow/" class="anchor"><span>Click here</span></a>
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<a href="#top">Scroll to top</a>
<a href="https://github.com/ashumeow/ashumeow.me/tarball/master" class="tar">tar</a><a href="https://github.com/ashumeow/ashumeow.me/zipball/master" class="zip">zip</a><a href="" class="code">source code</a>
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<p><a href="https://github.com/ashumeow" class="avatar"><img src="https://avatars3.githubusercontent.com/u/5597047?v=3&s=60" width="48" height="48"></a>
<a href="https://github.com/ashumeow">ashumeow</a> maintains <a href="https://github.com/ashumeow/ashumeow.me">this website</a>.</p>
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| ashumeow/ashumeow | network_basics.html | HTML | cc0-1.0 | 2,328 |
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<h2 title="Class ViewRisksReidentificationRisks" class="title">Class ViewRisksReidentificationRisks</h2>
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<pre>public class <span class="strong">ViewRisksReidentificationRisks</span>
extends java.lang.Object</pre>
<div class="block">Generates the RiskMonitor</div>
<dl><dt><span class="strong">Since:</span></dt>
<dd>1.7</dd>
<dt><span class="strong">Version:</span></dt>
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<dt><span class="strong">Author:</span></dt>
<dd>Florian Wiedner</dd></dl>
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<td class="colOne"><code><strong><a href="../../../../../org/deidentifier/arx/kettle/risk/ViewRisksReidentificationRisks.html#ViewRisksReidentificationRisks(org.eclipse.swt.widgets.Composite,%20DataHandle,%20ARXPopulationModel)">ViewRisksReidentificationRisks</a></strong>(org.eclipse.swt.widgets.Composite parent,
DataHandle result,
ARXPopulationModel population)</code>
<div class="block">The Constructor for the Output</div>
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<td class="colOne"><code><strong><a href="../../../../../org/deidentifier/arx/kettle/risk/ViewRisksReidentificationRisks.html#ViewRisksReidentificationRisks(org.eclipse.swt.widgets.Composite,%20DataHandle,%20ARXPopulationModel,%20org.deidentifier.arx.kettle.risk.LayoutRisks)">ViewRisksReidentificationRisks</a></strong>(org.eclipse.swt.widgets.Composite parent,
DataHandle result,
ARXPopulationModel population,
<a href="../../../../../org/deidentifier/arx/kettle/risk/LayoutRisks.html" title="class in org.deidentifier.arx.kettle.risk">LayoutRisks</a> risk)</code>
<div class="block">The Constructor for the Input</div>
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<td class="colFirst"><code>void</code></td>
<td class="colLast"><code><strong><a href="../../../../../org/deidentifier/arx/kettle/risk/ViewRisksReidentificationRisks.html#handleThresholdUpdateInMonitors(double,%20double,%20double)">handleThresholdUpdateInMonitors</a></strong>(double recordsAtRisk,
double highestRisk,
double successRat)</code>
<div class="block">The Update of the Monitors</div>
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<pre>public ViewRisksReidentificationRisks(org.eclipse.swt.widgets.Composite parent,
DataHandle result,
ARXPopulationModel population)</pre>
<div class="block">The Constructor for the Output</div>
<dl><dt><span class="strong">Parameters:</span></dt><dd><code>parent</code> - The Parent Composite</dd><dd><code>result</code> - The DataHandle</dd><dd><code>population</code> - The Population</dd></dl>
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<pre>public ViewRisksReidentificationRisks(org.eclipse.swt.widgets.Composite parent,
DataHandle result,
ARXPopulationModel population,
<a href="../../../../../org/deidentifier/arx/kettle/risk/LayoutRisks.html" title="class in org.deidentifier.arx.kettle.risk">LayoutRisks</a> risk)</pre>
<div class="block">The Constructor for the Input</div>
<dl><dt><span class="strong">Parameters:</span></dt><dd><code>parent</code> - The Parent Composite</dd><dd><code>result</code> - The DataHandle</dd><dd><code>population</code> - The Population Model</dd><dd><code>risk</code> - The Risk Layout Parent</dd></dl>
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<pre>public void handleThresholdUpdateInMonitors(double recordsAtRisk,
double highestRisk,
double successRat)</pre>
<div class="block">The Update of the Monitors</div>
<dl><dt><span class="strong">Parameters:</span></dt><dd><code>recordsAtRisk</code> - The Records at Risk</dd><dd><code>highestRisk</code> - The Highest Risk Threshold</dd><dd><code>successRat</code> - The Success Rat Threshold</dd></dl>
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| WiednerF/ARXPlugin | doc/org/deidentifier/arx/kettle/risk/ViewRisksReidentificationRisks.html | HTML | apache-2.0 | 12,204 |
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<pre>
இங்கு நீங்கள் புதிய மேலும் குறிப்பான (specific) கேள்விகளை சேர்க்கலாம்.
புதிய கேள்வியையும், அதற்குரிய internal id ஐயும் சேர்ப்பீர்கள். கேள்விக்கான பதிலையும் உள்ளீடுசெய்வீர்கள்.
எடுத்துக்காட்டாக, ஒரிடத்தில் "என்ன மொழி?" என்னும் கேள்வியையும்
அதற்குரிய விடையாகவிருக்கவியலும் அனைத்து வாய்ப்புகளையும் கொடுக்கவேண்டுமானால், கீழ்க்கண்டவாறு கொடுக்கவேண்டும்.
கேள்வி
<b> என்ன மொழி? </b>
internal id? (should be specified in english alphabet.
This should be unique across multiple new questions at the same level) (lang or mozhi, or m or l etc)
<b>lang</b>
கேள்வி வகை (4 வகைகளில் ஒருவகை. )
<b>புதிய பதில்கள் தேவைப்படும் கேள்வி </b>
பதில்கள் (please leave space after comma.)
<b>t=தமிழ், e=ஆங்கிலம், m=மலையாளம் </b> ...
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</div> | velsubra/Tamil | web-app/src/main/webapp/add_new_question.html | HTML | apache-2.0 | 6,594 |
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<span id="extending-index"></span><h1>Extending and Embedding the Python Interpreter<a class="headerlink" href="#extending-and-embedding-the-python-interpreter" title="Permalink to this headline">¶</a></h1>
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<tr class="field"><th class="field-name">Date:</th><td class="field-body">April 11, 2012</td>
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<p>This document describes how to write modules in C or C++ to extend the Python
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operating system supports this feature.</p>
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the existing object types, functions and modules (both built-in and written in
Python) that give the language its wide application range.</p>
<p>For a detailed description of the whole Python/C API, see the separate
<a class="reference internal" href="../c-api/index.html#c-api-index"><em>Python/C API Reference Manual</em></a>.</p>
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<pre>public interface <span class="typeNameLabel">Play2LessCompiler</span></pre>
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<td class="colFirst"><code><a href="../../../../../../com/google/code/play2/provider/api/LessCompilationResult.html" title="interface in com.google.code.play2.provider.api">LessCompilationResult</a></code></td>
<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../../com/google/code/play2/provider/api/Play2LessCompiler.html#compile-java.io.File-">compile</a></span>(<a href="http://docs.oracle.com/javase/1.6.0/docs/api/java/io/File.html?is-external=true" title="class or interface in java.io">File</a> source)</code> </td>
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<td class="colFirst"><code>void</code></td>
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<pre>void setCompilerOptions(<a href="http://docs.oracle.com/javase/1.6.0/docs/api/java/util/List.html?is-external=true" title="class or interface in java.util">List</a><<a href="http://docs.oracle.com/javase/1.6.0/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a>> compilerOptions)</pre>
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<li class="blockList"><a name="org.apache.poi.hssf.usermodel">
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</a>
<h3>Uses of <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> in <a href="../../../../../../org/apache/poi/hssf/usermodel/package-summary.html">org.apache.poi.hssf.usermodel</a></h3>
<table border="0" cellpadding="3" cellspacing="0" summary="Use table, listing classes, and an explanation">
<caption><span>Classes in <a href="../../../../../../org/apache/poi/hssf/usermodel/package-summary.html">org.apache.poi.hssf.usermodel</a> that implement <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Class and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>class </code></td>
<td class="colLast"><code><strong><a href="../../../../../../org/apache/poi/hssf/usermodel/HSSFEvaluationWorkbook.html" title="class in org.apache.poi.hssf.usermodel">HSSFEvaluationWorkbook</a></strong></code>
<div class="block">Internal POI use only</div>
</td>
</tr>
</tbody>
</table>
</li>
<li class="blockList"><a name="org.apache.poi.ss.formula">
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</a>
<h3>Uses of <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> in <a href="../../../../../../org/apache/poi/ss/formula/package-summary.html">org.apache.poi.ss.formula</a></h3>
<table border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../../org/apache/poi/ss/formula/package-summary.html">org.apache.poi.ss.formula</a> with parameters of type <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>static <a href="../../../../../../org/apache/poi/ss/formula/ptg/Ptg.html" title="class in org.apache.poi.ss.formula.ptg">Ptg</a>[]</code></td>
<td class="colLast"><span class="strong">FormulaParser.</span><code><strong><a href="../../../../../../org/apache/poi/ss/formula/FormulaParser.html#parse(java.lang.String, org.apache.poi.ss.formula.FormulaParsingWorkbook, org.apache.poi.ss.formula.FormulaType, int)">parse</a></strong>(java.lang.String formula,
<a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> workbook,
<a href="../../../../../../org/apache/poi/ss/formula/FormulaType.html" title="enum in org.apache.poi.ss.formula">FormulaType</a> formulaType,
int sheetIndex)</code>
<div class="block">Parse a formula into an array of tokens
Side effect: creates name (<a href="../../../../../../org/apache/poi/ss/usermodel/Workbook.html#createName()"><code>Workbook.createName()</code></a>)
if formula contains unrecognized names (names are likely UDFs)</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>static <a href="../../../../../../org/apache/poi/ss/formula/ptg/Ptg.html" title="class in org.apache.poi.ss.formula.ptg">Ptg</a>[]</code></td>
<td class="colLast"><span class="strong">FormulaParser.</span><code><strong><a href="../../../../../../org/apache/poi/ss/formula/FormulaParser.html#parse(java.lang.String, org.apache.poi.ss.formula.FormulaParsingWorkbook, org.apache.poi.ss.formula.FormulaType, int, int)">parse</a></strong>(java.lang.String formula,
<a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> workbook,
<a href="../../../../../../org/apache/poi/ss/formula/FormulaType.html" title="enum in org.apache.poi.ss.formula">FormulaType</a> formulaType,
int sheetIndex,
int rowIndex)</code>
<div class="block">Parse a formula into an array of tokens
Side effect: creates name (<a href="../../../../../../org/apache/poi/ss/usermodel/Workbook.html#createName()"><code>Workbook.createName()</code></a>)
if formula contains unrecognized names (names are likely UDFs)</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>static <a href="../../../../../../org/apache/poi/ss/formula/ptg/Area3DPxg.html" title="class in org.apache.poi.ss.formula.ptg">Area3DPxg</a></code></td>
<td class="colLast"><span class="strong">FormulaParser.</span><code><strong><a href="../../../../../../org/apache/poi/ss/formula/FormulaParser.html#parseStructuredReference(java.lang.String, org.apache.poi.ss.formula.FormulaParsingWorkbook, int)">parseStructuredReference</a></strong>(java.lang.String tableText,
<a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> workbook,
int rowIndex)</code>
<div class="block">Parse a structured reference.</div>
</td>
</tr>
</tbody>
</table>
</li>
<li class="blockList"><a name="org.apache.poi.xssf.streaming">
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</a>
<h3>Uses of <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> in <a href="../../../../../../org/apache/poi/xssf/streaming/package-summary.html">org.apache.poi.xssf.streaming</a></h3>
<table border="0" cellpadding="3" cellspacing="0" summary="Use table, listing classes, and an explanation">
<caption><span>Classes in <a href="../../../../../../org/apache/poi/xssf/streaming/package-summary.html">org.apache.poi.xssf.streaming</a> that implement <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Class and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>class </code></td>
<td class="colLast"><code><strong><a href="../../../../../../org/apache/poi/xssf/streaming/SXSSFEvaluationWorkbook.html" title="class in org.apache.poi.xssf.streaming">SXSSFEvaluationWorkbook</a></strong></code>
<div class="block">SXSSF wrapper around the SXSSF and XSSF workbooks</div>
</td>
</tr>
</tbody>
</table>
</li>
<li class="blockList"><a name="org.apache.poi.xssf.usermodel">
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</a>
<h3>Uses of <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a> in <a href="../../../../../../org/apache/poi/xssf/usermodel/package-summary.html">org.apache.poi.xssf.usermodel</a></h3>
<table border="0" cellpadding="3" cellspacing="0" summary="Use table, listing classes, and an explanation">
<caption><span>Classes in <a href="../../../../../../org/apache/poi/xssf/usermodel/package-summary.html">org.apache.poi.xssf.usermodel</a> that implement <a href="../../../../../../org/apache/poi/ss/formula/FormulaParsingWorkbook.html" title="interface in org.apache.poi.ss.formula">FormulaParsingWorkbook</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Class and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>class </code></td>
<td class="colLast"><code><strong><a href="../../../../../../org/apache/poi/xssf/usermodel/BaseXSSFEvaluationWorkbook.html" title="class in org.apache.poi.xssf.usermodel">BaseXSSFEvaluationWorkbook</a></strong></code>
<div class="block">Internal POI use only - parent of XSSF and SXSSF evaluation workbooks</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>class </code></td>
<td class="colLast"><code><strong><a href="../../../../../../org/apache/poi/xssf/usermodel/XSSFEvaluationWorkbook.html" title="class in org.apache.poi.xssf.usermodel">XSSFEvaluationWorkbook</a></strong></code>
<div class="block">Internal POI use only</div>
</td>
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<title>Uses of Class org.apache.cassandra.thrift.CASResult (apache-cassandra API)</title>
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<h2 title="Uses of Class org.apache.cassandra.thrift.CASResult" class="title">Uses of Class<br>org.apache.cassandra.thrift.CASResult</h2>
</div>
<div class="classUseContainer">
<ul class="blockList">
<li class="blockList">
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing packages, and an explanation">
<caption><span>Packages that use <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Package</th>
<th class="colLast" scope="col">Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><a href="#org.apache.cassandra.thrift">org.apache.cassandra.thrift</a></td>
<td class="colLast"> </td>
</tr>
</tbody>
</table>
</li>
<li class="blockList">
<ul class="blockList">
<li class="blockList"><a name="org.apache.cassandra.thrift">
<!-- -->
</a>
<h3>Uses of <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a> in <a href="../../../../../org/apache/cassandra/thrift/package-summary.html">org.apache.cassandra.thrift</a></h3>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing fields, and an explanation">
<caption><span>Fields in <a href="../../../../../org/apache/cassandra/thrift/package-summary.html">org.apache.cassandra.thrift</a> declared as <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Field and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.cas_result.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.cas_result.html#success">success</a></span></code> </td>
</tr>
</tbody>
</table>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../org/apache/cassandra/thrift/package-summary.html">org.apache.cassandra.thrift</a> that return <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">CassandraServer.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CassandraServer.html#cas-java.nio.ByteBuffer-java.lang.String-java.util.List-java.util.List-org.apache.cassandra.thrift.ConsistencyLevel-org.apache.cassandra.thrift.ConsistencyLevel-">cas</a></span>(java.nio.ByteBuffer key,
java.lang.String column_family,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> expected,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> updates,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> serial_consistency_level,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> commit_consistency_level)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.Iface.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.Iface.html#cas-java.nio.ByteBuffer-java.lang.String-java.util.List-java.util.List-org.apache.cassandra.thrift.ConsistencyLevel-org.apache.cassandra.thrift.ConsistencyLevel-">cas</a></span>(java.nio.ByteBuffer key,
java.lang.String column_family,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> expected,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> updates,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> serial_consistency_level,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> commit_consistency_level)</code>
<div class="block">Atomic compare and set.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.Client.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.Client.html#cas-java.nio.ByteBuffer-java.lang.String-java.util.List-java.util.List-org.apache.cassandra.thrift.ConsistencyLevel-org.apache.cassandra.thrift.ConsistencyLevel-">cas</a></span>(java.nio.ByteBuffer key,
java.lang.String column_family,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> expected,
java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> updates,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> serial_consistency_level,
<a href="../../../../../org/apache/cassandra/thrift/ConsistencyLevel.html" title="enum in org.apache.cassandra.thrift">ConsistencyLevel</a> commit_consistency_level)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">CASResult.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#deepCopy--">deepCopy</a></span>()</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.AsyncClient.cas_call.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.AsyncClient.cas_call.html#getResult--">getResult</a></span>()</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.cas_result.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.cas_result.html#getSuccess--">getSuccess</a></span>()</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.Client.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.Client.html#recv_cas--">recv_cas</a></span>()</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">CASResult.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#setCurrent_values-java.util.List-">setCurrent_values</a></span>(java.util.List<<a href="../../../../../org/apache/cassandra/thrift/Column.html" title="class in org.apache.cassandra.thrift">Column</a>> current_values)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></code></td>
<td class="colLast"><span class="typeNameLabel">CASResult.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#setSuccess-boolean-">setSuccess</a></span>(boolean success)</code> </td>
</tr>
</tbody>
</table>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../org/apache/cassandra/thrift/package-summary.html">org.apache.cassandra.thrift</a> that return types with arguments of type <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>org.apache.thrift.async.AsyncMethodCallback<<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a>></code></td>
<td class="colLast"><span class="typeNameLabel">Cassandra.AsyncProcessor.cas.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.AsyncProcessor.cas.html#getResultHandler-org.apache.thrift.server.AbstractNonblockingServer.AsyncFrameBuffer-int-">getResultHandler</a></span>(org.apache.thrift.server.AbstractNonblockingServer.AsyncFrameBuffer fb,
int seqid)</code> </td>
</tr>
</tbody>
</table>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../org/apache/cassandra/thrift/package-summary.html">org.apache.cassandra.thrift</a> with parameters of type <a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a></span><span class="tabEnd"> </span></caption>
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<td class="colFirst"><code>int</code></td>
<td class="colLast"><span class="typeNameLabel">CASResult.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#compareTo-org.apache.cassandra.thrift.CASResult-">compareTo</a></span>(<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a> other)</code> </td>
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<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">CASResult.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#equals-org.apache.cassandra.thrift.CASResult-">equals</a></span>(<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a> that)</code> </td>
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org.apache.thrift.async.AsyncMethodCallback<<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a>> resultHandler)</code> </td>
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<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/Cassandra.cas_result.html#cas_result-org.apache.cassandra.thrift.CASResult-org.apache.cassandra.thrift.InvalidRequestException-org.apache.cassandra.thrift.UnavailableException-org.apache.cassandra.thrift.TimedOutException-">cas_result</a></span>(<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a> success,
<a href="../../../../../org/apache/cassandra/thrift/InvalidRequestException.html" title="class in org.apache.cassandra.thrift">InvalidRequestException</a> ire,
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<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../org/apache/cassandra/thrift/CASResult.html#CASResult-org.apache.cassandra.thrift.CASResult-">CASResult</a></span>(<a href="../../../../../org/apache/cassandra/thrift/CASResult.html" title="class in org.apache.cassandra.thrift">CASResult</a> other)</code>
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<h4>练太极拳阴阳平衡助睡眠中医认为,练太极拳能加强肾的藏精、保精功能,并能调节内分泌系统。因此,通过练太极拳,不仅能改善阳痿、遗精、腰腿酸软,也能改善体虚肾亏引起的失眠、多梦等症状,可明显改善睡眠质量。</h4>
<p>太极拳的练习,即“腹式呼吸”,通过腹腔压力的改变,使胸廓容积增大,胸腔负压增高,上下腔静脉压力下降,血液回流加速。由于腹腔压力的规律性增减,腹内脏器活动加强,改善了消化道的血液循环,促进消化道的消化吸收功能,防止便秘。科学研究表明,打太极拳时全身骨骼肌的周期性收缩和舒张,可以加强血液循环。更重要的是由于肌肉运动,可使冠状动脉反射性扩张,心肌毛细血管开放增多,氧供给充分,心肌营养加强,收缩功能提高,同时全身皮肤、肌肉、内脏中储备的毛细血管网扩张,导致血压下降,可有效地防止夜间发生心脑血管急症。
练太极拳可以调整神经功能活动,使高度紧张的精神状态得到恢复,阴阳达到平衡。因此,通过练拳养神,能够治疗神经衰弱、健忘失眠、神志不宁等症。</p>
<p><a class="btn" href="#">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>陈氏太极传承人表示:太极并非“老年运动”</h4>
<p>近日,由陈氏太极拳第11代传人陈正雷创办的广州陈正雷太极会馆正式开业。该馆坐落于广州市广纺联创意园,由陈正雷长女、陈氏太极第12代传人陈娟执教,在保持陈氏太极原汁原味的同时,将运用现代经营模式,向广大市民、特别是年轻人推广太极拳文化,引领时尚健康的新生活。 </p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>太极之气在于腰 教你简单松腰法</h4>
<p>再练习太极拳的时候,大家都知道松腰很关键,《太极拳论》阐述:“腰为一身之主宰,能松腰,然后两足有力,下盘稳固。虚实变化,皆由腰转动,故曰,命意源头在腰隙。有不得力,必由腰腿求之也。”腰部的灵活与协调增加,肾的功能也就随之加强,继而人的精力也就逐渐旺盛,而对于太极拳的练习而言更是如行云流水,达到“力发于足,主宰于腰,行于四肢”真正实现“气遍周身不稍滞。”</p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
</div><!--/row-->
<div class="row taichiArticals">
<div class="span3">
<h4>练太极拳阴阳平衡助睡眠中医认为,练太极拳能加强肾的藏精、保精功能,并能调节内分泌系统。因此,通过练太极拳,不仅能改善阳痿、遗精、腰腿酸软,也能改善体虚肾亏引起的失眠、多梦等症状,可明显改善睡眠质量。</h4>
<p>太极拳的练习,即“腹式呼吸”,通过腹腔压力的改变,使胸廓容积增大,胸腔负压增高,上下腔静脉压力下降,血液回流加速。由于腹腔压力的规律性增减,腹内脏器活动加强,改善了消化道的血液循环,促进消化道的消化吸收功能,防止便秘。科学研究表明,打太极拳时全身骨骼肌的周期性收缩和舒张,可以加强血液循环。更重要的是由于肌肉运动,可使冠状动脉反射性扩张,心肌毛细血管开放增多,氧供给充分,心肌营养加强,收缩功能提高,同时全身皮肤、肌肉、内脏中储备的毛细血管网扩张,导致血压下降,可有效地防止夜间发生心脑血管急症。
练太极拳可以调整神经功能活动,使高度紧张的精神状态得到恢复,阴阳达到平衡。因此,通过练拳养神,能够治疗神经衰弱、健忘失眠、神志不宁等症。</p>
<p><a class="btn" href="#">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>陈氏太极传承人表示:太极并非“老年运动”</h4>
<p>近日,由陈氏太极拳第11代传人陈正雷创办的广州陈正雷太极会馆正式开业。该馆坐落于广州市广纺联创意园,由陈正雷长女、陈氏太极第12代传人陈娟执教,在保持陈氏太极原汁原味的同时,将运用现代经营模式,向广大市民、特别是年轻人推广太极拳文化,引领时尚健康的新生活。 </p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>太极之气在于腰 教你简单松腰法</h4>
<p>再练习太极拳的时候,大家都知道松腰很关键,《太极拳论》阐述:“腰为一身之主宰,能松腰,然后两足有力,下盘稳固。虚实变化,皆由腰转动,故曰,命意源头在腰隙。有不得力,必由腰腿求之也。”腰部的灵活与协调增加,肾的功能也就随之加强,继而人的精力也就逐渐旺盛,而对于太极拳的练习而言更是如行云流水,达到“力发于足,主宰于腰,行于四肢”真正实现“气遍周身不稍滞。”</p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
</div><!--/row-->
<div class="row taichiArticals">
<div class="span3">
<h4>练太极拳阴阳平衡助睡眠中医认为,练太极拳能加强肾的藏精、保精功能,并能调节内分泌系统。因此,通过练太极拳,不仅能改善阳痿、遗精、腰腿酸软,也能改善体虚肾亏引起的失眠、多梦等症状,可明显改善睡眠质量。</h4>
<p>太极拳的练习,即“腹式呼吸”,通过腹腔压力的改变,使胸廓容积增大,胸腔负压增高,上下腔静脉压力下降,血液回流加速。由于腹腔压力的规律性增减,腹内脏器活动加强,改善了消化道的血液循环,促进消化道的消化吸收功能,防止便秘。科学研究表明,打太极拳时全身骨骼肌的周期性收缩和舒张,可以加强血液循环。更重要的是由于肌肉运动,可使冠状动脉反射性扩张,心肌毛细血管开放增多,氧供给充分,心肌营养加强,收缩功能提高,同时全身皮肤、肌肉、内脏中储备的毛细血管网扩张,导致血压下降,可有效地防止夜间发生心脑血管急症。
练太极拳可以调整神经功能活动,使高度紧张的精神状态得到恢复,阴阳达到平衡。因此,通过练拳养神,能够治疗神经衰弱、健忘失眠、神志不宁等症。</p>
<p><a class="btn" href="#">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>陈氏太极传承人表示:太极并非“老年运动”</h4>
<p>近日,由陈氏太极拳第11代传人陈正雷创办的广州陈正雷太极会馆正式开业。该馆坐落于广州市广纺联创意园,由陈正雷长女、陈氏太极第12代传人陈娟执教,在保持陈氏太极原汁原味的同时,将运用现代经营模式,向广大市民、特别是年轻人推广太极拳文化,引领时尚健康的新生活。 </p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>太极之气在于腰 教你简单松腰法</h4>
<p>再练习太极拳的时候,大家都知道松腰很关键,《太极拳论》阐述:“腰为一身之主宰,能松腰,然后两足有力,下盘稳固。虚实变化,皆由腰转动,故曰,命意源头在腰隙。有不得力,必由腰腿求之也。”腰部的灵活与协调增加,肾的功能也就随之加强,继而人的精力也就逐渐旺盛,而对于太极拳的练习而言更是如行云流水,达到“力发于足,主宰于腰,行于四肢”真正实现“气遍周身不稍滞。”</p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
</div><!--/row-->
<div class="row taichiArticals">
<div class="span3">
<h4>练太极拳阴阳平衡助睡眠中医认为,练太极拳能加强肾的藏精、保精功能,并能调节内分泌系统。因此,通过练太极拳,不仅能改善阳痿、遗精、腰腿酸软,也能改善体虚肾亏引起的失眠、多梦等症状,可明显改善睡眠质量。</h4>
<p>太极拳的练习,即“腹式呼吸”,通过腹腔压力的改变,使胸廓容积增大,胸腔负压增高,上下腔静脉压力下降,血液回流加速。由于腹腔压力的规律性增减,腹内脏器活动加强,改善了消化道的血液循环,促进消化道的消化吸收功能,防止便秘。科学研究表明,打太极拳时全身骨骼肌的周期性收缩和舒张,可以加强血液循环。更重要的是由于肌肉运动,可使冠状动脉反射性扩张,心肌毛细血管开放增多,氧供给充分,心肌营养加强,收缩功能提高,同时全身皮肤、肌肉、内脏中储备的毛细血管网扩张,导致血压下降,可有效地防止夜间发生心脑血管急症。
练太极拳可以调整神经功能活动,使高度紧张的精神状态得到恢复,阴阳达到平衡。因此,通过练拳养神,能够治疗神经衰弱、健忘失眠、神志不宁等症。</p>
<p><a class="btn" href="#">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>陈氏太极传承人表示:太极并非“老年运动”</h4>
<p>近日,由陈氏太极拳第11代传人陈正雷创办的广州陈正雷太极会馆正式开业。该馆坐落于广州市广纺联创意园,由陈正雷长女、陈氏太极第12代传人陈娟执教,在保持陈氏太极原汁原味的同时,将运用现代经营模式,向广大市民、特别是年轻人推广太极拳文化,引领时尚健康的新生活。 </p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
</div><!--/span-->
<div class="span3">
<h4>太极之气在于腰 教你简单松腰法</h4>
<p>再练习太极拳的时候,大家都知道松腰很关键,《太极拳论》阐述:“腰为一身之主宰,能松腰,然后两足有力,下盘稳固。虚实变化,皆由腰转动,故曰,命意源头在腰隙。有不得力,必由腰腿求之也。”腰部的灵活与协调增加,肾的功能也就随之加强,继而人的精力也就逐渐旺盛,而对于太极拳的练习而言更是如行云流水,达到“力发于足,主宰于腰,行于四肢”真正实现“气遍周身不稍滞。”</p>
<p><a class="btn" href="http://www.cstjq.com/html/xwdt/gndt/4418.html">View details »</a></p>
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昨天在西交大附属中学表演陈氏太极, 大家都打得很好!
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| ricoyu520/igbeok | igbeok-prototype/html/index6.html | HTML | apache-2.0 | 32,169 |
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Uses of Class org.apache.hadoop.hbase.thrift.generated.Hbase.AsyncClient.disableTable_call (HBase 0.94.8 API)
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<B>Uses of Class<br>org.apache.hadoop.hbase.thrift.generated.Hbase.AsyncClient.disableTable_call</B></H2>
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Uses of <A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html" title="class in org.apache.hadoop.hbase.thrift.generated">Hbase.AsyncClient.disableTable_call</A> in <A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/package-summary.html">org.apache.hadoop.hbase.thrift.generated</A></FONT></TH>
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<TH ALIGN="left" COLSPAN="2">Method parameters in <A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/package-summary.html">org.apache.hadoop.hbase.thrift.generated</A> with type arguments of type <A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html" title="class in org.apache.hadoop.hbase.thrift.generated">Hbase.AsyncClient.disableTable_call</A></FONT></TH>
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<CODE> void</CODE></FONT></TD>
<TD><CODE><B>Hbase.AsyncIface.</B><B><A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncIface.html#disableTable(java.nio.ByteBuffer, org.apache.thrift.async.AsyncMethodCallback)">disableTable</A></B>(<A HREF="http://java.sun.com/javase/6/docs/api/java/nio/ByteBuffer.html?is-external=true" title="class or interface in java.nio">ByteBuffer</A> tableName,
org.apache.thrift.async.AsyncMethodCallback<<A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html" title="class in org.apache.hadoop.hbase.thrift.generated">Hbase.AsyncClient.disableTable_call</A>> resultHandler)</CODE>
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<CODE> void</CODE></FONT></TD>
<TD><CODE><B>Hbase.AsyncClient.</B><B><A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.html#disableTable(java.nio.ByteBuffer, org.apache.thrift.async.AsyncMethodCallback)">disableTable</A></B>(<A HREF="http://java.sun.com/javase/6/docs/api/java/nio/ByteBuffer.html?is-external=true" title="class or interface in java.nio">ByteBuffer</A> tableName,
org.apache.thrift.async.AsyncMethodCallback<<A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html" title="class in org.apache.hadoop.hbase.thrift.generated">Hbase.AsyncClient.disableTable_call</A>> resultHandler)</CODE>
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<TD><CODE><B><A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html#Hbase.AsyncClient.disableTable_call(java.nio.ByteBuffer, org.apache.thrift.async.AsyncMethodCallback, org.apache.thrift.async.TAsyncClient, org.apache.thrift.protocol.TProtocolFactory, org.apache.thrift.transport.TNonblockingTransport)">Hbase.AsyncClient.disableTable_call</A></B>(<A HREF="http://java.sun.com/javase/6/docs/api/java/nio/ByteBuffer.html?is-external=true" title="class or interface in java.nio">ByteBuffer</A> tableName,
org.apache.thrift.async.AsyncMethodCallback<<A HREF="../../../../../../../org/apache/hadoop/hbase/thrift/generated/Hbase.AsyncClient.disableTable_call.html" title="class in org.apache.hadoop.hbase.thrift.generated">Hbase.AsyncClient.disableTable_call</A>> resultHandler,
org.apache.thrift.async.TAsyncClient client,
org.apache.thrift.protocol.TProtocolFactory protocolFactory,
org.apache.thrift.transport.TNonblockingTransport transport)</CODE>
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| algarecu/hbase-0.94.8-qod | docs/apidocs/org/apache/hadoop/hbase/thrift/generated/class-use/Hbase.AsyncClient.disableTable_call.html | HTML | apache-2.0 | 12,095 |
---
layout: default
---
<h2>
<a id="Publications" class="anchor" href="#papers" aria-hidden="true"><span class="octicon octicon-link"></span></a>Publications</h2>
<ol class="list-unstyled">
<ol>
<li>
<p> Gabriel de Souza Augusto, Jair Scarmínio, Paulo Rogério Catarini Silva, Abner de Siervo, Chandra Sekhar Rout, Francisco <b>Rouxinol</b>, Rogério Valentim Gelamo <br /> Flexible metal-free supercapacitors based on multilayer graphene electrodes<br /> Electrochimica Acta, 285, 241-253 (2018) <br /> <a href="https://doi.org/10.1016/j.electacta.2018.07.223">DOI </a> <br />
DOCUMENT TYPE: Article - PUBLISHED: 20 Sep 2018 </br>
</p>
</li>
<li>
<p> Rodrigo Alves e Silva, Paulo de Castro Guetti, Mário Sérgio da Luz, Francisco <b>Rouxinol</b>, Rogério Valentim Gelamo <br /> Enhanced properties of cement mortars with multilayer graphene nanoparticles<br /> Construction and Building Materials, 149, 378-385 (2017) <br /> <a href="http://dx.doi.org/10.1016/j.conbuildmat.2017.05.146">DOI </a> <br />
DOCUMENT TYPE: Article - PUBLISHED: 17 May 2017 </br>
</p>
</li>
<li>
<p> F. <b>Rouxinol</b>, Y. Hao, F. Brito, A. O. Caldeira, E. K. Irish, and M. D. LaHaye<br /> Measurements of nanoresonator-qubit interactions in a hybrid quantum electromechanical system<br /> Nanotechnology, 27, 364003 (2016)<br /> <a href="http://dx.doi.org/10.1088/0957-4484/27/36/364003">DOI </a> <br /> <a href="https://arxiv.org/abs/1605.01454">ArXiv </a> <br />
DOCUMENT TYPE: Article - PUBLISHED: 11 July 2016 </br>
</p>
</li>
<li>
<p>Matthew D. LaHaye, Francisco <b>ROUXINOL</b>, Yu Hao, Seung-Bo Shim, Elinor K. Irish<br /> Superconducting Circuitry for Quantum Electromechanical Systems<br /> Proceedings of the SPIE, 9500-48 (2015)<br /> <a href="http://dx.doi.org/10.1117/12.2182719">DOI </a> <br /> <a href="http://arxiv.org/abs/1504.02908">ArXiv </a> <br />
DOCUMENT TYPE: Conference Paper </br>
</p>
</li>
<li>
<p>B. L. T. Plourde, Haozhi Wang, Francisco <b>ROUXINOL</b>, M. D. LaHaye<br />Superconducting metamaterials and qubits <br /> Proceedings of the SPIE, 9500-21 (2015)<br /> <a href="http://dx.doi.org/10.1117/12.2180012">DOI </a> <br /> <a href="http://arxiv.org/abs/1505.01015">ArXiv </a> <br />
DOCUMENT TYPE: Conference Paper</br>
</p>
</li>
<li>
<p>Brito, Frederico, <b>ROUXINOL</b>, F., Lahaye, M.D., Caldeira, A<br /> Testing Time Reversal Symmetry in Artificial Atoms<br /> (2015) New Journal of Physics , 17, 075002<br /> <a href="http://dx.doi.org/10.1088/1367-2630/17/7/075002">DOI </a> <br /> <a href="http://arxiv.org/abs/1406.7182">ArXiv </a> <br />
DOCUMENT TYPE: Article - ACCEPTED FOR PUBLICATION: 29 May 2015</br>
</p>
</li>
<li>
<p>Hao, Y., <b>ROUXINOL</b>, F., Lahaye, M.D.<br /> Development of a broadband reflective T-filter for voltage biasing high-Q superconducting microwave cavities<br /> (2014) Applied Physics Letters, 105 (22), art. no. 222603<br /> <a href="http://dx.doi.org/10.1063/1.4903777">DOI </a> <br /> <a href="http://arxiv.org/abs/1409.7727">ArXiv </a> <br />
DOCUMENT TYPE: Article</br>
</p>
</li>
<li>
<p><br /> <b>ROUXINOL</b>, F.P., Gadioli, G.Z., Gelamo, R.V., Dos Santos, A.O., Cardoso, L.P., Gama, S., Bica De Moraes, M.A.<br /> Magnetic properties of metastable GdCr alloys<br /> (2011) Journal of Magnetism and Magnetic Materials, 323 (15), pp. 2005-2011. Cited 1 time.<br /> <a href="http://dx.doi.org/10.1016/j.jmmm.2011.02.040">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p><b>ROUXINOL</b>, F.P., Gelamo, R.V., Amici, R.G., Vaz, A.R., Moshkalev, S.A.<br /> Low contact resistivity and strain in suspended multilayer graphene<br /> (2010) Applied Physics Letters, 97 (25), art. no. 253104, . Cited 16 times.<br /> <a href="http://dx.doi.org/10.1063/1.3528354">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Vaz, A.R., <b>ROUXINOL</b>, F.P., Baldini Neto, E., Fonseca, L., Moshkalev, S.A.<br /> Experimental and theoretical investigation of contacts between metal and few-layer graphene<br /> (2010) Advanced Metallization Conference (AMC), pp. 79-80. "<br /> <a href="http://dx.doi.org/">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
<li>
<p>Gelamo, R.V., <b>ROUXINOL</b>, F.P., Verissimo, C., De Bica Moraes, M.A., Moshkalev, S.A.<br /> Gas and pressure sensors based on multi-wall carbon nanotubes: Study of sensing mechanisms<br /> (2010) Sensor Letters, 8 (3), pp. 488-492. Cited 7 times.<br /> <a href="http://dx.doi.org/10.1166/sl.2010.1299">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
<li>
<p>Soffner, M.E., Tedesco, J.C.G., Mansanares, A.M., Gadioli, G.Z., <b>ROUXINOL</b>, F.P., De Moraes, M.A.B., Da Silva, E.C.<br /> Thin films of gadolinium investigated by photothermally modulated magnetic resonance<br /> (2010) Journal of Physics: Conference Series, 214, art. no. 012092, . Cited 1 time.<br /> <a href="http://dx.doi.org/10.1088/1742-6596/214/1/012092">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
<li>
<p>Remédios, C.M.R., Dos Santos, A.O., Lai, X., Roberts, K.J., Moreira, S.G.C., Miranda, M.A.R., De Menezes, A.S., <b>ROUXINOL</b>, F.P., Cardoso, L.P.<br /> Experimental evidence for the influence of Mn3- concentration on the impurity incorporation and habit modification mechanism of potassium dihydrogen phosphate<br /> (2010) Crystal Growth and Design, 10 (3), pp. 1053-1058. Cited 2 times.<br /> <a href="http://dx.doi.org/10.1021/cg8013255">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., <b>ROUXINOL</b>, F.P., Verissimo, C., Vaz, A.R., Bica de Moraes, M.A., Moshkalev, S.A.<br /> Low-temperature gas and pressure sensor based on multi-wall carbon nanotubes decorated with Ti nanoparticles<br /> (2009) Chemical Physics Letters, 482 (4-6), pp. 302-306. Cited 22 times.<br /> <a href="http://dx.doi.org/10.1016/j.cplett.2009.10.019">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., Abbaspourrad, A., Verissimo, C., Vaz, A.R., <b>ROUXINOL</b>, F.P.M., Alves, O.L., Moshkalev, S.A.<br /> Multiwall carbon nanotubes decorated with metal oxide nanoparticles for gas sensing applications<br /> (2009) ECS Transactions, 23 (1), pp. 237-242. Cited 3 times.<br /> <a href="http://dx.doi.org/10.1149/1.3183725">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
<li>
<p>Gadioli, G.Z., <b>ROUXINOL</b>, F.P., Gelamo, R.V., Dos Santos, A.O., Cardoso, L.P., De Moraes, M.A.B.<br /> Magnetism in Gd-W films<br /> (2008) Journal of Applied Physics, 103 (9), art. no. 093916, . Cited 6 times.<br /> <a href="http://dx.doi.org/10.1063/1.2838462">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Scarminio, J., Catarini, P.R., Urbano, A., Gelamo, R.V., <b>ROUXINOL</b>, F.P., Bica De Moraes, M.A.<br /> Li diffusion and electrochromism in amorphous and crystalline vanadium oxide thin film electrodes<br /> (2008) Journal of the Brazilian Chemical Society, 19 (4), pp. 788-794. Cited 9 times.">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
<li>
<p>Durrant, S.F., Trasferetti, B.C., Scarmínio, J., Davanzo, C.U., <b>ROUXINOL</b>, F.P.M., Gelamo, R.V., Bica de Moraes, M.A.<br /> Developments in hot-filament metal oxide deposition (HFMOD)<br /> (2008) Thin Solid Films, 516 (5), pp. 789-793. Cited 8 times.<br /> <a href="http://dx.doi.org/10.1016/j.tsf.2007.06.183">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Durrant, S.F., <b>ROUXINOL</b>, F.P.M., Gelamo, R.V., Trasferetti, B.C., Davanzo, C.U., Bica de Moraes, M.A.<br /> Characterization of Si:O:C:H films fabricated using electron emission enhanced chemical vapour deposition<br /> (2008) Thin Solid Films, 516 (5), pp. 803-806. Cited 5 times.<br /> <a href="http://dx.doi.org/10.1016/j.tsf.2007.06.222">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., Durrant, S.F., Trasferetti, B.C., Davanzo, C.U., <b>ROUXINOL</b>, F.P.M., Bica de Moraes, M.A.<br /> Helium ion irradiation of polymer films deposited from TMS-Ar plasmas<br /> (2007) Plasma Processes and Polymers, 4 (4), pp. 489-496. Cited 2 times.<br /> <a href="http://dx.doi.org/10.1002/ppap.200600200">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., Landers, R., <b>ROUXINOL</b>, F.P.M., Trasferetti, B.C., Bica de Moraes, M.A., Davanzo, C.U., Durrant, S.F.<br /> XPS investigation of plasma-deposited polysiloxane films irradiated with helium ions<br /> (2007) Plasma Processes and Polymers, 4 (4), pp. 482-488. Cited 5 times.<br /> <a href="http://dx.doi.org/10.1002/ppap.200600100">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., Trasferetti, B.C., Durrant, S.F., Davanzo, C.U., <b>ROUXINOL</b>, F.P., Gadioli, G.Z., Bica de Moraes, M.A.<br /> Infrared spectroscopy investigation of various plasma-deposited polymer films irradiated with 170 keV He+ ions<br /> (2006) Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, 249 (1-2 SPEC. ISS.), pp. 162-166. Cited 3 times.<br /> <a href="http://dx.doi.org/10.1016/j.nimb.2006.03.105">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Gelamo, R.V., De Bica Moraes, M.A., Trasferetti, B.C., <b>ROUXINOL</b>, F.P., Davanzo, C.U.<br /> Modification of plasma-polymerized organosiloxane films by irradiation with He+, Ne+, Ar+, and Kr+ ions<br /> (2005) Chemistry of Materials, 17 (23), pp. 5789-5797. Cited 4 times.<br /> <a href="http://dx.doi.org/10.1021/cm051007o">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Trasferetti, B.C., Gelamo, R.V., <b>ROUXINOL</b>, F.P., Bica De Moraes, M.A., Davanzo, C.U.<br /> Infrared studies on films of carbosilazane and siloxazane networks<br /> (2005) Chemistry of Materials, 17 (18), pp. 4685-4692. Cited 8 times.<br /> <a href="http://dx.doi.org/10.1021/cm050319o">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p><b>ROUXINOL</b>, F.P., Trasferetti, B.C., Landers, R., Bica De Moraes, M.A.<br /> Hot-Filament Metal Oxide Deposition (HFMOD): A novel method for depositing thin films of metallic oxides<br /> (2004) Journal of the Brazilian Chemical Society, 15 (2), pp. 324-326. Cited 9 times.">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Trasferetti, B.C., <b>ROUXINOL</b>, F.P., Gelamo, R.V., De Moraes, M.A.B., Davanzo, C.U., De Faria, D.L.A.<br /> Berreman effect in amorphous and crystalline WO3 thin films<br /> (2004) Journal of Physical Chemistry B, 108 (33), pp. 12333-12338. Cited 9 times.<br /> <a href="http://dx.doi.org/10.1021/jp036653u D">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Trasferetti, B.C., Gelamo, R.V., <b>ROUXINOL</b>, F.P., Bica De Moraes, M.A., Do Carmo Gonçalves, M., Davanzo, C.U.<br /> Nanocomposites of Amorphous Hydrogenated Carbon and Siloxane Networks Produced by PECVD<br /> (2004) Chemistry of Materials, 16 (4), pp. 567-569. Cited 3 times.<br /> <a href="http://dx.doi.org/10.1021/cm0348139">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Bica De Moraes, M.A., Trasferetti, B.C., <b>ROUXINOL</b>, F.P., Landers, R., Durrant, S.F., Scarmínio, J., Urbano, A.<br /> Molybdenum Oxide Thin Films Obtained by the Hot-Filament Metal Oxide Deposition Technique<br /> (2004) Chemistry of Materials, 16 (3), pp. 513-520. Cited 34 times.<br /> <a href="http://dx.doi.org/10.1021/cm034551a">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Scarminio, J., Bica De Moraes, M.A., Dias, R.C.E., <b>ROUXINOL</b>, F.P., Durrant, S.F.<br /> Tungsten oxide films of high electrochromic efficiencies Obtained by deposition<br /> (2003) Electrochemical and Solid-State Letters, 6 (6), pp. H9-H12. Cited 11 times.<br /> <a href="http://dx.doi.org/10.1149/1.1570632">DOI </a> <br /> DOCUMENT TYPE: Article</p>
</li>
<li>
<p>Durrant, S.F., Bica de Moraes, M.A., <b>ROUXINOL</b>, F.P.<br /> Gas-phase and plasma-surface reactions in radiofrequency discharges of C2H2-N2-noble gas mixtures<br /> (2001) Thin Solid Films, 398-399, pp. 156-162. Cited 3 times.<br /> <a href="http://dx.doi.org/10.1016/S0040-6090(01)01460-2">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
</li>
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<p>Bica de Moraes, M.A., Durrant, S.F., <b>ROUXINOL</b>, F.P.<br /> Electron emission enhanced chemical vapor deposition (EEECVD) for the fabrication of diverse silicon-containing films<br /> (2001) Thin Solid Films, 398-399, pp. 591-596. Cited 3 times.<br /> <a href="http://dx.doi.org/10.1016/S0040-6090(01)01324-4">DOI </a> <br /> DOCUMENT TYPE: Conference Paper</p>
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Uses of Interface org.apache.hadoop.mapred.lib.InputSampler.Sampler (Hadoop 0.20.2-cdh3u0-SNAPSHOT API)
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<B>Uses of Interface<br>org.apache.hadoop.mapred.lib.InputSampler.Sampler</B></H2>
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Packages that use <A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.Sampler.html" title="interface in org.apache.hadoop.mapred.lib">InputSampler.Sampler</A></FONT></TH>
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<TD><A HREF="#org.apache.hadoop.mapred.lib"><B>org.apache.hadoop.mapred.lib</B></A></TD>
<TD>Library of generally useful mappers, reducers, and partitioners. </TD>
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Uses of <A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.Sampler.html" title="interface in org.apache.hadoop.mapred.lib">InputSampler.Sampler</A> in <A HREF="../../../../../../org/apache/hadoop/mapred/lib/package-summary.html">org.apache.hadoop.mapred.lib</A></FONT></TH>
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<TH ALIGN="left" COLSPAN="2">Classes in <A HREF="../../../../../../org/apache/hadoop/mapred/lib/package-summary.html">org.apache.hadoop.mapred.lib</A> that implement <A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.Sampler.html" title="interface in org.apache.hadoop.mapred.lib">InputSampler.Sampler</A></FONT></TH>
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<CODE>static class</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.IntervalSampler.html" title="class in org.apache.hadoop.mapred.lib">InputSampler.IntervalSampler<K,V></A></B></CODE>
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Sample from s splits at regular intervals.</TD>
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<CODE>static class</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.RandomSampler.html" title="class in org.apache.hadoop.mapred.lib">InputSampler.RandomSampler<K,V></A></B></CODE>
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Sample from random points in the input.</TD>
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<CODE>static class</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.SplitSampler.html" title="class in org.apache.hadoop.mapred.lib">InputSampler.SplitSampler<K,V></A></B></CODE>
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Samples the first n records from s splits.</TD>
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<TH ALIGN="left" COLSPAN="2">Methods in <A HREF="../../../../../../org/apache/hadoop/mapred/lib/package-summary.html">org.apache.hadoop.mapred.lib</A> with parameters of type <A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.Sampler.html" title="interface in org.apache.hadoop.mapred.lib">InputSampler.Sampler</A></FONT></TH>
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<TD><CODE><B>InputSampler.</B><B><A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.html#writePartitionFile(org.apache.hadoop.mapred.JobConf, org.apache.hadoop.mapred.lib.InputSampler.Sampler)">writePartitionFile</A></B>(<A HREF="../../../../../../org/apache/hadoop/mapred/JobConf.html" title="class in org.apache.hadoop.mapred">JobConf</A> job,
<A HREF="../../../../../../org/apache/hadoop/mapred/lib/InputSampler.Sampler.html" title="interface in org.apache.hadoop.mapred.lib">InputSampler.Sampler</A><K,V> sampler)</CODE>
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Write a partition file for the given job, using the Sampler provided.</TD>
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<td class="colFirst"><code><a href="../../../../../../../../org/wildfly/swarm/config/security/security_domain/ClassicACL.html" title="type parameter in ClassicACL">T</a></code></td>
<td class="colLast"><span class="typeNameLabel">ClassicACL.</span><code><span class="memberNameLink"><a href="../../../../../../../../org/wildfly/swarm/config/security/security_domain/ClassicACL.html#aclModule-org.wildfly.swarm.config.security.security_domain.acl.ACLModuleSupplier-">aclModule</a></span>(<a href="../../../../../../../../org/wildfly/swarm/config/security/security_domain/acl/ACLModuleSupplier.html" title="interface in org.wildfly.swarm.config.security.security_domain.acl">ACLModuleSupplier</a> supplier)</code>
<div class="block">Install a supplied ACLModule object to the list of subresources</div>
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---
layout: post
title: "The unstoppable rise of the Catalan poop log"
subtitle: "One day soon Santa will die and will be replaced by a log which you hit with a stick until it shits gifts"
date: 2015-12-25 12:00:00
author: ""
header_title: "The Catalan Poop Log"
header-img: "img/2015-12-25-caga-tio/header.JPG"
category: en
---
<script async src="//pagead2.googlesyndication.com/pagead/js/adsbygoogle.js"></script>
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<ins class="adsbygoogle"
style="display:inline-block;width:728px;height:15px"
data-ad-client="ca-pub-7902219614622730"
data-ad-slot="4722795601"></ins>
<script>
(adsbygoogle = window.adsbygoogle || []).push({});
</script>
<h3 class="section-heading">In Barcelona, there is no Santa Claus...</h3>
<p>Santa Claus doesn't visit Catalonia. Instead, every household has a log, which children beat with sticks while chanting until the log "shits" presents.</p>
<p>This is not a joke.</p>
<p>Don't believe us? Check out this <a href='https://en.wikipedia.org/wiki/Ti%C3%B3_de_Nadal'>Wikipedia entry about it</a>, or google "caga tió" (which translates, literally, as "poop log"), or just watch the below video:</p>
<iframe width="640" height="360" src="https://www.youtube.com/embed/Pzm-4VQteJM" frameborder="0" allowfullscreen></iframe>
<h3 class="section-heading">The song</h3>
<p>While literally beating the shit out of a log, children are expected to sing the traditional "caga tió" song. The lyrics are worth translating in full:</p>
<center>
<br>Shit, log!
<br>Log of Christmas,
<br>don't shit herrings,
<br>they are too salty,
<br>shit nougats
<br>for they are better!
</center>
<p>Again, this isn't a joke.</p>
<h3 class="section-heading">But does anybody actually do this?</h3>
<p>Yes. Everyone in Catalonia. Catalans love the poop log so much that, in addition to celebrating it at home, they also often gather in large groups, with a massive log, beat it relentlessly, and then delight at the site of it shitting many presents:</p>
<iframe width="640" height="360" src="https://www.youtube.com/embed/RcHyRPaEfd8" frameborder="0" allowfullscreen></iframe>
<h3 class="section-heading">What does this have to do with data?</h3>
<p>We're making a bold prediction. In 100 years, Santa Claus will be a relic of the past, and people <em>everywhere</em> will be celebrating in this, ahem, unique Catalan fashion.</p>
<p>What's our rationale? Data, of course. We've analyzed global interest in variations of Christmas celebrations, and the reality is that the Catalan poop log is attracting more and more interest every year. Meanwhile, Santa Claus is flatlining.</p>
<a href="{{ site.baseurl }}/img/2015-12-25-caga-tio/combined_en.png">
<img src="{{ site.baseurl }}/img/2015-12-25-caga-tio/combined_en.png" alt="">
</a>
<span class="caption text-muted">Google trends</span>
<p>Ultimately, holidays compete in a Darwinian contest, in which only the superior thrive (which is why you've probably never celebrated <a href='https://en.wikipedia.org/wiki/National_Catfish_Day'>National Catfish Day</a>). Before now, the poop log was almost a secret, its awesomeness only known to Catalans. But in today's globalized world, the Catalan tradition of beating the shit out of a log will clearly beat out a creepy obese man sneaking into your home through the chimney.</p>
<p>Nice try, Santa, but your reign is over. Bring on the poop log!</p>
<h3 class="section-heading">Data sources, code, etc.</h3>
<p>As always, the code and data for this post (including source files, cleaning script, visualizations, etc.) can all be found on <a href="https://github.com/bcndata/">github</a>.</p>
<p>The trends data come from <a href="http://trends.google.com">Google Trends</a>, which we accessed using the <a href='https://github.com/dvanclev/GTrendsR'>gtrendsR package</a>.</p>
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<h2 title="Uses of Class org.wildfly.swarm.config.logging.AsyncHandler.OverflowAction" class="title">Uses of Class<br>org.wildfly.swarm.config.logging.AsyncHandler.OverflowAction</h2>
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<caption><span>Methods in <a href="../../../../../../org/wildfly/swarm/config/logging/package-summary.html">org.wildfly.swarm.config.logging</a> that return <a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html" title="enum in org.wildfly.swarm.config.logging">AsyncHandler.OverflowAction</a></span><span class="tabEnd"> </span></caption>
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<td class="colFirst"><code><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html" title="enum in org.wildfly.swarm.config.logging">AsyncHandler.OverflowAction</a></code></td>
<td class="colLast"><span class="typeNameLabel">AsyncHandler.</span><code><span class="memberNameLink"><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.html#overflowAction--">overflowAction</a></span>()</code>
<div class="block">Specify what action to take when the overflowing.</div>
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<td class="colFirst"><code>static <a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html" title="enum in org.wildfly.swarm.config.logging">AsyncHandler.OverflowAction</a></code></td>
<td class="colLast"><span class="typeNameLabel">AsyncHandler.OverflowAction.</span><code><span class="memberNameLink"><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html#valueOf-java.lang.String-">valueOf</a></span>(<a href="http://docs.oracle.com/javase/8/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> name)</code>
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<td class="colFirst"><code>static <a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html" title="enum in org.wildfly.swarm.config.logging">AsyncHandler.OverflowAction</a>[]</code></td>
<td class="colLast"><span class="typeNameLabel">AsyncHandler.OverflowAction.</span><code><span class="memberNameLink"><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html#values--">values</a></span>()</code>
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<td class="colFirst"><code><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.html" title="type parameter in AsyncHandler">T</a></code></td>
<td class="colLast"><span class="typeNameLabel">AsyncHandler.</span><code><span class="memberNameLink"><a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.html#overflowAction-org.wildfly.swarm.config.logging.AsyncHandler.OverflowAction-">overflowAction</a></span>(<a href="../../../../../../org/wildfly/swarm/config/logging/AsyncHandler.OverflowAction.html" title="enum in org.wildfly.swarm.config.logging">AsyncHandler.OverflowAction</a> value)</code>
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Package org.apache.solr.request
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APIs and classes for dealing with Solr requests
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<TD WIDTH="15%"><B><A HREF="../../../../org/apache/solr/request/DocValuesFacets.html" title="class in org.apache.solr.request">DocValuesFacets</A></B></TD>
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<h3>Uses of <a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a> in <a href="../../../../../org/apache/orc/impl/package-summary.html">org.apache.orc.impl</a></h3>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../org/apache/orc/impl/package-summary.html">org.apache.orc.impl</a> that return <a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></code></td>
<td class="colLast"><span class="typeNameLabel">HadoopShimsCurrent.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/orc/impl/HadoopShimsCurrent.html#getDirectDecompressor-org.apache.orc.impl.HadoopShims.DirectCompressionType-">getDirectDecompressor</a></span>(<a href="../../../../../org/apache/orc/impl/HadoopShims.DirectCompressionType.html" title="enum in org.apache.orc.impl">HadoopShims.DirectCompressionType</a> codec)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></code></td>
<td class="colLast"><span class="typeNameLabel">HadoopShimsPre2_7.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/orc/impl/HadoopShimsPre2_7.html#getDirectDecompressor-org.apache.orc.impl.HadoopShims.DirectCompressionType-">getDirectDecompressor</a></span>(<a href="../../../../../org/apache/orc/impl/HadoopShims.DirectCompressionType.html" title="enum in org.apache.orc.impl">HadoopShims.DirectCompressionType</a> codec)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></code></td>
<td class="colLast"><span class="typeNameLabel">HadoopShimsPre2_6.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/orc/impl/HadoopShimsPre2_6.html#getDirectDecompressor-org.apache.orc.impl.HadoopShims.DirectCompressionType-">getDirectDecompressor</a></span>(<a href="../../../../../org/apache/orc/impl/HadoopShims.DirectCompressionType.html" title="enum in org.apache.orc.impl">HadoopShims.DirectCompressionType</a> codec)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></code></td>
<td class="colLast"><span class="typeNameLabel">HadoopShimsPre2_3.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/orc/impl/HadoopShimsPre2_3.html#getDirectDecompressor-org.apache.orc.impl.HadoopShims.DirectCompressionType-">getDirectDecompressor</a></span>(<a href="../../../../../org/apache/orc/impl/HadoopShims.DirectCompressionType.html" title="enum in org.apache.orc.impl">HadoopShims.DirectCompressionType</a> codec)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../org/apache/orc/impl/HadoopShims.DirectDecompressor.html" title="interface in org.apache.orc.impl">HadoopShims.DirectDecompressor</a></code></td>
<td class="colLast"><span class="typeNameLabel">HadoopShims.</span><code><span class="memberNameLink"><a href="../../../../../org/apache/orc/impl/HadoopShims.html#getDirectDecompressor-org.apache.orc.impl.HadoopShims.DirectCompressionType-">getDirectDecompressor</a></span>(<a href="../../../../../org/apache/orc/impl/HadoopShims.DirectCompressionType.html" title="enum in org.apache.orc.impl">HadoopShims.DirectCompressionType</a> codec)</code>
<div class="block">Get a direct decompressor codec, if it is available</div>
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<h2 title="Uses of Class org.apache.cassandra.cql3.statements.Bound" class="title">Uses of Class<br>org.apache.cassandra.cql3.statements.Bound</h2>
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<div class="classUseContainer">
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<caption><span>Packages that use <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Package</th>
<th class="colLast" scope="col">Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><a href="#org.apache.cassandra.cql3">org.apache.cassandra.cql3</a></td>
<td class="colLast"> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><a href="#org.apache.cassandra.cql3.restrictions">org.apache.cassandra.cql3.restrictions</a></td>
<td class="colLast"> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><a href="#org.apache.cassandra.cql3.statements">org.apache.cassandra.cql3.statements</a></td>
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<li class="blockList">
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<h3>Uses of <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> in <a href="../../../../../../org/apache/cassandra/cql3/package-summary.html">org.apache.cassandra.cql3</a></h3>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../../org/apache/cassandra/cql3/package-summary.html">org.apache.cassandra.cql3</a> with parameters of type <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code>protected <a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html" title="interface in org.apache.cassandra.cql3.restrictions">Restriction</a></code></td>
<td class="colLast"><span class="typeNameLabel">MultiColumnRelation.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/MultiColumnRelation.html#newSliceRestriction-org.apache.cassandra.config.CFMetaData-org.apache.cassandra.cql3.VariableSpecifications-org.apache.cassandra.cql3.statements.Bound-boolean-">newSliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/CFMetaData.html" title="class in org.apache.cassandra.config">CFMetaData</a> cfm,
<a href="../../../../../../org/apache/cassandra/cql3/VariableSpecifications.html" title="class in org.apache.cassandra.cql3">VariableSpecifications</a> boundNames,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>protected abstract <a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html" title="interface in org.apache.cassandra.cql3.restrictions">Restriction</a></code></td>
<td class="colLast"><span class="typeNameLabel">Relation.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/Relation.html#newSliceRestriction-org.apache.cassandra.config.CFMetaData-org.apache.cassandra.cql3.VariableSpecifications-org.apache.cassandra.cql3.statements.Bound-boolean-">newSliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/CFMetaData.html" title="class in org.apache.cassandra.config">CFMetaData</a> cfm,
<a href="../../../../../../org/apache/cassandra/cql3/VariableSpecifications.html" title="class in org.apache.cassandra.cql3">VariableSpecifications</a> boundNames,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive)</code>
<div class="block">Creates a new Slice restriction instance.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>protected <a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html" title="interface in org.apache.cassandra.cql3.restrictions">Restriction</a></code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRelation.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/SingleColumnRelation.html#newSliceRestriction-org.apache.cassandra.config.CFMetaData-org.apache.cassandra.cql3.VariableSpecifications-org.apache.cassandra.cql3.statements.Bound-boolean-">newSliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/CFMetaData.html" title="class in org.apache.cassandra.config">CFMetaData</a> cfm,
<a href="../../../../../../org/apache/cassandra/cql3/VariableSpecifications.html" title="class in org.apache.cassandra.cql3">VariableSpecifications</a> boundNames,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>protected <a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html" title="interface in org.apache.cassandra.cql3.restrictions">Restriction</a></code></td>
<td class="colLast"><span class="typeNameLabel">TokenRelation.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/TokenRelation.html#newSliceRestriction-org.apache.cassandra.config.CFMetaData-org.apache.cassandra.cql3.VariableSpecifications-org.apache.cassandra.cql3.statements.Bound-boolean-">newSliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/CFMetaData.html" title="class in org.apache.cassandra.config">CFMetaData</a> cfm,
<a href="../../../../../../org/apache/cassandra/cql3/VariableSpecifications.html" title="class in org.apache.cassandra.cql3">VariableSpecifications</a> boundNames,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive)</code> </td>
</tr>
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<!-- -->
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<h3>Uses of <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> in <a href="../../../../../../org/apache/cassandra/cql3/restrictions/package-summary.html">org.apache.cassandra.cql3.restrictions</a></h3>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../../org/apache/cassandra/cql3/restrictions/package-summary.html">org.apache.cassandra.cql3.restrictions</a> with parameters of type <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a></code></td>
<td class="colLast"><span class="typeNameLabel">MultiColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/MultiColumnRestriction.SliceRestriction.html#appendBoundTo-org.apache.cassandra.db.MultiCBuilder-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">appendBoundTo</a></span>(<a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a> builder,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a></code></td>
<td class="colLast"><span class="typeNameLabel">Restriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html#appendBoundTo-org.apache.cassandra.db.MultiCBuilder-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">appendBoundTo</a></span>(<a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a> builder,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code>
<div class="block">Appends the values of the <code>Restriction</code> for the specified bound to the specified builder.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a></code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.SliceRestriction.html#appendBoundTo-org.apache.cassandra.db.MultiCBuilder-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">appendBoundTo</a></span>(<a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a> builder,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a></code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.ContainsRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.ContainsRestriction.html#appendBoundTo-org.apache.cassandra.db.MultiCBuilder-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">appendBoundTo</a></span>(<a href="../../../../../../org/apache/cassandra/db/MultiCBuilder.html" title="class in org.apache.cassandra.db">MultiCBuilder</a> builder,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">StatementRestrictions.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/StatementRestrictions.html#areRequestedBoundsInclusive-org.apache.cassandra.cql3.statements.Bound-">areRequestedBoundsInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound)</code>
<div class="block">Checks if the bounds (start or end) of the clustering columns are inclusive.</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>java.util.List<java.nio.ByteBuffer></code></td>
<td class="colLast"><span class="typeNameLabel">TokenRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/TokenRestriction.SliceRestriction.html#bounds-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">bounds</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>java.util.NavigableSet<<a href="../../../../../../org/apache/cassandra/db/Slice.Bound.html" title="class in org.apache.cassandra.db">Slice.Bound</a>></code></td>
<td class="colLast"><span class="typeNameLabel">TokenRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/TokenRestriction.html#boundsAsClustering-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">boundsAsClustering</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>java.util.NavigableSet<<a href="../../../../../../org/apache/cassandra/db/Slice.Bound.html" title="class in org.apache.cassandra.db">Slice.Bound</a>></code></td>
<td class="colLast"><span class="typeNameLabel">StatementRestrictions.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/StatementRestrictions.html#getClusteringColumnsBounds-org.apache.cassandra.cql3.statements.Bound-org.apache.cassandra.cql3.QueryOptions-">getClusteringColumnsBounds</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b,
<a href="../../../../../../org/apache/cassandra/cql3/QueryOptions.html" title="class in org.apache.cassandra.cql3">QueryOptions</a> options)</code>
<div class="block">Returns the bounds (start or end) of the clustering columns.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">MultiColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/MultiColumnRestriction.SliceRestriction.html#hasBound-org.apache.cassandra.cql3.statements.Bound-">hasBound</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">Restriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html#hasBound-org.apache.cassandra.cql3.statements.Bound-">hasBound</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code>
<div class="block">Checks if the specified bound is set or not.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.SliceRestriction.html#hasBound-org.apache.cassandra.cql3.statements.Bound-">hasBound</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.ContainsRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.ContainsRestriction.html#hasBound-org.apache.cassandra.cql3.statements.Bound-">hasBound</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">TokenRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/TokenRestriction.SliceRestriction.html#hasBound-org.apache.cassandra.cql3.statements.Bound-">hasBound</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">MultiColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/MultiColumnRestriction.SliceRestriction.html#isInclusive-org.apache.cassandra.cql3.statements.Bound-">isInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">Restriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/Restriction.html#isInclusive-org.apache.cassandra.cql3.statements.Bound-">isInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code>
<div class="block">Checks if the specified bound is inclusive or not.</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.SliceRestriction.html#isInclusive-org.apache.cassandra.cql3.statements.Bound-">isInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">SingleColumnRestriction.ContainsRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.ContainsRestriction.html#isInclusive-org.apache.cassandra.cql3.statements.Bound-">isInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><span class="typeNameLabel">TokenRestriction.SliceRestriction.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/TokenRestriction.SliceRestriction.html#isInclusive-org.apache.cassandra.cql3.statements.Bound-">isInclusive</a></span>(<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> b)</code> </td>
</tr>
</tbody>
</table>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing constructors, and an explanation">
<caption><span>Constructors in <a href="../../../../../../org/apache/cassandra/cql3/restrictions/package-summary.html">org.apache.cassandra.cql3.restrictions</a> with parameters of type <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colOne" scope="col">Constructor and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/TokenRestriction.SliceRestriction.html#SliceRestriction-org.apache.cassandra.config.CFMetaData-java.util.List-org.apache.cassandra.cql3.statements.Bound-boolean-org.apache.cassandra.cql3.Term-">SliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/CFMetaData.html" title="class in org.apache.cassandra.config">CFMetaData</a> cfm,
java.util.List<<a href="../../../../../../org/apache/cassandra/config/ColumnDefinition.html" title="class in org.apache.cassandra.config">ColumnDefinition</a>> columnDefs,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive,
<a href="../../../../../../org/apache/cassandra/cql3/Term.html" title="interface in org.apache.cassandra.cql3">Term</a> term)</code> </td>
</tr>
<tr class="rowColor">
<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/SingleColumnRestriction.SliceRestriction.html#SliceRestriction-org.apache.cassandra.config.ColumnDefinition-org.apache.cassandra.cql3.statements.Bound-boolean-org.apache.cassandra.cql3.Term-">SliceRestriction</a></span>(<a href="../../../../../../org/apache/cassandra/config/ColumnDefinition.html" title="class in org.apache.cassandra.config">ColumnDefinition</a> columnDef,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive,
<a href="../../../../../../org/apache/cassandra/cql3/Term.html" title="interface in org.apache.cassandra.cql3">Term</a> term)</code> </td>
</tr>
<tr class="altColor">
<td class="colLast"><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/restrictions/MultiColumnRestriction.SliceRestriction.html#SliceRestriction-java.util.List-org.apache.cassandra.cql3.statements.Bound-boolean-org.apache.cassandra.cql3.Term-">SliceRestriction</a></span>(java.util.List<<a href="../../../../../../org/apache/cassandra/config/ColumnDefinition.html" title="class in org.apache.cassandra.config">ColumnDefinition</a>> columnDefs,
<a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> bound,
boolean inclusive,
<a href="../../../../../../org/apache/cassandra/cql3/Term.html" title="interface in org.apache.cassandra.cql3">Term</a> term)</code> </td>
</tr>
</tbody>
</table>
</li>
<li class="blockList"><a name="org.apache.cassandra.cql3.statements">
<!-- -->
</a>
<h3>Uses of <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a> in <a href="../../../../../../org/apache/cassandra/cql3/statements/package-summary.html">org.apache.cassandra.cql3.statements</a></h3>
<table class="useSummary" border="0" cellpadding="3" cellspacing="0" summary="Use table, listing methods, and an explanation">
<caption><span>Methods in <a href="../../../../../../org/apache/cassandra/cql3/statements/package-summary.html">org.apache.cassandra.cql3.statements</a> that return <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></span><span class="tabEnd"> </span></caption>
<tr>
<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
</tr>
<tbody>
<tr class="altColor">
<td class="colFirst"><code><a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></code></td>
<td class="colLast"><span class="typeNameLabel">Bound.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html#reverse--">reverse</a></span>()</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>static <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a></code></td>
<td class="colLast"><span class="typeNameLabel">Bound.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html#valueOf-java.lang.String-">valueOf</a></span>(java.lang.String name)</code>
<div class="block">Returns the enum constant of this type with the specified name.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>static <a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html" title="enum in org.apache.cassandra.cql3.statements">Bound</a>[]</code></td>
<td class="colLast"><span class="typeNameLabel">Bound.</span><code><span class="memberNameLink"><a href="../../../../../../org/apache/cassandra/cql3/statements/Bound.html#values--">values</a></span>()</code>
<div class="block">Returns an array containing the constants of this enum type, in
the order they are declared.</div>
</td>
</tr>
</tbody>
</table>
</li>
</ul>
</li>
</ul>
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| elisska/cloudera-cassandra | DATASTAX_CASSANDRA-3.5.0/javadoc/org/apache/cassandra/cql3/statements/class-use/Bound.html | HTML | apache-2.0 | 31,802 |
<blockquote>
<h2>Master diario</h2>
<h3 id="dailyMasterTitle"></h3>
</blockquote>
<form action="#" method="post" id="Formulary" class="custom">
<h3>1. ELABORACIÓN DEL PRODUCTO DESINFECTANTE.</h3>
<h4>1.1 Datos de los desinfectantes</h4>
<table id="disinfectants" class="table table-striped table-bordered hidden-phone visible-tablet visible-desktop">
<thead>
<tr>
<th>#</th>
<th>Nombre del desinfectante</th>
<th>pH del Agua</th>
<th>Concentración</th>
<th>Unidad</th>
<th><button type="button" class="btn btn-primary"
data-bind="click: addDisinfectant">+</button></th>
</tr>
</thead>
<tbody data-bind="foreach: disinfectantArray">
<tr>
<td width="3%"><b data-bind="text: id"></b></td>
<td width="30%"><input type="text" data-bind="value: name"></td>
<td width="15%"><input class="input-mini" type="number" name="row1col1" id="row1col2"
data-bind="value: ph"></td>
<td width="15%"><input class="input-mini" type="number" name="row1col1" id="row1col3"
data-bind="value: concentration"></td>
<td width="20%"><select class="span1" data-bind="options: $root.decinfectantsMeasures, value: unid.answerVal, optionsText: 'Measure', optionsValue: 'answerVal'"></select></td>
<td width="5%">
<button type="button" class="btn btn-primary"><i class="icon-camera icon-white"></i></button>
</td>
<td width="5%"><button type="button" class="btn btn-danger"
data-bind="click: $root.removeDisinfectant">x</button></td>
</tr>
</tbody>
</table>
<!--Phone version responsive-->
<table id="disinfectants" class="table table-striped table-bordered visible-phone hidden-tablet hidden-desktop">
<thead>
<tr>
<th>#</th>
<th>Datos</th>
<th><button type="button" class="btn btn-primary"
data-bind="click: addDisinfectant">+</button></th>
</tr>
</thead>
<tbody data-bind="foreach: disinfectantArray">
<tr>
<td><b data-bind="text: id"></b></td>
<td><label>Nombre del desinfectante</label></br><input class="input-large" type="text" data-bind="value: name"></br>
<label>pH del Agua</label></br><input class="input-mini" type="number" name="row1col1" id="row1col2"
data-bind="value: ph"></br>
<label>Concentración</label></br><input class="input-mini" type="number" name="row1col1" id="row1col3"
data-bind="value: concentration"></br>
<label>Unidad</label></br><select class="span2" data-bind="options: $root.decinfectantsMeasures, value: unid, optionsText: 'Measure'"></select></td>
<td width="5%">
<button type="button" class="btn btn-primary"
><i class="icon-camera icon-white"></i></button>
</td>
<td><button type="button" class="btn btn-danger"
data-bind="click: $root.removeDisinfectant">x</button></td>
</tr>
</tbody>
</table>
<!--Ends phone version responsive-->
<h3>2. INSPECCIÓN DE LAS INSTALACIONES.</h3>
<p>Conteste “si” ó “no” según corresponda en la inspección
realizada.</p>
<h4>2.1 BAÑOS.</h4>
<table id="restrooms" class="table table-striped table-bordered" width="100%">
<thead>
<tr>
<td bgcolor="#eee" colspan="6">Número de Baño</td>
<td rowspan="6"><button type="button" class="btn btn-primary"
data-bind="click: $root.addRestroom">+</button></td>
</tr>
<tr>
<td bgcolor="#eee"></td>
<td bgcolor="#fff" colspan="5">¿Están limpios y desinfectados
el piso, paredes y techos?</td>
</tr>
<tr>
<td bgcolor="#eee"></td>
<td bgcolor="#fff"></td>
<td colspan="4" bgcolor="#eee">¿Los depósitos de basura están
limpios y vacíos?</td>
</tr>
<tr>
<td bgcolor="#eee"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#eee"></td>
<td colspan="3" bgcolor="#fff">¿Hay toallas para manos y papel
sanitario?</td>
</tr>
<tr>
<td bgcolo%r="#eee"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#eee"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#eee" colspan="2">¿El depósito de Jabón está lleno?</td>
</tr>
<tr>
<td bgcolor="#eee"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#eee"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#eee"></td>
<td bgcolor="#fff">¿Hay agua potable?</td>
</tr>
</thead>
<tbody data-bind="foreach: restroomArray">
<tr>
<td width="3%"><b data-bind="text: restroomRow"></b></td>
<td width="15%"><select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal1.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select></td>
<td width="15%"><select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal2.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select></td>
<td width="15%"><select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal3.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select></td>
<td width="15%"><select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal4.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select></td>
<td width="15%"><select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal5.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select></td>
<td class="centered" width="5%"><button type="button" class="btn btn-primary" data-bind="click: $root.takePhotoRestroom"><i class="icon-camera icon-white"></i></button></td>
<td class="centered" width="5%"><button type="button" data-bind="click: $root.removeRestroom" class="btn btn-danger">x</button></td>
</tr>
</tbody>
</table>
<h4>Fotos de baños</h4>
<table class="table table-striped table-bordered" width="100%">
<thead>
<tr>
<th style="vertical-align: center;">Número de Baño</th>
<th style="vertical-align: center;">Foto</th>
</tr>
</thead>
<tbody data-bind="foreach: restroomArray">
<tr>
<td width="10%"><b data-bind="text: restroomRow"></td>
<td width="90%"><img data-bind="attr: {id: idImageRestroom}"/> </td>
</tr>
</tbody>
</table>
<h4>2.2 Comedores.</h4>
<table class="table table-striped table-bordered" id="canteens" width="100%">
<thead>
<tr>
<td bgcolor="#ddd" colspan="7">Número de comedor</td>
<td rowspan="7"><button type="button" class="btn btn-primary"
data-bind="click: $root.addCanteen">+</button></td>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff" colspan="6">¿Están limpios y desinfectados
el piso, paredes y techos?</TD>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td colspan="5" bgcolor="#ddd">¿Los depósitos de basura están
limpios vacíos?</td>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td colspan="4" bgcolor="#fff">¿Hay toallas/servilletas para
manos?</td>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td colspan="3" bgcolor="#ddd">¿El mobiliario y lockers están
limpios y ordenados?</td>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff" colspan="2">¿Hay agua para beber y vasos
desechables?</td>
</tr>
<tr>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd"></td>
<td bgcolor="#fff"></td>
<td bgcolor="#ddd">¿La tarja para lavar trastes
está limpia y ordenada?</td>
</tr>
</thead>
<tbody data-bind="foreach: canteenArray">
<tr>
<td width="3%"><b data-bind="text: canteenRow"></b></td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal6.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal7.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal8.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal9.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal10.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td width="11.1%">
<select class="span1"
data-bind="options: $root.availableAnswers, value: answerVal11.answerVal, optionsText: 'answerText', optionsValue: 'answerVal'">
</select>
</td>
<td class="centered" width="5%"><button type="button" class="btn btn-primary"
data-bind="click: $root.takePhotoCan"><i class="icon-camera icon-white"></i></button></td>
<td class="centered" width="5%"><button type="button"
data-bind="click: $root.removeCanteen" class="btn btn-danger">x</button></td>
</tr>
</tbody>
</table>
<h4>Fotos de Comedores</h4>
<table class="table table-striped table-bordered" width="100%">
<thead>
<tr>
<th style="vertical-align: center;">Número de comedor</th>
<th style="vertical-align: center;">Foto</i></th>
</tr>
</thead>
<tbody data-bind="foreach: canteenArray">
<tr>
<td width="10%"><b data-bind="text: canteenRow"></b></td>
<td width="90%"><img data-bind="attr: {id: idImageCanteen}"/> </td>
</tr>
</tbody>
</table>
</form>
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<div class="subTitle">com.hp.hpl.jena.rdf.model</div>
<h2 title="Class AnonId" class="title">Class AnonId</h2>
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<pre>public class <span class="strong">AnonId</span>
extends <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a></pre>
<div class="block">Create a new id for an anonymous node.
<p>This id is guaranteed to be unique on this machine.</p></div>
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<th class="colOne" scope="col">Constructor and Description</th>
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<tr class="altColor">
<td class="colOne"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#AnonId()">AnonId</a></strong>()</code>
<div class="block">Creates new AnonId.</div>
</td>
</tr>
<tr class="rowColor">
<td class="colOne"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#AnonId(java.lang.String)">AnonId</a></strong>(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> id)</code>
<div class="block">Create a new AnonId from the string argument supplied</div>
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<th class="colFirst" scope="col">Modifier and Type</th>
<th class="colLast" scope="col">Method and Description</th>
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<td class="colFirst"><code>static <a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html" title="class in com.hp.hpl.jena.rdf.model">AnonId</a></code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#create()">create</a></strong>()</code> </td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code>static <a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html" title="class in com.hp.hpl.jena.rdf.model">AnonId</a></code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#create(java.lang.String)">create</a></strong>(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> id)</code> </td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>boolean</code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#equals(java.lang.Object)">equals</a></strong>(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a> o)</code>
<div class="block">Test whether two id's are the same</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a></code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#getLabelString()">getLabelString</a></strong>()</code>
<div class="block">Answer the label string of this AnonId.</div>
</td>
</tr>
<tr class="altColor">
<td class="colFirst"><code>int</code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#hashCode()">hashCode</a></strong>()</code>
<div class="block">return a hashcode for this id</div>
</td>
</tr>
<tr class="rowColor">
<td class="colFirst"><code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a></code></td>
<td class="colLast"><code><strong><a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html#toString()">toString</a></strong>()</code>
<div class="block">return a string representation of the id</div>
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<h3>Methods inherited from class java.lang.<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a></h3>
<code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#getClass()" title="class or interface in java.lang">getClass</a>, <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#notify()" title="class or interface in java.lang">notify</a>, <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#notifyAll()" title="class or interface in java.lang">notifyAll</a>, <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#wait()" title="class or interface in java.lang">wait</a>, <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#wait(long)" title="class or interface in java.lang">wait</a>, <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#wait(long, int)" title="class or interface in java.lang">wait</a></code></li>
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<h3>Constructor Detail</h3>
<a name="AnonId()">
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<h4>AnonId</h4>
<pre>public AnonId()</pre>
<div class="block">Creates new AnonId. Normally this id is guaranteed to be unique on this
machine: it is time-dependant. However, sometimes [incorrect] code is
sensitive to bnode ordering and produces bizarre bugs. Hence the
disableBNodeUIDGeneration flag, which allows bnode IDs to be predictable.</div>
</li>
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<a name="AnonId(java.lang.String)">
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<h4>AnonId</h4>
<pre>public AnonId(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> id)</pre>
<div class="block">Create a new AnonId from the string argument supplied</div>
<dl><dt><span class="strong">Parameters:</span></dt><dd><code>id</code> - A string representation of the id to be created.</dd></dl>
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<h4>create</h4>
<pre>public static <a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html" title="class in com.hp.hpl.jena.rdf.model">AnonId</a> create()</pre>
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<h4>create</h4>
<pre>public static <a href="../../../../../../com/hp/hpl/jena/rdf/model/AnonId.html" title="class in com.hp.hpl.jena.rdf.model">AnonId</a> create(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> id)</pre>
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<h4>equals</h4>
<pre>public boolean equals(<a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a> o)</pre>
<div class="block">Test whether two id's are the same</div>
<dl>
<dt><strong>Overrides:</strong></dt>
<dd><code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#equals(java.lang.Object)" title="class or interface in java.lang">equals</a></code> in class <code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a></code></dd>
<dt><span class="strong">Parameters:</span></dt><dd><code>o</code> - the object to be compared</dd>
<dt><span class="strong">Returns:</span></dt><dd>true if and only if the two id's are the same</dd></dl>
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<h4>toString</h4>
<pre>public <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> toString()</pre>
<div class="block">return a string representation of the id</div>
<dl>
<dt><strong>Overrides:</strong></dt>
<dd><code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#toString()" title="class or interface in java.lang">toString</a></code> in class <code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a></code></dd>
<dt><span class="strong">Returns:</span></dt><dd>a string representation of the id</dd></dl>
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<a name="getLabelString()">
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<h4>getLabelString</h4>
<pre>public <a href="http://docs.oracle.com/javase/6/docs/api/java/lang/String.html?is-external=true" title="class or interface in java.lang">String</a> getLabelString()</pre>
<div class="block">Answer the label string of this AnonId. To be used in preference to
toString().</div>
</li>
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<a name="hashCode()">
<!-- -->
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<li class="blockList">
<h4>hashCode</h4>
<pre>public int hashCode()</pre>
<div class="block">return a hashcode for this id</div>
<dl>
<dt><strong>Overrides:</strong></dt>
<dd><code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true#hashCode()" title="class or interface in java.lang">hashCode</a></code> in class <code><a href="http://docs.oracle.com/javase/6/docs/api/java/lang/Object.html?is-external=true" title="class or interface in java.lang">Object</a></code></dd>
<dt><span class="strong">Returns:</span></dt><dd>the hash code</dd></dl>
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| chinhnc/floodlight | lib/apache-jena-2.10.1/javadoc-core/com/hp/hpl/jena/rdf/model/AnonId.html | HTML | apache-2.0 | 16,738 |
<!DOCTYPE html>
<html>
<meta charset="UTF-8">
<head>
<title>Topic 19 -- Abstracts with Biological Entities (English) - 75 Topics</title>
<style>
table {
font-family: "Trebuchet MS", Arial, Helvetica, sans-serif;
border-collapse: collapse;
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<h2>Topic 19 -- Abstracts with Biological Entities (English) - 75 Topics</h2>
<table border="1" class="dataframe">
<thead>
<tr style="text-align: right;">
<th></th>
<th>cite ad</th>
<th>title</th>
<th>authors</th>
<th>publish year</th>
<th>publish time</th>
<th>dataset</th>
<th>abstract mentions covid</th>
<th>pmcid</th>
<th>pubmed id</th>
<th>doi</th>
<th>cord uid</th>
<th>topic weight</th>
<th>Similarity scispacy</th>
<th>Similarity specter</th>
</tr>
</thead>
<tbody>
<tr>
<th id="ywjk962a";>1</th>
<td>Tajima_2011</td>
<td>A long-distance RNA–RNA interaction plays an important role in programmed −1 ribosomal frameshifting in the translation of p88 replicase protein of Red clover necrotic mosaic virus</td>
<td>Tajima, Yuri; Iwakawa, Hiro-oki; Kaido, Masanori; Mise, Kazuyuki; Okuno, Tetsuro</td>
<td>2011</td>
<td>2011-08-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111920" target="_blank">PMC7111920</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21703656.0" target="_blank">21703656.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2011.05.012" target="_blank">10.1016/j.virol.2011.05.012</a></td>
<td>ywjk962a</td>
<td>0.962745</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
</tr>
<tr>
<th id="nshwzkir";>2</th>
<td>Honigman_1991</td>
<td>cis acting RNA sequences control the gag-pol translation readthrough in murine leukemia virus</td>
<td>Honigman, Alik; Wolf, Dana; Yaish, Shoshanit; Falk, Haya; Panet, Amos</td>
<td>1991</td>
<td>1991-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131665" target="_blank">PMC7131665</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2053284.0" target="_blank">2053284.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90144-z" target="_blank">10.1016/0042-6822(91)90144-z</a></td>
<td>nshwzkir</td>
<td>0.953423</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td></td>
</tr>
<tr>
<th id="431pyuzu";>3</th>
<td>Farabaugh_1993</td>
<td>A novel programed frameshift expresses the POL3 gene of retrotransposon Ty3 of yeast: Frameshifting without tRNA slippage</td>
<td>Farabaugh, Philip J.; Zhao, Hong; Vimaladithan, Arunachalam</td>
<td>1993</td>
<td>1993-07-16</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8267715.0" target="_blank">8267715.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(93)90297-4" target="_blank">10.1016/0092-8674(93)90297-4</a></td>
<td>431pyuzu</td>
<td>0.930423</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#nshwzkir">Honigman_1991</a></td>
<td></td>
</tr>
<tr>
<th id="wqy89i4v";>4</th>
<td>Hatfield_1990</td>
<td>The where, what and how of ribosomal frameshifting in retroviral protein synthesis</td>
<td>Hatfield, Dolph; Oroszlan, Stephen</td>
<td>1990</td>
<td>1990-05-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2193436.0" target="_blank">2193436.0</a></td>
<td><a href="https://doi.org/10.1016/0968-0004(90)90159-9" target="_blank">10.1016/0968-0004(90)90159-9</a></td>
<td>wqy89i4v</td>
<td>0.928923</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
</tr>
<tr>
<th id="0u62j7nj";>5</th>
<td>Okamoto_2008</td>
<td>cis-Preferential requirement of a −1 frameshift product p88 for the replication of Red clover necrotic mosaic virus RNA1</td>
<td>Okamoto, Kimiyuki; Nagano, Hideaki; Iwakawa, Hirooki; Mizumoto, Hiroyuki; Takeda, Atsushi; Kaido, Masanori; Mise, Kazuyuki; Okuno, Tetsuro</td>
<td>2008</td>
<td>2008-05-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7103404" target="_blank">PMC7103404</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18308359.0" target="_blank">18308359.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2008.02.004" target="_blank">10.1016/j.virol.2008.02.004</a></td>
<td>0u62j7nj</td>
<td>0.924173</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ppjohov8";>6</th>
<td>Pillai-Nair_2003</td>
<td>Cis-acting Regulatory Elements in the Potato Virus X 3′ Non-translated Region Differentially Affect Minus-strand and Plus-strand RNA Accumulation</td>
<td>Pillai-Nair, Neeta; Kim, Kook-Hyung; Hemenway, Cynthia</td>
<td>2003</td>
<td>2003-02-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126608" target="_blank">PMC7126608</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12581634.0" target="_blank">12581634.0</a></td>
<td><a href="https://doi.org/10.1016/s0022-2836(02)01369-4" target="_blank">10.1016/s0022-2836(02)01369-4</a></td>
<td>ppjohov8</td>
<td>0.920279</td>
<td><a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a></td>
<td></td>
</tr>
<tr>
<th id="kjet3e50";>7</th>
<td>Lin_Z_2012</td>
<td>Spacer-length dependence of programmed −1 or −2 ribosomal frameshifting on a U(6)A heptamer supports a role for messenger RNA (mRNA) tension in frameshifting</td>
<td>Lin, Zhaoru; Gilbert, Robert J. C.; Brierley, Ian</td>
<td>2012</td>
<td>2012-06-28</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3458567" target="_blank">PMC3458567</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22743270.0" target="_blank">22743270.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gks629" target="_blank">10.1093/nar/gks629</a></td>
<td>kjet3e50</td>
<td>0.919744</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="5i3g2zb7";>8</th>
<td>Brierley_1989</td>
<td>Characterization of an efficient coronavirus ribosomal frameshifting signal: Requirement for an RNA pseudoknot</td>
<td>Brierley, Ian; Digard, Paul; Inglis, Stephen C.</td>
<td>1989</td>
<td>1989-05-19</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133225" target="_blank">PMC7133225</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2720781.0" target="_blank">2720781.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(89)90124-4" target="_blank">10.1016/0092-8674(89)90124-4</a></td>
<td>5i3g2zb7</td>
<td>0.903018</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#7ots8npg">Su_M_2005</a></td>
</tr>
<tr>
<th id="kkkjl0le";>9</th>
<td>Jacks_1988</td>
<td>Signals for ribosomal frameshifting in the rous sarcoma virus gag-pol region</td>
<td>Jacks, Tyler; Madhani, Hiten D.; Masiarz, Frank R.; Varmus, Harold E.</td>
<td>1988</td>
<td>1988-11-04</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133365" target="_blank">PMC7133365</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2846182.0" target="_blank">2846182.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(88)90031-1" target="_blank">10.1016/0092-8674(88)90031-1</a></td>
<td>kkkjl0le</td>
<td>0.897770</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nshwzkir">Honigman_1991</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
</tr>
<tr>
<th id="m76ls89z";>10</th>
<td>Pasternak_2004</td>
<td>Regulation of Relative Abundance of Arterivirus Subgenomic mRNAs</td>
<td>Pasternak, Alexander O.; Spaan, Willy J. M.; Snijder, Eric J.</td>
<td>2004</td>
<td>2004-07-14</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC446141" target="_blank">PMC446141</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15254182.0" target="_blank">15254182.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.78.15.8102-8113.2004" target="_blank">10.1128/jvi.78.15.8102-8113.2004</a></td>
<td>m76ls89z</td>
<td>0.886835</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td></td>
</tr>
<tr>
<th id="xk4yuibj";>11</th>
<td>Belcourt_1990</td>
<td>Ribosomal frameshifting in the yeast retrotransposon Ty: tRNAs induce slippage on a 7 nucleotide minimal site</td>
<td>Belcourt, Michael F.; Farabaugh, Philip J.</td>
<td>1990</td>
<td>1990-07-27</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133245" target="_blank">PMC7133245</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2164889.0" target="_blank">2164889.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(90)90371-k" target="_blank">10.1016/0092-8674(90)90371-k</a></td>
<td>xk4yuibj</td>
<td>0.885412</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a></td>
</tr>
<tr>
<th id="7fx1ghd3";>12</th>
<td>Morikawa_1992</td>
<td>Identification and analysis of the gag-pol ribosomal frameshift site of feline immunodeficiency virus</td>
<td>Morikawa, Shigeru; Bishop, David H.L.</td>
<td>1992</td>
<td>1992-02-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131530" target="_blank">PMC7131530</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1310175.0" target="_blank">1310175.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90004-9" target="_blank">10.1016/0042-6822(92)90004-9</a></td>
<td>7fx1ghd3</td>
<td>0.880734</td>
<td><a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="sfue9fdb";>13</th>
<td>Nagy_1998</td>
<td>Dissecting RNA recombination in vitro: role of RNA sequences and the viral replicase.</td>
<td>Nagy, P D; Zhang, C; Simon, A E</td>
<td>1998</td>
<td>1998-04-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1170582" target="_blank">PMC1170582</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9545250.0" target="_blank">9545250.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/17.8.2392" target="_blank">10.1093/emboj/17.8.2392</a></td>
<td>sfue9fdb</td>
<td>0.875604</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="7xkj27ph";>14</th>
<td>Lai_M_2005</td>
<td>Coronavirus leader‐RNA‐primed transcription: An alternative mechanism to RNA splicing</td>
<td>Lai, Michael M. C.</td>
<td>2005</td>
<td>2005-02-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7161880" target="_blank">PMC7161880</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3551939.0" target="_blank">3551939.0</a></td>
<td><a href="https://doi.org/10.1002/bies.950050606" target="_blank">10.1002/bies.950050606</a></td>
<td>7xkj27ph</td>
<td>0.871193</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="i0zym7iq";>15</th>
<td>van_Vliet_2002</td>
<td>Discontinuous and non-discontinuous subgenomic RNA transcription in a nidovirus</td>
<td>van Vliet, A.L.W.; Smits, S.L.; Rottier, P.J.M.; de Groot, R.J.</td>
<td>2002</td>
<td>2002-12-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC136939" target="_blank">PMC136939</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12456663.0" target="_blank">12456663.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/cdf635" target="_blank">10.1093/emboj/cdf635</a></td>
<td>i0zym7iq</td>
<td>0.869523</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="xq1dxmb9";>16</th>
<td>KRISHNAN_1996</td>
<td>Tandem Placement of a Coronavirus Promoter Results in Enhanced mRNA Synthesis from the Downstream-Most Initiation Site</td>
<td>KRISHNAN, RAJESH; CHANG, RUEY-YI; BRIAN, DAVID A.</td>
<td>1996</td>
<td>1996-04-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130602" target="_blank">PMC7130602</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8610468.0" target="_blank">8610468.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1996.0210" target="_blank">10.1006/viro.1996.0210</a></td>
<td>xq1dxmb9</td>
<td>0.866085</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a></td>
<td></td>
</tr>
<tr>
<th id="ppb9k3zu";>17</th>
<td>Kang_1998</td>
<td>Direct structural evidence for formation of a stem-loop structure involved in ribosomal frameshifting in human immunodeficiency virus type 1 1 Kumho Life and Environmental Science Laboratory Publication No. 8. 1</td>
<td>Kang, Hunseung</td>
<td>1998</td>
<td>1998-04-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7148724" target="_blank">PMC7148724</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9545540.0" target="_blank">9545540.0</a></td>
<td><a href="https://doi.org/10.1016/s0167-4781(98)00004-9" target="_blank">10.1016/s0167-4781(98)00004-9</a></td>
<td>ppb9k3zu</td>
<td>0.865274</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="gu9ptt9y";>18</th>
<td>White_1991</td>
<td>Defective RNAs of clover yellow mosaic virus encode nonstructural/coat protein fusion products</td>
<td>White, K.Andrew; Brancroft, J.B.; Mackie, George A.</td>
<td>1991</td>
<td>1991-08-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130666" target="_blank">PMC7130666</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1830181.0" target="_blank">1830181.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90977-j" target="_blank">10.1016/0042-6822(91)90977-j</a></td>
<td>gu9ptt9y</td>
<td>0.865042</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="xgwbl8em";>19</th>
<td>Henderson_2006</td>
<td>Antisense-induced ribosomal frameshifting</td>
<td>Henderson, Clark M.; Anderson, Christine B.; Howard, Michael T.</td>
<td>2006</td>
<td>2006-08-18</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1616946" target="_blank">PMC1616946</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16920740.0" target="_blank">16920740.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl531" target="_blank">10.1093/nar/gkl531</a></td>
<td>xgwbl8em</td>
<td>0.861321</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
</tr>
<tr>
<th id="lnagg1uw";>20</th>
<td>Johnson_2003</td>
<td>Sequence elements controlling expression of Barley stripe mosaic virus subgenomic RNAs in vivo</td>
<td>Johnson, Jennifer A; Bragg, Jennifer N; Lawrence, Diane M; Jackson, Andrew O</td>
<td>2003</td>
<td>2003-08-15</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12951022.0" target="_blank">12951022.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(03)00285-x" target="_blank">10.1016/s0042-6822(03)00285-x</a></td>
<td>lnagg1uw</td>
<td>0.859215</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#ec1uq448">Bencun_2018</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td></td>
</tr>
<tr>
<th id="zjufx4fo";>21</th>
<td>Pasternak_2001</td>
<td>Sequence requirements for RNA strand transfer during nidovirus discontinuous subgenomic RNA synthesis</td>
<td>Pasternak, Alexander O.; van den Born, Erwin; Spaan, Willy J.M.; Snijder, Eric J.</td>
<td>2001</td>
<td>2001-12-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC125340" target="_blank">PMC125340</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11742998.0" target="_blank">11742998.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/20.24.7220" target="_blank">10.1093/emboj/20.24.7220</a></td>
<td>zjufx4fo</td>
<td>0.855391</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#7xkj27ph">Lai_M_2005</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="f0smw5j0";>22</th>
<td>Sekine_1992</td>
<td>DNA sequences required for translational frameshifting in production of the transposase encoded by IS 1</td>
<td>Sekine, Yasuhiko; Ohtsubo, Eiichi</td>
<td>1992</td>
<td>1992-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088269" target="_blank">PMC7088269</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1334530.0" target="_blank">1334530.0</a></td>
<td><a href="https://doi.org/10.1007/bf00279377" target="_blank">10.1007/bf00279377</a></td>
<td>f0smw5j0</td>
<td>0.854144</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#fwav40fv">Sekine_1992</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a></td>
</tr>
<tr>
<th id="57jwhbcv";>23</th>
<td>Yeh_P_2014</td>
<td>Identification of Cis-Acting Elements on Positive-Strand Subgenomic mRNA Required for the Synthesis of Negative-Strand Counterpart in Bovine Coronavirus</td>
<td>Yeh, Po-Yuan; Wu, Hung-Yi</td>
<td>2014</td>
<td>2014-07-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4147681" target="_blank">PMC4147681</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25080125.0" target="_blank">25080125.0</a></td>
<td><a href="https://doi.org/10.3390/v6082938" target="_blank">10.3390/v6082938</a></td>
<td>57jwhbcv</td>
<td>0.848408</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a></td>
<td><a href="Topic_19.html#q4cs2h29">Liao_2014</a></td>
</tr>
<tr>
<th id="wsdda43u";>24</th>
<td>Senanayake_1997</td>
<td>Bovine coronavirus I protein synthesis follows ribosomal scanning on the bicistronic N mRNA</td>
<td>Senanayake, Savithra D.; Brian, David A.</td>
<td>1997</td>
<td>1997-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134031" target="_blank">PMC7134031</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9140198.0" target="_blank">9140198.0</a></td>
<td><a href="https://doi.org/10.1016/s0168-1702(96)01423-2" target="_blank">10.1016/s0168-1702(96)01423-2</a></td>
<td>wsdda43u</td>
<td>0.845001</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="1pwa6zsk";>25</th>
<td>Miller_2009</td>
<td>Ribosomal Frameshifting in Decoding Plant Viral RNAs</td>
<td>Miller, W. Allen; Giedroc, David P.</td>
<td>2009</td>
<td>2009-07-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122378" target="_blank">PMC7122378</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-0-387-89382-2_9" target="_blank">10.1007/978-0-387-89382-2_9</a></td>
<td>1pwa6zsk</td>
<td>0.840304</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="0yp4c4ks";>26</th>
<td>Banerjee_2001</td>
<td>Enhanced Accumulation of Coronavirus Defective Interfering RNA from Expressed Negative-Strand Transcripts by Coexpressed Positive-Strand RNA Transcripts</td>
<td>Banerjee, Sangeeta; Repass, John F.; Makino, Shinji</td>
<td>2001</td>
<td>2001-09-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133719" target="_blank">PMC7133719</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11531407.0" target="_blank">11531407.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2001.1047" target="_blank">10.1006/viro.2001.1047</a></td>
<td>0yp4c4ks</td>
<td>0.835227</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="6z7rt5dd";>27</th>
<td>Wang_2006</td>
<td>Identification of Hepta- and Octo-Uridine stretches as sole signals for programmed +1 and −1 ribosomal frameshifting during translation of SARS-CoV ORF 3a variants</td>
<td>Wang, Xiaoxing; Wong, Sek-Man; Liu, D. X.</td>
<td>2006</td>
<td>2006-02-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1383626" target="_blank">PMC1383626</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16500894.0" target="_blank">16500894.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl017" target="_blank">10.1093/nar/gkl017</a></td>
<td>6z7rt5dd</td>
<td>0.830872</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_10.html#c8qcjve9">Faaberg_1996</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="giea69b5";>28</th>
<td>Firth_2009</td>
<td>A case for a CUG-initiated coding sequence overlapping torovirus ORF1a and encoding a novel 30 kDa product</td>
<td>Firth, Andrew E; Atkins, John F</td>
<td>2009</td>
<td>2009-09-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2749830" target="_blank">PMC2749830</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19737402.0" target="_blank">19737402.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-6-136" target="_blank">10.1186/1743-422x-6-136</a></td>
<td>giea69b5</td>
<td>0.830629</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td></td>
</tr>
<tr>
<th id="nnoni7qb";>29</th>
<td>Huang_2018</td>
<td>mRNA-Mediated Duplexes Play Dual Roles in the Regulation of Bidirectional Ribosomal Frameshifting</td>
<td>Huang, Wan-Ping; Cho, Che-Pei; Chang, Kung-Yao</td>
<td>2018</td>
<td>2018-12-04</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321510" target="_blank">PMC6321510</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30518074.0" target="_blank">30518074.0</a></td>
<td><a href="https://doi.org/10.3390/ijms19123867" target="_blank">10.3390/ijms19123867</a></td>
<td>nnoni7qb</td>
<td>0.827661</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#987dhnf7">Cho_C_2013</a>, <a href="Topic_19.html#7ots8npg">Su_M_2005</a></td>
</tr>
<tr>
<th id="jl3pf4ko";>30</th>
<td>Markoff_2003</td>
<td>5′- and 3′-noncoding regions in flavivirus RNA</td>
<td>Markoff, Lewis</td>
<td>2003</td>
<td>2003-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7119107" target="_blank">PMC7119107</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/14696330.0" target="_blank">14696330.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(03)59006-6" target="_blank">10.1016/s0065-3527(03)59006-6</a></td>
<td>jl3pf4ko</td>
<td>0.822700</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="3wta8lms";>31</th>
<td>Scott_1989</td>
<td>Detailed structural analysis of a genome rearrangement in bovine rotavirus</td>
<td>Scott, G.E.; Tarlow, O.; McCrae, M.A.</td>
<td>1989</td>
<td>1989-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133935" target="_blank">PMC7133935</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2558459.0" target="_blank">2558459.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(89)90033-6" target="_blank">10.1016/0168-1702(89)90033-6</a></td>
<td>3wta8lms</td>
<td>0.817971</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="cssgzvus";>32</th>
<td>Sivakumaran_1999</td>
<td>RNA sequence and secondary structural determinants in a minimal viral promoter that directs replicase recognition and initiation of genomic plus-strand RNA synthesis 1 1 Edited by D. E. Draper</td>
<td>Sivakumaran, K; Kim, Chul-Hyun; Tayon, Robert; Kao, C.Cheng</td>
<td>1999</td>
<td>1999-12-03</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10610788.0" target="_blank">10610788.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1999.3297" target="_blank">10.1006/jmbi.1999.3297</a></td>
<td>cssgzvus</td>
<td>0.817124</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td></td>
</tr>
<tr>
<th id="69gftii4";>33</th>
<td>Cobucci-Ponzano_2006</td>
<td>The gene of an archaeal α-l-fucosidase is expressed by translational frameshifting</td>
<td>Cobucci-Ponzano, Beatrice; Conte, Fiorella; Benelli, Dario; Londei, Paola; Flagiello, Angela; Monti, Maria; Pucci, Piero; Rossi, Mosè; Moracci, Marco</td>
<td>2006</td>
<td>2006-08-18</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1616953" target="_blank">PMC1616953</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16920738.0" target="_blank">16920738.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl574" target="_blank">10.1093/nar/gkl574</a></td>
<td>69gftii4</td>
<td>0.816990</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#6z7rt5dd">Wang_2006</a></td>
</tr>
<tr>
<th id="jtn417z6";>34</th>
<td>Chen_2013</td>
<td>Maintaining the structural integrity of the bamboo mosaic virus 3′ untranslated region is necessary for retaining the catalytic constant for minus-strand RNA synthesis</td>
<td>Chen, I-Hsuan; Chu, Chiu-Heiu; Lin, Jen-Wen; Hsu, Yau-Heiu; Tsai, Ching-Hsiu</td>
<td>2013</td>
<td>2013-06-24</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3720222" target="_blank">PMC3720222</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23800142.0" target="_blank">23800142.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-10-208" target="_blank">10.1186/1743-422x-10-208</a></td>
<td>jtn417z6</td>
<td>0.816079</td>
<td><a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="9rs5n1ik";>35</th>
<td>Marczinke_1998</td>
<td>Secondary structure and mutational analysis of the ribosomal frameshift signal of rous sarcoma virus 1 1 Edited by D. E. Draper</td>
<td>Marczinke, Beate; Fisher, Rosamond; Vidakovic, Marijana; Bloys, Alison J; Brierley, Ian</td>
<td>1998</td>
<td>1998-11-27</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126186" target="_blank">PMC7126186</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9813113.0" target="_blank">9813113.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1998.2186" target="_blank">10.1006/jmbi.1998.2186</a></td>
<td>9rs5n1ik</td>
<td>0.815480</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="8gnn6l4b";>36</th>
<td>Chou_2009</td>
<td>An intermolecular RNA triplex provides insight into structural determinants for the pseudoknot stimulator of −1 ribosomal frameshifting</td>
<td>Chou, Ming-Yuan; Chang, Kung-Yao</td>
<td>2009</td>
<td>2009-12-08</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2836554" target="_blank">PMC2836554</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20007152.0" target="_blank">20007152.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkp1107" target="_blank">10.1093/nar/gkp1107</a></td>
<td>8gnn6l4b</td>
<td>0.815393</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a></td>
<td><a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="987dhnf7";>37</th>
<td>Cho_C_2013</td>
<td>Regulation of Programmed Ribosomal Frameshifting by Co-Translational Refolding RNA Hairpins</td>
<td>Cho, Che-Pei; Lin, Szu-Chieh; Chou, Ming-Yuan; Hsu, Hsiu-Ting; Chang, Kung-Yao</td>
<td>2013</td>
<td>2013-04-29</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3639245" target="_blank">PMC3639245</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23638024.0" target="_blank">23638024.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0062283" target="_blank">10.1371/journal.pone.0062283</a></td>
<td>987dhnf7</td>
<td>0.810406</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="vyo8l14p";>38</th>
<td>Chen_2013</td>
<td>Characterization of the polyadenylation activity in a replicase complex from Bamboo mosaic virus-infected Nicotiana benthamiana plants</td>
<td>Chen, I-Hsuan; Cheng, Jai-Hong; Huang, Ying-Wen; Lin, Na-Sheng; Hsu, Yau-Heiu; Tsai, Ching-Hsiu</td>
<td>2013</td>
<td>2013-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111917" target="_blank">PMC7111917</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23768785.0" target="_blank">23768785.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2013.05.032" target="_blank">10.1016/j.virol.2013.05.032</a></td>
<td>vyo8l14p</td>
<td>0.810264</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#jtn417z6">Chen_2013</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="ee7q7jhv";>39</th>
<td>Powell_2011</td>
<td>Further Characterisation of the Translational Termination-Reinitiation Signal of the Influenza B Virus Segment 7 RNA</td>
<td>Powell, Michael L.; Leigh, Kendra E.; Pöyry, Tuija A. A.; Jackson, Richard J.; Brown, T. David K.; Brierley, Ian</td>
<td>2011</td>
<td>2011-02-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3035654" target="_blank">PMC3035654</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21347434.0" target="_blank">21347434.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0016822" target="_blank">10.1371/journal.pone.0016822</a></td>
<td>ee7q7jhv</td>
<td>0.809412</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#2xvd5ogf">Napthine_2009</a></td>
</tr>
<tr>
<th id="wifs97yy";>40</th>
<td>Yu_C_2011</td>
<td>Stem–loop structures can effectively substitute for an RNA pseudoknot in −1 ribosomal frameshifting</td>
<td>Yu, Chien-Hung; Noteborn, Mathieu H.; Pleij, Cornelis W. A.; Olsthoorn, René C. L.</td>
<td>2011</td>
<td>2011-07-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3203594" target="_blank">PMC3203594</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21803791.0" target="_blank">21803791.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr579" target="_blank">10.1093/nar/gkr579</a></td>
<td>wifs97yy</td>
<td>0.808438</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#8gnn6l4b">Chou_2009</a>, <a href="Topic_19.html#n7o7x9ta">Cornish_2006</a></td>
</tr>
<tr>
<th id="o360an6f";>41</th>
<td>Nagy_1999</td>
<td>RNA elements required for RNA recombination function as replication enhancers in vitro and in vivo in a plus‐strand RNA virus</td>
<td>Nagy, Peter D.; Pogany, Judit; Simon, Anne E.</td>
<td>1999</td>
<td>1999-10-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1171632" target="_blank">PMC1171632</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10523308.0" target="_blank">10523308.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/18.20.5653" target="_blank">10.1093/emboj/18.20.5653</a></td>
<td>o360an6f</td>
<td>0.806577</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="7t9e6xgu";>42</th>
<td>Tamm_2009</td>
<td>Stem-loop structure of Cocksfoot mottle virus RNA is indispensable for programmed −1 ribosomal frameshifting</td>
<td>Tamm, Tiina; Suurväli, Jaanus; Lucchesi, Jimmy; Olspert, Allan; Truve, Erkki</td>
<td>2009</td>
<td>2009-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114514" target="_blank">PMC7114514</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19748532.0" target="_blank">19748532.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2009.09.002" target="_blank">10.1016/j.virusres.2009.09.002</a></td>
<td>7t9e6xgu</td>
<td>0.806272</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="7ots8npg";>43</th>
<td>Su_M_2005</td>
<td>An atypical RNA pseudoknot stimulator and an upstream attenuation signal for −1 ribosomal frameshifting of SARS coronavirus</td>
<td>Su, Mei-Chi; Chang, Chung-Te; Chu, Chiu-Hui; Tsai, Ching-Hsiu; Chang, Kung-Yao</td>
<td>2005</td>
<td>2005-07-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1182165" target="_blank">PMC1182165</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16055920.0" target="_blank">16055920.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gki731" target="_blank">10.1093/nar/gki731</a></td>
<td>7ots8npg</td>
<td>0.803615</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a></td>
</tr>
<tr>
<th id="v1hbust8";>44</th>
<td>Sztuba-Solińska_2012</td>
<td>Mutations in the coat protein-binding cis-acting RNA motifs debilitate RNA recombination of Brome mosaic virus</td>
<td>Sztuba-Solińska, Joanna; Fanning, Sean W.; Horn, James R.; Bujarski, Jozef J.</td>
<td>2012</td>
<td>2012-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114393" target="_blank">PMC7114393</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23079110.0" target="_blank">23079110.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2012.10.001" target="_blank">10.1016/j.virusres.2012.10.001</a></td>
<td>v1hbust8</td>
<td>0.800811</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="a84pcc9z";>45</th>
<td>Edwards_1992</td>
<td>RNA recombination in the genome of Barley stripe mosaic virus</td>
<td>Edwards, M.C.; Petty, I.T.D.; Jackson, A.O.</td>
<td>1992</td>
<td>1992-07-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1604824.0" target="_blank">1604824.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90722-2" target="_blank">10.1016/0042-6822(92)90722-2</a></td>
<td>a84pcc9z</td>
<td>0.800593</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_37.html#402ls2aq">Endoh_2005</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a></td>
<td></td>
</tr>
<tr>
<th id="0m32ecnu";>46</th>
<td>Napthine_2003</td>
<td>Prokaryotic-style frameshifting in a plant translation system: conservation of an unusual single-tRNA slippage event</td>
<td>Napthine, Sawsan; Vidakovic, Marijana; Girnary, Roseanne; Namy, Olivier; Brierley, Ian</td>
<td>2003</td>
<td>2003-08-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC169038" target="_blank">PMC169038</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12881428.0" target="_blank">12881428.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/cdg365" target="_blank">10.1093/emboj/cdg365</a></td>
<td>0m32ecnu</td>
<td>0.789691</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a></td>
<td><a href="Topic_19.html#xk4yuibj">Belcourt_1990</a>, <a href="Topic_19.html#kcskp2ux">Brierley_1997</a>, <a href="Topic_19.html#ubm4au41">Marczinke_2000</a></td>
</tr>
<tr>
<th id="fwav40fv";>47</th>
<td>Sekine_1992</td>
<td>Identification of the site of translational frameshifting required for production of the transposase encoded by insertion sequence IS 1</td>
<td>Sekine, Yasuhiko; Nagasawa, Hiromichi; Ohtsubo, Eiichi</td>
<td>1992</td>
<td>1992-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088211" target="_blank">PMC7088211</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1334529.0" target="_blank">1334529.0</a></td>
<td><a href="https://doi.org/10.1007/bf00279376" target="_blank">10.1007/bf00279376</a></td>
<td>fwav40fv</td>
<td>0.789658</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a></td>
<td><a href="Topic_19.html#f0smw5j0">Sekine_1992</a>, <a href="Topic_10.html#c8qcjve9">Faaberg_1996</a></td>
</tr>
<tr>
<th id="ia04jc9j";>48</th>
<td>Rott_1991</td>
<td>Comparison of the 5′ and 3′ termini of tomato ringspot virus RNA1 and RNA2: Evidence for RNA recombination</td>
<td>Rott, M.E.; Tremaine, J.H.; Rochon, D.M.</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1926788.0" target="_blank">1926788.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90801-h" target="_blank">10.1016/0042-6822(91)90801-h</a></td>
<td>ia04jc9j</td>
<td>0.788044</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td></td>
</tr>
<tr>
<th id="1m9s5bus";>49</th>
<td>Brierley_1991</td>
<td>Mutational analysis of the RNA pseudoknot component of a coronavirus ribosomal frameshifting signal</td>
<td>Brierley, Ian; Rolley, Nicola J.; Jenner, Alison J.; Inglis, Stephen C.</td>
<td>1991</td>
<td>1991-08-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131590" target="_blank">PMC7131590</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1880803.0" target="_blank">1880803.0</a></td>
<td><a href="https://doi.org/10.1016/0022-2836(91)90361-9" target="_blank">10.1016/0022-2836(91)90361-9</a></td>
<td>1m9s5bus</td>
<td>0.785745</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="ixslsd5s";>50</th>
<td>Li_L_2001</td>
<td>Structural Analysis of the −1 Ribosomal Frameshift Elements in Giardiavirus mRNA</td>
<td>Li, Lei; Wang, Alice L.; Wang, Ching C.</td>
<td>2001</td>
<td>2001-11-15</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC114643" target="_blank">PMC114643</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11602703.0" target="_blank">11602703.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.75.22.10612-10622.2001" target="_blank">10.1128/jvi.75.22.10612-10622.2001</a></td>
<td>ixslsd5s</td>
<td>0.784886</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="lnp5ye11";>51</th>
<td>Di_H_2018</td>
<td>New insights about the regulation of Nidovirus subgenomic mRNA synthesis</td>
<td>Di, Han; McIntyre, Ayisha A.; Brinton, Margo A.</td>
<td>2018</td>
<td>2018-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5987246" target="_blank">PMC5987246</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29475599.0" target="_blank">29475599.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2018.01.026" target="_blank">10.1016/j.virol.2018.01.026</a></td>
<td>lnp5ye11</td>
<td>0.783433</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="ti3jy64e";>52</th>
<td>Lewis_1995</td>
<td>An astrovirus frameshift signal induces ribosomal frameshifting in vitro</td>
<td>Lewis, T. L.; Matsui, S. M.</td>
<td>1995</td>
<td>1995-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087256" target="_blank">PMC7087256</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7611883.0" target="_blank">7611883.0</a></td>
<td><a href="https://doi.org/10.1007/bf01315421" target="_blank">10.1007/bf01315421</a></td>
<td>ti3jy64e</td>
<td>0.782480</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#uoei747i">Leibowitz_1988</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="63160t7f";>53</th>
<td>Schwer_1987</td>
<td>Discontinuous transcription or RNA processing of vaccinia virus late messengers results in a 5′ poly(A) leader</td>
<td>Schwer, Beate; Visca, Paolo; Vos, Jan C.; Stunnenberg, Hendrik G.</td>
<td>1987</td>
<td>1987-07-17</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3594569.0" target="_blank">3594569.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(87)90212-1" target="_blank">10.1016/0092-8674(87)90212-1</a></td>
<td>63160t7f</td>
<td>0.781860</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#so5jooj0">Bertholet_1987</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="icj261ls";>54</th>
<td>Léger_2007</td>
<td>The three transfer RNAs occupying the A, P and E sites on the ribosome are involved in viral programmed -1 ribosomal frameshift</td>
<td>Léger, Mélissa; Dulude, Dominic; Steinberg, Sergey V.; Brakier-Gingras, Léa</td>
<td>2007</td>
<td>2007-08-17</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2018615" target="_blank">PMC2018615</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17704133.0" target="_blank">17704133.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkm578" target="_blank">10.1093/nar/gkm578</a></td>
<td>icj261ls</td>
<td>0.780302</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="4s54jrww";>55</th>
<td>Niu_S_2014</td>
<td>An infectious RNA with a hepta-adenosine stretch responsible for programmed −1 ribosomal frameshift derived from a full-length cDNA clone of Hibiscus latent Singapore virus</td>
<td>Niu, Shengniao; Cao, Shishu; Wong, Sek-Man</td>
<td>2014</td>
<td>2014-01-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127180" target="_blank">PMC7127180</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24418557.0" target="_blank">24418557.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2013.11.021" target="_blank">10.1016/j.virol.2013.11.021</a></td>
<td>4s54jrww</td>
<td>0.779743</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="so5jooj0";>56</th>
<td>Bertholet_1987</td>
<td>Vaccinia virus produces late mRNAs by discontinuous synthesis</td>
<td>Bertholet, Christine; Van Meir, Erwin; ten Heggeler-Bordier, Béatrice; Wittek, Riccardo</td>
<td>1987</td>
<td>1987-07-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133321" target="_blank">PMC7133321</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3036368.0" target="_blank">3036368.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(87)90211-x" target="_blank">10.1016/0092-8674(87)90211-x</a></td>
<td>so5jooj0</td>
<td>0.778827</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#63160t7f">Schwer_1987</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="mncz34kh";>57</th>
<td>Gao_F_2016</td>
<td>Multiple Cis-acting elements modulate programmed -1 ribosomal frameshifting in Pea enation mosaic virus</td>
<td>Gao, Feng; Simon, Anne E.</td>
<td>2016</td>
<td>2016-01-29</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737148" target="_blank">PMC4737148</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26578603.0" target="_blank">26578603.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv1241" target="_blank">10.1093/nar/gkv1241</a></td>
<td>mncz34kh</td>
<td>0.778377</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="pc4x5e24";>58</th>
<td>Yu_C_2010</td>
<td>Stimulation of ribosomal frameshifting by antisense LNA</td>
<td>Yu, Chien-Hung; Noteborn, Mathieu H. M.; Olsthoorn, René C. L.</td>
<td>2010</td>
<td>2010-08-06</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3001050" target="_blank">PMC3001050</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20693527.0" target="_blank">20693527.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq650" target="_blank">10.1093/nar/gkq650</a></td>
<td>pc4x5e24</td>
<td>0.777432</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="85zntq7i";>59</th>
<td>An_S_1998</td>
<td>Characterizations of Coronaviruscis-Acting RNA Elements and the Transcription Step Affecting Its Transcription Efficiency</td>
<td>An, Sungwhan; Makino, Shinji</td>
<td>1998</td>
<td>1998-03-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133654" target="_blank">PMC7133654</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9527929.0" target="_blank">9527929.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1998.9059" target="_blank">10.1006/viro.1998.9059</a></td>
<td>85zntq7i</td>
<td>0.775594</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#gkg1059v">JEONG_1996</a></td>
</tr>
<tr>
<th id="q4cs2h29";>60</th>
<td>Liao_2014</td>
<td>The 3′-Terminal 55 Nucleotides of Bovine Coronavirus Defective Interfering RNA Harbor Cis-Acting Elements Required for Both Negative- and Positive-Strand RNA Synthesis</td>
<td>Liao, Wei-Yu; Ke, Ting-Yung; Wu, Hung-Yi</td>
<td>2014</td>
<td>2014-05-22</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4031142" target="_blank">PMC4031142</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24852421.0" target="_blank">24852421.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0098422" target="_blank">10.1371/journal.pone.0098422</a></td>
<td>q4cs2h29</td>
<td>0.774257</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="x43pp3fw";>61</th>
<td>Madhugiri_2016</td>
<td>Chapter Four Coronavirus cis-Acting RNA Elements</td>
<td>Madhugiri, R.; Fricke, M.; Marz, M.; Ziebuhr, J.</td>
<td>2016</td>
<td>2016-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112319" target="_blank">PMC7112319</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27712622.0" target="_blank">27712622.0</a></td>
<td><a href="https://doi.org/10.1016/bs.aivir.2016.08.007" target="_blank">10.1016/bs.aivir.2016.08.007</a></td>
<td>x43pp3fw</td>
<td>0.771107</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#7de21oaq">Madhugiri_2014</a></td>
</tr>
<tr>
<th id="0fu5h64z";>62</th>
<td>Sutton_1986</td>
<td>Evidence for Trans splicing in trypanosomes</td>
<td>Sutton, Richard E.; Boothroyd, John C.</td>
<td>1986</td>
<td>1986-11-21</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3022935.0" target="_blank">3022935.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(86)90617-3" target="_blank">10.1016/0092-8674(86)90617-3</a></td>
<td>0fu5h64z</td>
<td>0.770192</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="dg94h2ko";>63</th>
<td>Samal_2013</td>
<td>Leader Sequence</td>
<td>Samal, S.K.</td>
<td>2013</td>
<td>2013-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7152451" target="_blank">PMC7152451</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-374984-0.00850-0" target="_blank">10.1016/b978-0-12-374984-0.00850-0</a></td>
<td>dg94h2ko</td>
<td>0.767716</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a></td>
</tr>
<tr>
<th id="6uv9nu65";>64</th>
<td>Wan_J_2018</td>
<td>A Coding Sequence-Embedded Principle Governs Translational Reading Frame Fidelity</td>
<td>Wan, Ji; Gao, Xiangwei; Mao, Yuanhui; Zhang, Xingqian; Qian, Shu-Bing</td>
<td>2018</td>
<td>2018-09-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6750092" target="_blank">PMC6750092</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31549036.0" target="_blank">31549036.0</a></td>
<td><a href="https://doi.org/10.1155/2018/7089174" target="_blank">10.1155/2018/7089174</a></td>
<td>6uv9nu65</td>
<td>0.765717</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a></td>
<td><a href="Topic_19.html#i3yiuai7">Namy_2006</a></td>
</tr>
<tr>
<th id="gk0r65b3";>65</th>
<td>Wang_2012</td>
<td>Identification and characterization of RNA duplex unwinding and ATPase activities of an alphatetravirus superfamily 1 helicase</td>
<td>Wang, Qinrong; Han, Yajuan; Qiu, Yang; Zhang, Shaoqiong; Tang, Fenfen; Wang, Yan; Zhang, Jiamin; Hu, Yuanyang; Zhou, Xi</td>
<td>2012</td>
<td>2012-11-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111927" target="_blank">PMC7111927</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22995190.0" target="_blank">22995190.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2012.08.045" target="_blank">10.1016/j.virol.2012.08.045</a></td>
<td>gk0r65b3</td>
<td>0.761191</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a></td>
</tr>
<tr>
<th id="gkg1059v";>66</th>
<td>JEONG_1996</td>
<td>Coronavirus Transcription Mediated by Sequences Flanking the Transcription Consensus Sequence</td>
<td>JEONG, YONG SEOK; REPASS, JOHN F.; KIM, YOUNG-NAM; HWANG, SUN-MIN; MAKINO, SHINJI</td>
<td>1996</td>
<td>1996-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131137" target="_blank">PMC7131137</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8599216.0" target="_blank">8599216.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1996.0118" target="_blank">10.1006/viro.1996.0118</a></td>
<td>gkg1059v</td>
<td>0.760266</td>
<td><a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#85zntq7i">An_S_1998</a></td>
</tr>
<tr>
<th id="c57impca";>67</th>
<td>Huang_2013</td>
<td>A Genome-Wide Analysis of RNA Pseudoknots That Stimulate Efficient −1 Ribosomal Frameshifting or Readthrough in Animal Viruses</td>
<td>Huang, Xiaolan; Cheng, Qiang; Du, Zhihua</td>
<td>2013</td>
<td>2013-11-04</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3835772" target="_blank">PMC3835772</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24298557.0" target="_blank">24298557.0</a></td>
<td><a href="https://doi.org/10.1155/2013/984028" target="_blank">10.1155/2013/984028</a></td>
<td>c57impca</td>
<td>0.758663</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td></td>
</tr>
<tr>
<th id="z5uhrta5";>68</th>
<td>Zhang_2000</td>
<td>Identification of a Noncanonical Signal for Transcription of a Novel Subgenomic mRNA of Mouse Hepatitis Virus: Implication for the Mechanism of Coronavirus RNA Transcription</td>
<td>Zhang, Xuming; Liu, Runzhong</td>
<td>2000</td>
<td>2000-12-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130745" target="_blank">PMC7130745</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11112483.0" target="_blank">11112483.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2000.0637" target="_blank">10.1006/viro.2000.0637</a></td>
<td>z5uhrta5</td>
<td>0.756721</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td></td>
</tr>
<tr>
<th id="mtuxocrd";>69</th>
<td>Xiong_1993</td>
<td>Synthesis of the Putative Red Clover Necrotic Mosaic Virus RNA Polymerase by Ribosomal Frameshifting in Vitro</td>
<td>Xiong, Z.; Kim, K.H.; Kendall, T.L.; Lommel, S.A.</td>
<td>1993</td>
<td>1993-03-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8438566.0" target="_blank">8438566.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1993.1117" target="_blank">10.1006/viro.1993.1117</a></td>
<td>mtuxocrd</td>
<td>0.753632</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_19.html#gu9ptt9y">White_1991</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="o81j3d1j";>70</th>
<td>Page_1990</td>
<td>Sequence analysis of the leader RNA of two porcine coronaviruses: Transmissible gastroenteritis virus and porcine respiratory coronavirus</td>
<td>Page, Kevin W.; Britton, Paul; Boursnell, Michael E. G.</td>
<td>1990</td>
<td>1990-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088910" target="_blank">PMC7088910</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1962975.0" target="_blank">1962975.0</a></td>
<td><a href="https://doi.org/10.1007/bf00570024" target="_blank">10.1007/bf00570024</a></td>
<td>o81j3d1j</td>
<td>0.753482</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a></td>
</tr>
<tr>
<th id="cl9gpt9w";>71</th>
<td>Kierzek_2005</td>
<td>The influence of locked nucleic acid residues on the thermodynamic properties of 2′-O-methyl RNA/RNA heteroduplexes</td>
<td>Kierzek, Elzbieta; Ciesielska, Anna; Pasternak, Karol; Mathews, David H.; Turner, Douglas H.; Kierzek, Ryszard</td>
<td>2005</td>
<td>2005-09-09</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1201327" target="_blank">PMC1201327</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16155181.0" target="_blank">16155181.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gki789" target="_blank">10.1093/nar/gki789</a></td>
<td>cl9gpt9w</td>
<td>0.753084</td>
<td><a href="Topic_19.html#sztzrx1l">Kierzek_2006</a>, <a href="Topic_47.html#bbvxu8op">Karaman_2005</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_55.html#ovy03sfy">Scrima_2004</a>, <a href="Topic_34.html#7jn2snih">Poulsen_2015</a></td>
</tr>
<tr>
<th id="muf79zhi";>72</th>
<td>Hatfield_1989</td>
<td>Chromatographic analysis of the aminoacyl-trnas which are required for translation of codons at and around the ribosomal frameshift sites of HIV, HTLV-1, and BLV</td>
<td>Hatfield, Dolph; Feng, Ya-Xiong; Lee, Byeong J.; Rein, Alan; Levin, Judith G.; Oroszlan, Stephen</td>
<td>1989</td>
<td>1989-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2556852.0" target="_blank">2556852.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(89)90589-8" target="_blank">10.1016/0042-6822(89)90589-8</a></td>
<td>muf79zhi</td>
<td>0.753084</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a></td>
</tr>
<tr>
<th id="isbmmrvl";>73</th>
<td>Kim_H_2017</td>
<td>EF-G catalyzed translocation dynamics in the presence of ribosomal frameshifting stimulatory signals</td>
<td>Kim, Hee-Kyung; Tinoco, Ignacio</td>
<td>2017</td>
<td>2017-03-17</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5389563" target="_blank">PMC5389563</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27799473.0" target="_blank">27799473.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw1020" target="_blank">10.1093/nar/gkw1020</a></td>
<td>isbmmrvl</td>
<td>0.752865</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="ipwm9uob";>74</th>
<td>Gendron_2007</td>
<td>The presence of the TAR RNA structure alters the programmed -1 ribosomal frameshift efficiency of the human immunodeficiency virus type 1 (HIV-1) by modifying the rate of translation initiation</td>
<td>Gendron, Karine; Charbonneau, Johanie; Dulude, Dominic; Heveker, Nikolaus; Ferbeyre, Gerardo; Brakier-Gingras, Léa</td>
<td>2007</td>
<td>2007-11-05</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2248755" target="_blank">PMC2248755</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17984074.0" target="_blank">17984074.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkm906" target="_blank">10.1093/nar/gkm906</a></td>
<td>ipwm9uob</td>
<td>0.752510</td>
<td><a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#6m4qrt3m">Brunelle_1999</a></td>
</tr>
<tr>
<th id="nmn41dh5";>75</th>
<td>Cattaneo_1989</td>
<td>How ‘hidden’ reading frames are expressed</td>
<td>Cattaneo, Roberto</td>
<td>1989</td>
<td>1989-05-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2773038.0" target="_blank">2773038.0</a></td>
<td><a href="https://doi.org/10.1016/0968-0004(89)90266-1" target="_blank">10.1016/0968-0004(89)90266-1</a></td>
<td>nmn41dh5</td>
<td>0.751674</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td></td>
</tr>
<tr>
<th id="5ld0o9gv";>76</th>
<td>Adams_2003</td>
<td>Analysis of intermolecular RNA–RNA recombination by rubella virus</td>
<td>Adams, Sandra D.; Tzeng, Wen-Pin; Chen, Min-Hsin; Frey, Teryl K.</td>
<td>2003</td>
<td>2003-05-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126107" target="_blank">PMC7126107</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12758173.0" target="_blank">12758173.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(03)00064-3" target="_blank">10.1016/s0042-6822(03)00064-3</a></td>
<td>5ld0o9gv</td>
<td>0.749056</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="m770a1rl";>77</th>
<td>Wurch_1991</td>
<td>The cauliflower mosaic virus reverse transcriptase is not produced by the mechanism of ribosomal frameshifting in Saccharomyces cerevisiae</td>
<td>Wurch, T.; Guidasci, T.; Geldreich, A.; Lebeurier, G.; Mesnard, J.-M.</td>
<td>1991</td>
<td>1991-02-28</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1703375.0" target="_blank">1703375.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90103-i" target="_blank">10.1016/0042-6822(91)90103-i</a></td>
<td>m770a1rl</td>
<td>0.748350</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td></td>
</tr>
<tr>
<th id="uftl1mx5";>78</th>
<td>Baril_2003</td>
<td>The Frameshift Stimulatory Signal of Human Immunodeficiency Virus Type 1 Group O is a Pseudoknot</td>
<td>Baril, Martin; Dulude, Dominic; Steinberg, Sergey V; Brakier-Gingras, Léa</td>
<td>2003</td>
<td>2003-08-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127721" target="_blank">PMC7127721</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12899829.0" target="_blank">12899829.0</a></td>
<td><a href="https://doi.org/10.1016/s0022-2836(03)00784-8" target="_blank">10.1016/s0022-2836(03)00784-8</a></td>
<td>uftl1mx5</td>
<td>0.746503</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#7ots8npg">Su_M_2005</a></td>
</tr>
<tr>
<th id="4qu7fiwm";>79</th>
<td>Wu_H_2013</td>
<td>Regulation of Coronaviral Poly(A) Tail Length during Infection</td>
<td>Wu, Hung-Yi; Ke, Ting-Yung; Liao, Wei-Yu; Chang, Nai-Yun</td>
<td>2013</td>
<td>2013-07-29</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726627" target="_blank">PMC3726627</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23923003.0" target="_blank">23923003.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0070548" target="_blank">10.1371/journal.pone.0070548</a></td>
<td>4qu7fiwm</td>
<td>0.740733</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td></td>
</tr>
<tr>
<th id="oir3rlb7";>80</th>
<td>Brierley_1992</td>
<td>Mutational analysis of the “slippery-sequence” component of a coronavirus ribosomal frameshifting signal</td>
<td>Brierley, Ian; Jenner, Alison J.; Inglis, Stephen C.</td>
<td>1992</td>
<td>1992-09-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125858" target="_blank">PMC7125858</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1404364.0" target="_blank">1404364.0</a></td>
<td><a href="https://doi.org/10.1016/0022-2836(92)90901-u" target="_blank">10.1016/0022-2836(92)90901-u</a></td>
<td>oir3rlb7</td>
<td>0.740076</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="kzshcrwx";>81</th>
<td>Caliskan_2014</td>
<td>Programmed –1 Frameshifting by Kinetic Partitioning during Impeded Translocation</td>
<td>Caliskan, Neva; Katunin, Vladimir I.; Belardinelli, Riccardo; Peske, Frank; Rodnina, Marina V.</td>
<td>2014</td>
<td>2014-06-19</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112342" target="_blank">PMC7112342</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24949973.0" target="_blank">24949973.0</a></td>
<td><a href="https://doi.org/10.1016/j.cell.2014.04.041" target="_blank">10.1016/j.cell.2014.04.041</a></td>
<td>kzshcrwx</td>
<td>0.739922</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="2xvd5ogf";>82</th>
<td>Napthine_2009</td>
<td>Expression of the VP2 Protein of Murine Norovirus by a Translation Termination-Reinitiation Strategy</td>
<td>Napthine, Sawsan; Lever, Robert A.; Powell, Michael L.; Jackson, Richard J.; Brown, T. David K.; Brierley, Ian</td>
<td>2009</td>
<td>2009-12-22</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2793014" target="_blank">PMC2793014</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20027307.0" target="_blank">20027307.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0008390" target="_blank">10.1371/journal.pone.0008390</a></td>
<td>2xvd5ogf</td>
<td>0.739317</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="gsqmkxjx";>83</th>
<td>Ivanov_2004</td>
<td>Identification of a New Antizyme mRNA +1 Frameshifting Stimulatory Pseudoknot in a Subset of Diverse Invertebrates and its Apparent Absence in Intermediate Species</td>
<td>Ivanov, Ivaylo P; Anderson, Christine B; Gesteland, Raymond F; Atkins, John F</td>
<td>2004</td>
<td>2004-06-04</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125782" target="_blank">PMC7125782</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15147837.0" target="_blank">15147837.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2004.03.082" target="_blank">10.1016/j.jmb.2004.03.082</a></td>
<td>gsqmkxjx</td>
<td>0.738898</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="l600aeuo";>84</th>
<td>Chen_2013</td>
<td>Dynamics of translation by single ribosomes through mRNA secondary structures</td>
<td>Chen, Chunlai; Zhang, Haibo; Broitman, Steven L.; Reiche, Michael; Farrell, Ian; Cooperman, Barry S.; Goldman, Yale E.</td>
<td>2013</td>
<td>2013-03-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3648610" target="_blank">PMC3648610</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23542154.0" target="_blank">23542154.0</a></td>
<td><a href="https://doi.org/10.1038/nsmb.2544" target="_blank">10.1038/nsmb.2544</a></td>
<td>l600aeuo</td>
<td>0.738109</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#vgl3aog5">Balakin_1990</a></td>
</tr>
<tr>
<th id="2u49b7xo";>85</th>
<td>Firth_2011</td>
<td>Stimulation of stop codon readthrough: frequent presence of an extended 3′ RNA structural element</td>
<td>Firth, Andrew E.; Wills, Norma M.; Gesteland, Raymond F.; Atkins, John F.</td>
<td>2011</td>
<td>2011-04-27</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3159437" target="_blank">PMC3159437</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21525127.0" target="_blank">21525127.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr224" target="_blank">10.1093/nar/gkr224</a></td>
<td>2u49b7xo</td>
<td>0.737480</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#2xvd5ogf">Napthine_2009</a></td>
</tr>
<tr>
<th id="il9vbbgk";>86</th>
<td>DEN_BOON_1995</td>
<td>Equine Arteritis Virus Subgenomic RNA Transcription: UV Inactivation and Translation Inhibition Studies</td>
<td>DEN BOON, JOHAN A.; SPAAN, WILLY J.M.; SNIJDER, ERIC J.</td>
<td>1995</td>
<td>1995-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131190" target="_blank">PMC7131190</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7491761.0" target="_blank">7491761.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1995.0009" target="_blank">10.1006/viro.1995.0009</a></td>
<td>il9vbbgk</td>
<td>0.734456</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a></td>
</tr>
<tr>
<th id="vgl3aog5";>87</th>
<td>Balakin_1990</td>
<td>Transition of the mRNA sequence downstream from the initiation codon into a single-stranded conformation is strongly promoted by binding of the initiator tRNA</td>
<td>Balakin, Andrew; Skripkin, Eugene; Shatsky, Ivan; Bogdanov, Alexey</td>
<td>1990</td>
<td>1990-08-27</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2207137.0" target="_blank">2207137.0</a></td>
<td><a href="https://doi.org/10.1016/0167-4781(90)90151-q" target="_blank">10.1016/0167-4781(90)90151-q</a></td>
<td>vgl3aog5</td>
<td>0.734139</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#7xkj27ph">Lai_M_2005</a></td>
<td></td>
</tr>
<tr>
<th id="82mgv1w6";>88</th>
<td>Prère_2011</td>
<td>The Interplay of mRNA Stimulatory Signals Required for AUU-Mediated Initiation and Programmed −1 Ribosomal Frameshifting in Decoding of Transposable Element IS911</td>
<td>Prère, Marie-Françoise; Canal, Isabelle; Wills, Norma M.; Atkins, John F.; Fayet, Olivier</td>
<td>2011</td>
<td>2011-04-08</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3133126" target="_blank">PMC3133126</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21478364.0" target="_blank">21478364.0</a></td>
<td><a href="https://doi.org/10.1128/jb.00115-11" target="_blank">10.1128/jb.00115-11</a></td>
<td>82mgv1w6</td>
<td>0.734023</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="a1sf3r5e";>89</th>
<td>Madhugiri_2018</td>
<td>Structural and functional conservation of cis-acting RNA elements in coronavirus 5'-terminal genome regions</td>
<td>Madhugiri, Ramakanth; Karl, Nadja; Petersen, Daniel; Lamkiewicz, Kevin; Fricke, Markus; Wend, Ulrike; Scheuer, Robina; Marz, Manja; Ziebuhr, John</td>
<td>2018</td>
<td>2018-04-30</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112051" target="_blank">PMC7112051</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29223446.0" target="_blank">29223446.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2017.11.025" target="_blank">10.1016/j.virol.2017.11.025</a></td>
<td>a1sf3r5e</td>
<td>0.732151</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#cciyb05w">Yang_2015</a></td>
</tr>
<tr>
<th id="w8vy5rl8";>90</th>
<td>Mizutani_2000</td>
<td>Nascent Synthesis of Leader Sequence-Containing Subgenomic mRNAs in Coronavirus Genome-Length Replicative Intermediate RNA</td>
<td>Mizutani, Tetsuya; Repass, John F.; Makino, Shinji</td>
<td>2000</td>
<td>2000-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130702" target="_blank">PMC7130702</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10998322.0" target="_blank">10998322.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2000.0489" target="_blank">10.1006/viro.2000.0489</a></td>
<td>w8vy5rl8</td>
<td>0.730380</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="cwcpsq65";>91</th>
<td>Suzuki_1992</td>
<td>Rice dwarf phytoreovirus segment S12 transcript is tricistronic in Vitro</td>
<td>Suzuki, Nobuhiro; Sugawara, Mikiko; Kusano, Tomonobu</td>
<td>1992</td>
<td>1992-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1448932.0" target="_blank">1448932.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90279-x" target="_blank">10.1016/0042-6822(92)90279-x</a></td>
<td>cwcpsq65</td>
<td>0.728855</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="3se1wp8o";>92</th>
<td>Chen_2018</td>
<td>The conserved stem-loop II structure at the 3' untranslated region of Japanese encephalitis virus genome is required for the formation of subgenomic flaviviral RNA</td>
<td>Chen, Yi-Shiuan; Fan, Yi-Hsin; Tien, Chih-Feng; Yueh, Andrew; Chang, Ruey-Yi</td>
<td>2018</td>
<td>2018-07-26</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6062100" target="_blank">PMC6062100</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30048535.0" target="_blank">30048535.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0201250" target="_blank">10.1371/journal.pone.0201250</a></td>
<td>3se1wp8o</td>
<td>0.728000</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="08tknscm";>93</th>
<td>Sztuba-Solinska_2016</td>
<td>A small stem-loop structure of the Ebola virus trailer is essential for replication and interacts with heat-shock protein A8</td>
<td>Sztuba-Solinska, Joanna; Diaz, Larissa; Kumar, Mia R.; Kolb, Gaëlle; Wiley, Michael R.; Jozwick, Lucas; Kuhn, Jens H.; Palacios, Gustavo; Radoshitzky, Sheli R.; J. Le Grice, Stuart F.; Johnson, Reed F.</td>
<td>2016</td>
<td>2016-11-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175359" target="_blank">PMC5175359</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27651462.0" target="_blank">27651462.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw825" target="_blank">10.1093/nar/gkw825</a></td>
<td>08tknscm</td>
<td>0.726387</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="kcskp2ux";>94</th>
<td>Brierley_1997</td>
<td>Expression of a coronavirus ribosomal frameshift signal in Escherichia coli: influence of tRNA anticodon modification on frameshifting 1 1 Edited by J. Karn</td>
<td>Brierley, Ian; Meredith, Michayla R; Bloys, Alison J; Hagervall, Tord G</td>
<td>1997</td>
<td>1997-07-18</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126968" target="_blank">PMC7126968</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9237903.0" target="_blank">9237903.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1997.1134" target="_blank">10.1006/jmbi.1997.1134</a></td>
<td>kcskp2ux</td>
<td>0.724307</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_19.html#xk4yuibj">Belcourt_1990</a></td>
</tr>
<tr>
<th id="tu50ab1b";>95</th>
<td>Chen_2017</td>
<td>The Functional Roles of the Cis-acting Elements in Bamboo mosaic virus RNA Genome</td>
<td>Chen, I-Hsuan; Huang, Ying-Wen; Tsai, Ching-Hsiu</td>
<td>2017</td>
<td>2017-04-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5390519" target="_blank">PMC5390519</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28450857.0" target="_blank">28450857.0</a></td>
<td><a href="https://doi.org/10.3389/fmicb.2017.00645" target="_blank">10.3389/fmicb.2017.00645</a></td>
<td>tu50ab1b</td>
<td>0.724156</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="nulqcpz5";>96</th>
<td>Hao_S_2017</td>
<td>Alternative Polyadenylation of Human Bocavirus at Its 3′ End Is Regulated by Multiple Elements and Affects Capsid Expression</td>
<td>Hao, Sujuan; Zhang, Junmei; Chen, Zhen; Xu, Huanzhou; Wang, Hanzhong; Guan, Wuxiang</td>
<td>2017</td>
<td>2017-01-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5244319" target="_blank">PMC5244319</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27881651.0" target="_blank">27881651.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.02026-16" target="_blank">10.1128/jvi.02026-16</a></td>
<td>nulqcpz5</td>
<td>0.719780</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a></td>
</tr>
<tr>
<th id="cbsadvbu";>97</th>
<td>Sawicki_2005</td>
<td>Coronavirus Transcription: A Perspective</td>
<td>Sawicki, S. G.; Sawicki, D. L.</td>
<td>2005</td>
<td>2005-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121018" target="_blank">PMC7121018</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15609508.0" target="_blank">15609508.0</a></td>
<td><a href="https://doi.org/10.1007/3-540-26765-4_2" target="_blank">10.1007/3-540-26765-4_2</a></td>
<td>cbsadvbu</td>
<td>0.719599</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_19.html#fma25t1n">Baker_1990</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a></td>
</tr>
<tr>
<th id="uu57qilj";>98</th>
<td>Dasmahapatra_1985</td>
<td>Structure of the black beetle virus genome and its functional implications</td>
<td>Dasmahapatra, Bimalendu; Dasgupta, Ranjit; Ghosh, Amit; Kaesberg, Paul</td>
<td>1985</td>
<td>1985-03-20</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3839022.0" target="_blank">3839022.0</a></td>
<td><a href="https://doi.org/10.1016/0022-2836(85)90337-7" target="_blank">10.1016/0022-2836(85)90337-7</a></td>
<td>uu57qilj</td>
<td>0.719308</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#ia04jc9j">Rott_1991</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#gu9ptt9y">White_1991</a></td>
</tr>
<tr>
<th id="ix8du1er";>99</th>
<td>Mouzakis_2012</td>
<td>HIV-1 frameshift efficiency is primarily determined by the stability of base pairs positioned at the mRNA entrance channel of the ribosome</td>
<td>Mouzakis, Kathryn D.; Lang, Andrew L.; Vander Meulen, Kirk A.; Easterday, Preston D.; Butcher, Samuel E.</td>
<td>2012</td>
<td>2012-12-15</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561942" target="_blank">PMC3561942</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23248007.0" target="_blank">23248007.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gks1254" target="_blank">10.1093/nar/gks1254</a></td>
<td>ix8du1er</td>
<td>0.718318</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="9b64z84d";>100</th>
<td>Wu_C_2014</td>
<td>Nucleocapsid Phosphorylation and RNA Helicase DDX1 Recruitment Enables Coronavirus Transition from Discontinuous to Continuous Transcription</td>
<td>Wu, Chia-Hsin; Chen, Pei-Jer; Yeh, Shiou-Hwei</td>
<td>2014</td>
<td>2014-10-08</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7104987" target="_blank">PMC7104987</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25299332.0" target="_blank">25299332.0</a></td>
<td><a href="https://doi.org/10.1016/j.chom.2014.09.009" target="_blank">10.1016/j.chom.2014.09.009</a></td>
<td>9b64z84d</td>
<td>0.717654</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="2w2hfpv3";>101</th>
<td>Gordon_1985</td>
<td>Subgenomic RNAs with nucleotide sequences derived from RNAs 1 and 2 of cucumber mosaic virus can act as messenger RNAsin Vitro</td>
<td>Gordon, Karl H.J.; Symons, Robert H.</td>
<td>1985</td>
<td>1985-04-15</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/0042-6822(85)90429-5" target="_blank">10.1016/0042-6822(85)90429-5</a></td>
<td>2w2hfpv3</td>
<td>0.716862</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_37.html#402ls2aq">Endoh_2005</a></td>
<td></td>
</tr>
<tr>
<th id="ztmrrii3";>102</th>
<td>Baric_1985</td>
<td>Characterization of leader-related small RNAs in coronavirus-infected cells: Further evidence for leader-primed mechanism of transcription</td>
<td>Baric, Ralph S.; Stohlman, Stephen A.; Razavi, Mahmood K.; Lai, Michael M.C.</td>
<td>1985</td>
<td>1985-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133907" target="_blank">PMC7133907</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2992183.0" target="_blank">2992183.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(85)90038-3" target="_blank">10.1016/0168-1702(85)90038-3</a></td>
<td>ztmrrii3</td>
<td>0.715932</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#fma25t1n">Baker_1990</a></td>
</tr>
<tr>
<th id="6f3e87yk";>103</th>
<td>Mindich_1995</td>
<td>Heterologous recombination in the segmented dsRNA genome of bacteriophage Φ6</td>
<td>Mindich, Leonard</td>
<td>1995</td>
<td>1995-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7129777" target="_blank">PMC7129777</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/s1044-5773(05)80011-3" target="_blank">10.1016/s1044-5773(05)80011-3</a></td>
<td>6f3e87yk</td>
<td>0.715133</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="fma25t1n";>104</th>
<td>Baker_1990</td>
<td>An in vitro system for the leader-primed transcription of coronavirus mRNAs.</td>
<td>Baker, S C; Lai, M M</td>
<td>1990</td>
<td>1990-12-23</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC552193" target="_blank">PMC552193</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2174358.0" target="_blank">2174358.0</a></td>
<td></td>
<td>fma25t1n</td>
<td>0.713621</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a></td>
</tr>
<tr>
<th id="0s8huajd";>105</th>
<td>Atkins_2016</td>
<td>Ribosomal frameshifting and transcriptional slippage: From genetic steganography and cryptography to adventitious use</td>
<td>Atkins, John F.; Loughran, Gary; Bhatt, Pramod R.; Firth, Andrew E.; Baranov, Pavel V.</td>
<td>2016</td>
<td>2016-09-06</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5009743" target="_blank">PMC5009743</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27436286.0" target="_blank">27436286.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw530" target="_blank">10.1093/nar/gkw530</a></td>
<td>0s8huajd</td>
<td>0.712568</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#rlnb674e">Giedroc_2009</a></td>
</tr>
<tr>
<th id="6m4qrt3m";>106</th>
<td>Brunelle_1999</td>
<td>Expression of the human immunodeficiency virus frameshift signal in a bacterial cell-free system: Influence of an interaction between the ribosome and a stem-loop structure downstream from the slippery site</td>
<td>Brunelle, Marie-Noëlle; Payant, Catherine; Brakier-Gingras, Léa; Lemay, Guy</td>
<td>1999</td>
<td>1999-12-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC148779" target="_blank">PMC148779</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10572179.0" target="_blank">10572179.0</a></td>
<td><a href="https://doi.org/10.1093/nar/27.24.4783" target="_blank">10.1093/nar/27.24.4783</a></td>
<td>6m4qrt3m</td>
<td>0.712221</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="14iqq6wy";>107</th>
<td>Atkins_1999</td>
<td>Intricacies of ribosomal frameshifting</td>
<td>Atkins, John F.; Gesteland, Raymond F.</td>
<td>1999</td>
<td>1999-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7096882" target="_blank">PMC7096882</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10074934.0" target="_blank">10074934.0</a></td>
<td><a href="https://doi.org/10.1038/6642" target="_blank">10.1038/6642</a></td>
<td>14iqq6wy</td>
<td>0.711287</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#j3q4k5ol">Trifonov_1992</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
</tr>
<tr>
<th id="8jzoymfy";>108</th>
<td>Theimer_1999</td>
<td>Equilibrium unfolding pathway of an H-type RNA pseudoknot which promotes programmed −1 ribosomal frameshifting 1 1 Edited by D. E. Draper</td>
<td>Theimer, Carla A.; Giedroc, David P.</td>
<td>1999</td>
<td>1999-06-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126474" target="_blank">PMC7126474</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10373368.0" target="_blank">10373368.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1999.2850" target="_blank">10.1006/jmbi.1999.2850</a></td>
<td>8jzoymfy</td>
<td>0.708837</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#nr2xmcs0">Zhong_2016</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="hpv6916w";>109</th>
<td>Krause_1987</td>
<td>A trans-spliced leader sequence on actin mRNA in C. elegans</td>
<td>Krause, Michael; Hirsh, David</td>
<td>1987</td>
<td>1987-06-19</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/0092-8674(87)90613-1" target="_blank">10.1016/0092-8674(87)90613-1</a></td>
<td>hpv6916w</td>
<td>0.708115</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td><a href="Topic_19.html#dg94h2ko">Samal_2013</a>, <a href="Topic_19.html#5r0oc9kz">Parsons_1984</a>, <a href="Topic_19.html#63160t7f">Schwer_1987</a></td>
</tr>
<tr>
<th id="5q8tvowp";>110</th>
<td>Milhausen_1984</td>
<td>Identification of a small rna containing the trypanosome spliced leader: A donor of shared 5′ sequences of trypanosomatid mRNAs?</td>
<td>Milhausen, Michael; Nelson, Richard G.; Sather, Susan; Selkirk, Murray; Agabian, Nina</td>
<td>1984</td>
<td>1984-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133438" target="_blank">PMC7133438</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6091897.0" target="_blank">6091897.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(84)90267-8" target="_blank">10.1016/0092-8674(84)90267-8</a></td>
<td>5q8tvowp</td>
<td>0.707784</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#so5jooj0">Bertholet_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a>, <a href="Topic_19.html#5r0oc9kz">Parsons_1984</a></td>
</tr>
<tr>
<th id="xrue7s6l";>111</th>
<td>Bacher_1994</td>
<td>Sequence analysis of the 3' termini of RNA1 and RNA2 of blueberry leaf mottle virus</td>
<td>Bacher, J.W.; Warkentin, D.; Ramsdell, D.; Hancock, J.F.</td>
<td>1994</td>
<td>1994-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7975879.0" target="_blank">7975879.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(94)90051-5" target="_blank">10.1016/0168-1702(94)90051-5</a></td>
<td>xrue7s6l</td>
<td>0.707647</td>
<td><a href="Topic_19.html#ia04jc9j">Rott_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td></td>
</tr>
<tr>
<th id="pbn9n37n";>112</th>
<td>Makino_1988</td>
<td>Defective-interfering particles of murine coronavirus: Mechanism of synthesis of defective viral RNAs</td>
<td>Makino, Shinji; Shieh, Chien-Kou; Keck, James G.; Lai, Michael M.C.</td>
<td>1988</td>
<td>1988-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131348" target="_blank">PMC7131348</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2831651.0" target="_blank">2831651.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(88)90237-1" target="_blank">10.1016/0042-6822(88)90237-1</a></td>
<td>pbn9n37n</td>
<td>0.706401</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="ktn8c0zx";>113</th>
<td>Othman_1995</td>
<td>Nucleotide sequence of the bean strain of southern bean mosaic virus</td>
<td>Othman, Yasmin; Hull, Roger</td>
<td>1995</td>
<td>1995-01-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130989" target="_blank">PMC7130989</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7831784.0" target="_blank">7831784.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(95)80044-1" target="_blank">10.1016/s0042-6822(95)80044-1</a></td>
<td>ktn8c0zx</td>
<td>0.705218</td>
<td><a href="Topic_19.html#ia04jc9j">Rott_1991</a>, <a href="Topic_09.html#kxjomk2s">Chieochansin_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="qvcgebjg";>114</th>
<td>Keck_1987</td>
<td>Multiple recombination sites at the 5′-end of murine coronavirus RNA</td>
<td>Keck, James G.; Stohlman, Stephen A.; Side, Lisa H.; Makino, Shinji; Lai, Michael M.C.</td>
<td>1987</td>
<td>1987-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130635" target="_blank">PMC7130635</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3027982.0" target="_blank">3027982.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(87)90413-2" target="_blank">10.1016/0042-6822(87)90413-2</a></td>
<td>qvcgebjg</td>
<td>0.703408</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#so5jooj0">Bertholet_1987</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="kreuzo0j";>115</th>
<td>Peng_2016</td>
<td>Characterization of the Role of Hexamer AGUAAA and Poly(A) Tail in Coronavirus Polyadenylation</td>
<td>Peng, Yu-Hui; Lin, Ching-Houng; Lin, Chao-Nan; Lo, Chen-Yu; Tsai, Tsung-Lin; Wu, Hung-Yi</td>
<td>2016</td>
<td>2016-10-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5070815" target="_blank">PMC5070815</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27760233.0" target="_blank">27760233.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0165077" target="_blank">10.1371/journal.pone.0165077</a></td>
<td>kreuzo0j</td>
<td>0.700780</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_55.html#bv42mbnp">Piñón_1997</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_19.html#4s71mh8j">van_Ooij_2006</a></td>
</tr>
<tr>
<th id="10p3mth2";>116</th>
<td>Mathew_2015</td>
<td>The Highly Conserved Codon following the Slippery Sequence Supports −1 Frameshift Efficiency at the HIV-1 Frameshift Site</td>
<td>Mathew, Suneeth F.; Crowe-McAuliffe, Caillan; Graves, Ryan; Cardno, Tony S.; McKinney, Cushla; Poole, Elizabeth S.; Tate, Warren P.</td>
<td>2015</td>
<td>2015-03-25</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4373837" target="_blank">PMC4373837</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25807539.0" target="_blank">25807539.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0122176" target="_blank">10.1371/journal.pone.0122176</a></td>
<td>10p3mth2</td>
<td>0.699710</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="rr6chvsh";>117</th>
<td>Fu_C_1994</td>
<td>A ribosomal frameshifting error during translation of the argl mRNA of Escherichla coli</td>
<td>Fu, Changwei; Parker, Jack</td>
<td>1994</td>
<td>1994-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087753" target="_blank">PMC7087753</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7515462.0" target="_blank">7515462.0</a></td>
<td><a href="https://doi.org/10.1007/bf00280474" target="_blank">10.1007/bf00280474</a></td>
<td>rr6chvsh</td>
<td>0.698030</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#69gftii4">Cobucci-Ponzano_2006</a></td>
</tr>
<tr>
<th id="ww70klka";>118</th>
<td>Payne_2017</td>
<td>Chapter 18 Family Arteriviridae</td>
<td>Payne, Susan</td>
<td>2017</td>
<td>2017-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149662" target="_blank">PMC7149662</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-803109-4.00018-0" target="_blank">10.1016/b978-0-12-803109-4.00018-0</a></td>
<td>ww70klka</td>
<td>0.697678</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a>, <a href="Topic_19.html#4spjox0r">Brinton_2008</a>, <a href="Topic_03.html#a9eci2qm">Balasuriya_2013</a></td>
</tr>
<tr>
<th id="zwl0safn";>119</th>
<td>Plant_2013</td>
<td>Altering SARS Coronavirus Frameshift Efficiency Affects Genomic and Subgenomic RNA Production</td>
<td>Plant, Ewan P.; Sims, Amy C.; Baric, Ralph S.; Dinman, Jonathan D.; Taylor, Deborah R.</td>
<td>2013</td>
<td>2013-01-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3564121" target="_blank">PMC3564121</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23334702.0" target="_blank">23334702.0</a></td>
<td><a href="https://doi.org/10.3390/v5010279" target="_blank">10.3390/v5010279</a></td>
<td>zwl0safn</td>
<td>0.697676</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="po9gnpr9";>120</th>
<td>Scott_1987</td>
<td>Origin of the human L1 elements: Proposed progenitor genes deduced from a consensus DNA sequence</td>
<td>Scott, Alan F.; Schmeckpeper, Barbara J.; Abdelrazik, Mona; Comey, Catherine Theisen; O'Hara, Bruce; Rossiter, Judith Pratt; Cooley, Tim; Heath, Peter; Smith, Kirby D.; Margolet, Louise</td>
<td>1987</td>
<td>1987-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7135745" target="_blank">PMC7135745</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3692483.0" target="_blank">3692483.0</a></td>
<td><a href="https://doi.org/10.1016/0888-7543(87)90003-6" target="_blank">10.1016/0888-7543(87)90003-6</a></td>
<td>po9gnpr9</td>
<td>0.694832</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_62.html#mj9ea464">Lapps_1987</a></td>
</tr>
<tr>
<th id="lorveab5";>121</th>
<td>Li_L_2008</td>
<td>Structural Lability in Stem–Loop 1 Drives a 5′ UTR–3′ UTR Interaction in Coronavirus Replication</td>
<td>Li, Lichun; Kang, Hyojeung; Liu, Pinghua; Makkinje, Nick; Williamson, Shawn T.; Leibowitz, Julian L.; Giedroc, David P.</td>
<td>2008</td>
<td>2008-03-28</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2652258" target="_blank">PMC2652258</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18289557.0" target="_blank">18289557.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2008.01.068" target="_blank">10.1016/j.jmb.2008.01.068</a></td>
<td>lorveab5</td>
<td>0.692903</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td></td>
</tr>
<tr>
<th id="se5s5tvw";>122</th>
<td>Vimaladithan_1998</td>
<td>Identification and Analysis of Frameshift Sites</td>
<td>Vimaladithan, Arunachalam; Farabaugh, Philip J.</td>
<td>1998</td>
<td>1998-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7120883" target="_blank">PMC7120883</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9770684.0" target="_blank">9770684.0</a></td>
<td><a href="https://doi.org/10.1385/0-89603-397-x:399" target="_blank">10.1385/0-89603-397-x:399</a></td>
<td>se5s5tvw</td>
<td>0.690695</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#il9mz5na">Rodnina_2020</a></td>
<td><a href="Topic_19.html#6z7rt5dd">Wang_2006</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="jbp8bxjz";>123</th>
<td>Derdeyn_1995</td>
<td>Characterization of defective-interfering RNAs of rubella virusgenerated during serial undiluted passage</td>
<td>Derdeyn, Cynthia A.; Frey, Teryl K.</td>
<td>1995</td>
<td>1995-01-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130850" target="_blank">PMC7130850</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7831776.0" target="_blank">7831776.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(95)80036-0" target="_blank">10.1016/s0042-6822(95)80036-0</a></td>
<td>jbp8bxjz</td>
<td>0.689448</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_19.html#so5jooj0">Bertholet_1987</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="cp94ecac";>124</th>
<td>Sztuba-Solińska_2011</td>
<td>Recombination of 5′ subgenomic RNA3a with genomic RNA3 of Brome mosaic bromovirus in vitro and in vivo</td>
<td>Sztuba-Solińska, Joanna; Dzianott, Aleksandra; Bujarski, Jozef J.</td>
<td>2011</td>
<td>2011-02-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111948" target="_blank">PMC7111948</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21111438.0" target="_blank">21111438.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.10.037" target="_blank">10.1016/j.virol.2010.10.037</a></td>
<td>cp94ecac</td>
<td>0.689334</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="kh2t0kfz";>125</th>
<td>O'Connor_2000</td>
<td>Downstream Ribosomal Entry for Translation of Coronavirus TGEV Gene 3b</td>
<td>O'Connor, Jennifer Black; Brian, David A.</td>
<td>2000</td>
<td>2000-03-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130589" target="_blank">PMC7130589</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10725209.0" target="_blank">10725209.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2000.0218" target="_blank">10.1006/viro.2000.0218</a></td>
<td>kh2t0kfz</td>
<td>0.689038</td>
<td><a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a></td>
<td><a href="Topic_62.html#yaw92db7">O'Connor_1999</a></td>
</tr>
<tr>
<th id="yb7ydyu2";>126</th>
<td>Jendrach_2014</td>
<td>Characterization of an internal ribosome entry site within mRNA 5 of murine hepatitis virus</td>
<td>Jendrach, M.; Thiel, V.; Siddell, S.</td>
<td>2014</td>
<td>2014-05-18</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087331" target="_blank">PMC7087331</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10416375.0" target="_blank">10416375.0</a></td>
<td><a href="https://doi.org/10.1007/s007050050556" target="_blank">10.1007/s007050050556</a></td>
<td>yb7ydyu2</td>
<td>0.687559</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td></td>
</tr>
<tr>
<th id="4z5jxxf2";>127</th>
<td>Otsuka_1999</td>
<td>Similarity relations of DNA and RNA polymerases investigated by the principal component analysis of amino acid sequences</td>
<td>Otsuka, Jinya; Kikuchi, Norihiro; Kojima, Shinji</td>
<td>1999</td>
<td>1999-10-12</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10525143.0" target="_blank">10525143.0</a></td>
<td><a href="https://doi.org/10.1016/s0167-4838(99)00187-9" target="_blank">10.1016/s0167-4838(99)00187-9</a></td>
<td>4z5jxxf2</td>
<td>0.684935</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="15s6otuz";>128</th>
<td>Marcheschi_2007</td>
<td>Programmed Ribosomal Frameshifting in SIV is Induced by a Highly Structured RNA Stem-Loop</td>
<td>Marcheschi, Ryan J.; Staple, David W.; Butcher, Samuel E.</td>
<td>2007</td>
<td>2007-10-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2080864" target="_blank">PMC2080864</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17868691.0" target="_blank">17868691.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2007.08.033" target="_blank">10.1016/j.jmb.2007.08.033</a></td>
<td>15s6otuz</td>
<td>0.683950</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="7g1lrzcj";>129</th>
<td>Beerens_2007</td>
<td>De Novo Initiation of RNA Synthesis by the Arterivirus RNA-Dependent RNA Polymerase</td>
<td>Beerens, Nancy; Selisko, Barbara; Ricagno, Stefano; Imbert, Isabelle; van der Zanden, Linda; Snijder, Eric J.; Canard, Bruno</td>
<td>2007</td>
<td>2007-05-30</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1951334" target="_blank">PMC1951334</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17537850.0" target="_blank">17537850.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00564-07" target="_blank">10.1128/jvi.00564-07</a></td>
<td>7g1lrzcj</td>
<td>0.682898</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="d7yxkpf2";>130</th>
<td>Maeda_1998</td>
<td>Importance of coronavirus negative-strand genomic RNA synthesis prior to subgenomic RNA transcription</td>
<td>Maeda, Akihiko; An, Sungwhan; Makino, Shinji</td>
<td>1998</td>
<td>1998-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127783" target="_blank">PMC7127783</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9833884.0" target="_blank">9833884.0</a></td>
<td><a href="https://doi.org/10.1016/s0168-1702(98)00090-2" target="_blank">10.1016/s0168-1702(98)00090-2</a></td>
<td>d7yxkpf2</td>
<td>0.682340</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a></td>
</tr>
<tr>
<th id="sw95s6xe";>131</th>
<td>Zongyu_1994</td>
<td>Detection of negative-stranded subgenomic RNAs but not of free leader in LDV-infected macrophages</td>
<td>Zongyu, Chen; Faaberg, Kay S.; Plagemann, Peter G.W.</td>
<td>1994</td>
<td>1994-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133802" target="_blank">PMC7133802</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7856308.0" target="_blank">7856308.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(94)90098-1" target="_blank">10.1016/0168-1702(94)90098-1</a></td>
<td>sw95s6xe</td>
<td>0.682340</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a></td>
</tr>
<tr>
<th id="rlnb674e";>132</th>
<td>Giedroc_2009</td>
<td>Frameshifting RNA pseudoknots: Structure and mechanism</td>
<td>Giedroc, David P.; Cornish, Peter V.</td>
<td>2009</td>
<td>2009-02-28</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2670756" target="_blank">PMC2670756</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18621088.0" target="_blank">18621088.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2008.06.008" target="_blank">10.1016/j.virusres.2008.06.008</a></td>
<td>rlnb674e</td>
<td>0.681033</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="lhchx3jt";>133</th>
<td>Ugarov_2008</td>
<td>Functional Circularity of Legitimate Qβ Replicase Templates</td>
<td>Ugarov, Victor I.; Chetverin, Alexander B.</td>
<td>2008</td>
<td>2008-06-06</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18466922.0" target="_blank">18466922.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2008.03.074" target="_blank">10.1016/j.jmb.2008.03.074</a></td>
<td>lhchx3jt</td>
<td>0.680550</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#7xkj27ph">Lai_M_2005</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="id4rgjnk";>134</th>
<td>Matsumoto_2018</td>
<td>Small synthetic molecule-stabilized RNA pseudoknot as an activator for –1 ribosomal frameshifting</td>
<td>Matsumoto, Saki; Caliskan, Neva; Rodnina, Marina V; Murata, Asako; Nakatani, Kazuhiko</td>
<td>2018</td>
<td>2018-09-19</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6144811" target="_blank">PMC6144811</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30085309.0" target="_blank">30085309.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gky689" target="_blank">10.1093/nar/gky689</a></td>
<td>id4rgjnk</td>
<td>0.680369</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a></td>
<td><a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
</tr>
<tr>
<th id="7e477y1x";>135</th>
<td>La_Monica_1992</td>
<td>Coronavirus mRNA synthesis: Identification of novel transcription initiation signals which are differentially regulated by different leader sequences</td>
<td>La Monica, Nicola; Yokomori, Kyoko; Lai, Michael M.C.</td>
<td>1992</td>
<td>1992-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131442" target="_blank">PMC7131442</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1566582.0" target="_blank">1566582.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90774-j" target="_blank">10.1016/0042-6822(92)90774-j</a></td>
<td>7e477y1x</td>
<td>0.678858</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a></td>
<td><a href="Topic_19.html#fma25t1n">Baker_1990</a></td>
</tr>
<tr>
<th id="2s14knw6";>136</th>
<td>Lai_M_1996</td>
<td>Recombination in large RNA viruses: Coronaviruses</td>
<td>Lai, Michael M.C.</td>
<td>1996</td>
<td>1996-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1006/smvy.1996.0046" target="_blank">10.1006/smvy.1996.0046</a></td>
<td>2s14knw6</td>
<td>0.677979</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td></td>
</tr>
<tr>
<th id="2fkghukw";>137</th>
<td>Guo_Y_2013</td>
<td>Molecular dynamics simulation of RNA pseudoknot unfolding pathway</td>
<td>Guo, Yun; Zhang, Wenbing</td>
<td>2013</td>
<td>2013-03-12</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149040" target="_blank">PMC7149040</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/s11859-013-0905-0" target="_blank">10.1007/s11859-013-0905-0</a></td>
<td>2fkghukw</td>
<td>0.676975</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a></td>
<td><a href="Topic_19.html#1fdpvswz">Green_2008</a>, <a href="Topic_19.html#9pkvj14m">Singleton_2018</a></td>
</tr>
<tr>
<th id="65bkj1s4";>138</th>
<td>Baranov_2005</td>
<td>Programmed ribosomal frameshifting in decoding the SARS-CoV genome</td>
<td>Baranov, Pavel V.; Henderson, Clark M.; Anderson, Christine B.; Gesteland, Raymond F.; Atkins, John F.; Howard, Michael T.</td>
<td>2005</td>
<td>2005-02-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111862" target="_blank">PMC7111862</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15680415.0" target="_blank">15680415.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2004.11.038" target="_blank">10.1016/j.virol.2004.11.038</a></td>
<td>65bkj1s4</td>
<td>0.676843</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="ejgkrxoe";>139</th>
<td>LUYTJES_1996</td>
<td>Replication of Synthetic Defective Interfering RNAs Derived from Coronavirus Mouse Hepatitis Virus-A59</td>
<td>LUYTJES, WILLEM; GERRITSMA, HELEEN; SPAAN, WILLY J.M.</td>
<td>1996</td>
<td>1996-02-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130680" target="_blank">PMC7130680</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8614984.0" target="_blank">8614984.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1996.0044" target="_blank">10.1006/viro.1996.0044</a></td>
<td>ejgkrxoe</td>
<td>0.676334</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a></td>
<td></td>
</tr>
<tr>
<th id="8crvjzz4";>140</th>
<td>Olsthoorn_2010</td>
<td>Functional analysis of the SRV-1 RNA frameshifting pseudoknot</td>
<td>Olsthoorn, René C. L.; Reumerman, Richard; Hilbers, Cornelis W.; Pleij, Cornelis W. A.; Heus, Hans A.</td>
<td>2010</td>
<td>2010-07-17</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2995055" target="_blank">PMC2995055</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20639537.0" target="_blank">20639537.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq629" target="_blank">10.1093/nar/gkq629</a></td>
<td>8crvjzz4</td>
<td>0.675950</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#ppb9k3zu">Kang_1998</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a></td>
</tr>
<tr>
<th id="x0t9fu4d";>141</th>
<td>Dinan_2020</td>
<td>A case for a negative-strand coding sequence in a group of positive-sense RNA viruses</td>
<td>Dinan, Adam M; Lukhovitskaya, Nina I; Olendraite, Ingrida; Firth, Andrew E</td>
<td>2020</td>
<td>2020-02-10</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010960" target="_blank">PMC7010960</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/32064120.0" target="_blank">32064120.0</a></td>
<td><a href="https://doi.org/10.1093/ve/veaa007" target="_blank">10.1093/ve/veaa007</a></td>
<td>x0t9fu4d</td>
<td>0.675595</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#t16n853r">Dinan_2019</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="bfpnzwyl";>142</th>
<td>Sittidilokratna_2008</td>
<td>RNA transcription analysis and completion of the genome sequence of yellow head nidovirus</td>
<td>Sittidilokratna, Nusra; Dangtip, Sirintip; Cowley, Jeff A.; Walker, Peter J.</td>
<td>2008</td>
<td>2008-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114370" target="_blank">PMC7114370</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18582978.0" target="_blank">18582978.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2008.05.008" target="_blank">10.1016/j.virusres.2008.05.008</a></td>
<td>bfpnzwyl</td>
<td>0.674408</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a></td>
</tr>
<tr>
<th id="win7duc8";>143</th>
<td>Guo_S_2015</td>
<td>TMV mutants with poly(A) tracts of different lengths demonstrate structural variations in 3′UTR affecting viral RNAs accumulation and symptom expression</td>
<td>Guo, Song; Kierzek, Elzbieta; Chen, Gang; Zhou, Yi-Jun; Wong, Sek-Man</td>
<td>2015</td>
<td>2015-12-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4683447" target="_blank">PMC4683447</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26678425.0" target="_blank">26678425.0</a></td>
<td><a href="https://doi.org/10.1038/srep18412" target="_blank">10.1038/srep18412</a></td>
<td>win7duc8</td>
<td>0.674408</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#lorveab5">Li_L_2008</a></td>
</tr>
<tr>
<th id="azzgygzk";>144</th>
<td>Finch_2015</td>
<td>Characterization of Ribosomal Frameshifting in Theiler's Murine Encephalomyelitis Virus</td>
<td>Finch, Leanne K.; Ling, Roger; Napthine, Sawsan; Olspert, Allan; Michiels, Thomas; Lardinois, Cécile; Bell, Susanne; Loughran, Gary; Brierley, Ian; Firth, Andrew E.</td>
<td>2015</td>
<td>2015-06-10</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4524249" target="_blank">PMC4524249</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26063423.0" target="_blank">26063423.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.01043-15" target="_blank">10.1128/jvi.01043-15</a></td>
<td>azzgygzk</td>
<td>0.674113</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#il9vbbgk">DEN_BOON_1995</a></td>
</tr>
<tr>
<th id="x1nmbr4g";>145</th>
<td>Firth_2010</td>
<td>Evidence for ribosomal frameshifting and a novel overlapping gene in the genomes of insect-specific flaviviruses</td>
<td>Firth, Andrew E.; Blitvich, Bradley J.; Wills, Norma M.; Miller, Cathy L.; Atkins, John F.</td>
<td>2010</td>
<td>2010-03-30</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2830293" target="_blank">PMC2830293</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20097399.0" target="_blank">20097399.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2009.12.033" target="_blank">10.1016/j.virol.2009.12.033</a></td>
<td>x1nmbr4g</td>
<td>0.673536</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="1k99yv4i";>146</th>
<td>Lee_N_2010</td>
<td>Cooperative translocation enhances the unwinding of duplex DNA by SARS coronavirus helicase nsP13</td>
<td>Lee, Na-Ra; Kwon, Hyun-Mi; Park, Kkothanahreum; Oh, Sangtaek; Jeong, Yong-Joo; Kim, Dong-Eun</td>
<td>2010</td>
<td>2010-07-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2995068" target="_blank">PMC2995068</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20671029.0" target="_blank">20671029.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq647" target="_blank">10.1093/nar/gkq647</a></td>
<td>1k99yv4i</td>
<td>0.672691</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#gs8s7kn8">Herold_2001</a></td>
<td><a href="Topic_19.html#1ssh296a">Adedeji_2012</a>, <a href="Topic_19.html#kv3otavl">Reynolds_2015</a></td>
</tr>
<tr>
<th id="thsmrnrc";>147</th>
<td>Napthine_1999</td>
<td>The role of RNA pseudoknot stem 1 length in the promotion of efficient −1 ribosomal frameshifting 1 1 Edited by D. E. Draper</td>
<td>Napthine, Sawsan; Liphardt, Jan; Bloys, Alison; Routledge, Samantha; Brierley, Ian</td>
<td>1999</td>
<td>1999-05-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126229" target="_blank">PMC7126229</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10329144.0" target="_blank">10329144.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1999.2688" target="_blank">10.1006/jmbi.1999.2688</a></td>
<td>thsmrnrc</td>
<td>0.671174</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#z4mgtb6s">Liphardt_1999</a></td>
</tr>
<tr>
<th id="5xqnpur7";>148</th>
<td>Cao_S_2008</td>
<td>Predicting ribosomal frameshifting efficiency</td>
<td>Cao, Song; Chen, Shi-Jie</td>
<td>2008</td>
<td>2008-03-11</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2442619" target="_blank">PMC2442619</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18367782.0" target="_blank">18367782.0</a></td>
<td><a href="https://doi.org/10.1088/1478-3975/5/1/016002" target="_blank">10.1088/1478-3975/5/1/016002</a></td>
<td>5xqnpur7</td>
<td>0.670938</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#rlnb674e">Giedroc_2009</a></td>
</tr>
<tr>
<th id="z4mgtb6s";>149</th>
<td>Liphardt_1999</td>
<td>Evidence for an RNA pseudoknot loop-helix interaction essential for efficient −1 ribosomal frameshifting 1 1 Edited by D. E. Draper</td>
<td>Liphardt, Jan; Napthine, Sawsan; Kontos, Harry; Brierley, Ian</td>
<td>1999</td>
<td>1999-05-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7141562" target="_blank">PMC7141562</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10329145.0" target="_blank">10329145.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1999.2689" target="_blank">10.1006/jmbi.1999.2689</a></td>
<td>z4mgtb6s</td>
<td>0.670340</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#thsmrnrc">Napthine_1999</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="k4q6nx73";>150</th>
<td>Lu_J_2011</td>
<td>A 5'-proximal Stem-loop Structure of 5' Untranslated Region of Porcine Reproductive and Respiratory Syndrome Virus Genome Is Key for Virus Replication</td>
<td>Lu, Jiaqi; Gao, Fei; Wei, Zuzhang; Liu, Ping; Liu, Changlong; Zheng, Haihong; Li, Yanhua; Lin, Tao; Yuan, Shishan</td>
<td>2011</td>
<td>2011-04-15</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3096946" target="_blank">PMC3096946</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21496223.0" target="_blank">21496223.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-8-172" target="_blank">10.1186/1743-422x-8-172</a></td>
<td>k4q6nx73</td>
<td>0.669904</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a></td>
</tr>
<tr>
<th id="nr2xmcs0";>151</th>
<td>Zhong_2016</td>
<td>Mechanical unfolding kinetics of the SRV-1 gag-pro mRNA pseudoknot: possible implications for −1 ribosomal frameshifting stimulation</td>
<td>Zhong, Zhensheng; Yang, Lixia; Zhang, Haiping; Shi, Jiahao; Vandana, J. Jeya; Lam, Do Thuy Uyen Ha; Olsthoorn, René C. L.; Lu, Lanyuan; Chen, Gang</td>
<td>2016</td>
<td>2016-12-21</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175198" target="_blank">PMC5175198</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28000744.0" target="_blank">28000744.0</a></td>
<td><a href="https://doi.org/10.1038/srep39549" target="_blank">10.1038/srep39549</a></td>
<td>nr2xmcs0</td>
<td>0.669493</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#8jzoymfy">Theimer_1999</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="cciyb05w";>152</th>
<td>Yang_2015</td>
<td>SHAPE analysis of the RNA secondary structure of the Mouse Hepatitis Virus 5’ untranslated region and N-terminal nsp1 coding sequences</td>
<td>Yang, Dong; Liu, Pinghua; Wudeck, Elyse V.; Giedroc, David P.; Leibowitz, Julian L.</td>
<td>2015</td>
<td>2015-01-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4280293" target="_blank">PMC4280293</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25462342.0" target="_blank">25462342.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2014.11.001" target="_blank">10.1016/j.virol.2014.11.001</a></td>
<td>cciyb05w</td>
<td>0.667295</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td></td>
</tr>
<tr>
<th id="k4gtl2o7";>153</th>
<td>Penno_2017</td>
<td>Stimulation of reverse transcriptase generated cDNAs with specific indels by template RNA structure: retrotransposon, dNTP balance, RT-reagent usage</td>
<td>Penno, Christophe; Kumari, Romika; Baranov, Pavel V.; van Sinderen, Douwe; Atkins, John F.</td>
<td>2017</td>
<td>2017-09-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5737552" target="_blank">PMC5737552</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28973469.0" target="_blank">28973469.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkx689" target="_blank">10.1093/nar/gkx689</a></td>
<td>k4gtl2o7</td>
<td>0.667193</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_21.html#c31xsyeo">Moser_2012</a></td>
</tr>
<tr>
<th id="nnefbeo6";>154</th>
<td>Tam_A_1991</td>
<td>Hepatitis E virus (HEV): Molecular cloning and sequencing of the full-length viral genome</td>
<td>Tam, Albert W.; Smith, Matthew M.; Guerra, Martha E.; Huang, Chiao-Chain; Bradley, Daniel W.; Fry, Kirk E.; Reyes, Gregory R.</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1926770.0" target="_blank">1926770.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90760-9" target="_blank">10.1016/0042-6822(91)90760-9</a></td>
<td>nnefbeo6</td>
<td>0.665254</td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="vtrfqozl";>155</th>
<td>Makino_1988</td>
<td>Primary structure and translation of a defective interfering rna of murine coronavirus</td>
<td>Makino, Shinji; Shieh, Chien-Kou; Soe, Lisa H.; Baker, Susan C.; Lai, Michael M.C.</td>
<td>1988</td>
<td>1988-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131284" target="_blank">PMC7131284</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2845661.0" target="_blank">2845661.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(88)90526-0" target="_blank">10.1016/0042-6822(88)90526-0</a></td>
<td>vtrfqozl</td>
<td>0.664639</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="4cjqh2qv";>156</th>
<td>Moon_2007</td>
<td>FSDB: A frameshift signal database</td>
<td>Moon, Sanghoon; Byun, Yanga; Han, Kyungsook</td>
<td>2007</td>
<td>2007-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17631420.0" target="_blank">17631420.0</a></td>
<td><a href="https://doi.org/10.1016/j.compbiolchem.2007.05.004" target="_blank">10.1016/j.compbiolchem.2007.05.004</a></td>
<td>4cjqh2qv</td>
<td>0.663870</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#czjjnlkf">Moon_2006</a></td>
<td><a href="Topic_19.html#xgwbl8em">Henderson_2006</a>, <a href="Topic_19.html#ly55753z">Brierley_2009</a></td>
</tr>
<tr>
<th id="8lbhu56q";>157</th>
<td>Matsufuji_1995</td>
<td>Autoregulatory frameshifting in decoding mammalian ornithine decarboxylase antizyme</td>
<td>Matsufuji, Senya; Matsufuji, Tamiko; Miyazaki, Youichi; Murakami, Yasuko; Atkins, John F; Gesteland, Raymond F; Hayashi, Shin-ichi</td>
<td>1995</td>
<td>1995-01-13</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133313" target="_blank">PMC7133313</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7813017.0" target="_blank">7813017.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(95)90450-6" target="_blank">10.1016/0092-8674(95)90450-6</a></td>
<td>8lbhu56q</td>
<td>0.663681</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
<td><a href="Topic_19.html#69gftii4">Cobucci-Ponzano_2006</a></td>
</tr>
<tr>
<th id="ck0jpp7e";>158</th>
<td>Horsburgh_1996</td>
<td>Translational Recoding Induced by G-Rich mRNA Sequences That Form Unusual Structures</td>
<td>Horsburgh, Brian C; Kollmus, Heike; Hauser, Hansjörg; Coen, Donald M</td>
<td>1996</td>
<td>1996-09-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126349" target="_blank">PMC7126349</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8808630.0" target="_blank">8808630.0</a></td>
<td><a href="https://doi.org/10.1016/s0092-8674(00)80170-1" target="_blank">10.1016/s0092-8674(00)80170-1</a></td>
<td>ck0jpp7e</td>
<td>0.663345</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="d4ok8wxs";>159</th>
<td>Cimino_2011</td>
<td>Multifaceted Regulation of Translational Readthrough by RNA Replication Elements in a Tombusvirus</td>
<td>Cimino, Peter A.; Nicholson, Beth L.; Wu, Baodong; Xu, Wei; White, K. Andrew</td>
<td>2011</td>
<td>2011-12-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3234231" target="_blank">PMC3234231</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22174683.0" target="_blank">22174683.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1002423" target="_blank">10.1371/journal.ppat.1002423</a></td>
<td>d4ok8wxs</td>
<td>0.662851</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
</tr>
<tr>
<th id="foskvkwn";>160</th>
<td>Vopálenský_2018</td>
<td>Messenger RNAs transcribed from yeast linear cytoplasmic plasmids possess unconventional 5’ and 3’ UTRs and suggest a novel mechanism of translation</td>
<td>Václav Vopálenský; Michal Sýkora; Tomáš Mašek; Martin Pospíšek</td>
<td>2018</td>
<td>2018-05-17</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/325316" target="_blank">10.1101/325316</a></td>
<td>foskvkwn</td>
<td>0.661835</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#ec1uq448">Bencun_2018</a></td>
<td><a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="ai8n1oeq";>161</th>
<td>Pleij_1994</td>
<td>RNA pseudoknots</td>
<td>Pleij, Cornelis W.A.</td>
<td>1994</td>
<td>1994-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133496" target="_blank">PMC7133496</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/s0959-440x(94)90101-5" target="_blank">10.1016/s0959-440x(94)90101-5</a></td>
<td>ai8n1oeq</td>
<td>0.661651</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="a22s8xyz";>162</th>
<td>Plant_2005</td>
<td>A Three-Stemmed mRNA Pseudoknot in the SARS Coronavirus Frameshift Signal</td>
<td>Plant, Ewan P; Pérez-Alvarado, Gabriela C; Jacobs, Jonathan L; Mukhopadhyay, Bani; Hennig, Mirko; Dinman, Jonathan D</td>
<td>2005</td>
<td>2005-05-17</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1110908" target="_blank">PMC1110908</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15884978.0" target="_blank">15884978.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pbio.0030172" target="_blank">10.1371/journal.pbio.0030172</a></td>
<td>a22s8xyz</td>
<td>0.658947</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td></td>
</tr>
<tr>
<th id="pwyl57nn";>163</th>
<td>Rasschaert_1987</td>
<td>Enteric coronavirus TGEV: partial sequence of the genomic RNA, its organization and expression</td>
<td>Rasschaert, Denis; Gelfi, Jacqueline; Laude, Hubert</td>
<td>1987</td>
<td>1987-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130962" target="_blank">PMC7130962</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2825819.0" target="_blank">2825819.0</a></td>
<td><a href="https://doi.org/10.1016/0300-9084(87)90178-7" target="_blank">10.1016/0300-9084(87)90178-7</a></td>
<td>pwyl57nn</td>
<td>0.658894</td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_62.html#wdi66k53">Jouvenne_1992</a>, <a href="Topic_62.html#mj9ea464">Lapps_1987</a></td>
</tr>
<tr>
<th id="lam9t14l";>164</th>
<td>Vennema_1991</td>
<td>Enhancement of the vaccinia virus/phage T7 RNA polymerase expression system using encephalomyocarditis virus 5'-untranslated region sequences</td>
<td>Vennema, Harry; Rijnbrand, Rene; Heijnen, Leo; Horzinek, Marian C.; Spaan, Willy J.M.</td>
<td>1991</td>
<td>1991-12-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131192" target="_blank">PMC7131192</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1660838.0" target="_blank">1660838.0</a></td>
<td><a href="https://doi.org/10.1016/0378-1119(91)90435-e" target="_blank">10.1016/0378-1119(91)90435-e</a></td>
<td>lam9t14l</td>
<td>0.658485</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_14.html#ecvpmuz3">Brun_2014</a></td>
</tr>
<tr>
<th id="vvnhktca";>165</th>
<td>Toshio_1989</td>
<td>Sequence analysis of nucleocapsid gene and leader RNA of human coronavirus OC43</td>
<td>Toshio, Kamahora; Soe, Lisa H.; Lai, Michael M.C.</td>
<td>1989</td>
<td>1989-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134120" target="_blank">PMC7134120</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2541577.0" target="_blank">2541577.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(89)90048-8" target="_blank">10.1016/0168-1702(89)90048-8</a></td>
<td>vvnhktca</td>
<td>0.657522</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="4g8qtlfs";>166</th>
<td>Michiels_2001</td>
<td>Solution structure of the pseudoknot of SRV-1 RNA, involved in ribosomal frameshifting 1 1 Edited by I. Tinoco</td>
<td>Michiels, Paul J.A; Versleijen, Alexandra A.M; Verlaan, Paul W; Pleij, Cornelis W.A; Hilbers, Cornelis W; Heus, Hans A</td>
<td>2001</td>
<td>2001-07-27</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11501999.0" target="_blank">11501999.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.2001.4823" target="_blank">10.1006/jmbi.2001.4823</a></td>
<td>4g8qtlfs</td>
<td>0.657202</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a></td>
<td></td>
</tr>
<tr>
<th id="ug4gjst2";>167</th>
<td>Landry_2009</td>
<td>RPS25 is essential for translation initiation by the Dicistroviridae and hepatitis C viral IRESs</td>
<td>Landry, Dori M.; Hertz, Marla I.; Thompson, Sunnie R.</td>
<td>2009</td>
<td>2009-12-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2788332" target="_blank">PMC2788332</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19952110.0" target="_blank">19952110.0</a></td>
<td><a href="https://doi.org/10.1101/gad.1832209" target="_blank">10.1101/gad.1832209</a></td>
<td>ug4gjst2</td>
<td>0.657001</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="kw2cedm7";>168</th>
<td>Brown_1984</td>
<td>Avian infectious bronchitis virus genomic RNA contains sequence homologies at the intergenic boundaries</td>
<td>Brown, T.D.K.; Boursnell, M.E.G.</td>
<td>1984</td>
<td>1984-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134132" target="_blank">PMC7134132</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/0168-1702(84)90031-5" target="_blank">10.1016/0168-1702(84)90031-5</a></td>
<td>kw2cedm7</td>
<td>0.656330</td>
<td><a href="Topic_37.html#402ls2aq">Endoh_2005</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="uctd2mnd";>169</th>
<td>Magliery_2001</td>
<td>Expanding the genetic code: selection of efficient suppressors of four-base codons and identification of “shifty” four-base codons with a library approach in Escherichia coli 1 1 Edited by M. Gottesman</td>
<td>Magliery, Thomas J; Anderson, J.Christopher; Schultz, Peter G</td>
<td>2001</td>
<td>2001-03-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125544" target="_blank">PMC7125544</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11273699.0" target="_blank">11273699.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.2001.4518" target="_blank">10.1006/jmbi.2001.4518</a></td>
<td>uctd2mnd</td>
<td>0.655461</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#xk4yuibj">Belcourt_1990</a></td>
</tr>
<tr>
<th id="x1dv7ag8";>170</th>
<td>Snijder_1991</td>
<td>Comparison of the genome organization of toro- and coronaviruses: Evidence for two nonhomologous RNA recombination events during berne virus evolution</td>
<td>Snijder, Eric J.; Den Boon, Johan A.; Horzinek, Marian C.; Spaan, Willy J.M.</td>
<td>1991</td>
<td>1991-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126633" target="_blank">PMC7126633</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1984666.0" target="_blank">1984666.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90056-h" target="_blank">10.1016/0042-6822(91)90056-h</a></td>
<td>x1dv7ag8</td>
<td>0.654832</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_62.html#wdi66k53">Jouvenne_1992</a></td>
</tr>
<tr>
<th id="e18licyc";>171</th>
<td>Tholstrup_2011</td>
<td>mRNA pseudoknot structures can act as ribosomal roadblocks</td>
<td>Tholstrup, Jesper; Oddershede, Lene B.; Sørensen, Michael A.</td>
<td>2011</td>
<td>2011-09-08</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245918" target="_blank">PMC3245918</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21908395.0" target="_blank">21908395.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr686" target="_blank">10.1093/nar/gkr686</a></td>
<td>e18licyc</td>
<td>0.651989</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ly55753z">Brierley_2009</a></td>
</tr>
<tr>
<th id="mcfmxqp2";>172</th>
<td>Manktelow_2005</td>
<td>Characterization of the frameshift signal of Edr, a mammalian example of programmed −1 ribosomal frameshifting</td>
<td>Manktelow, Emily; Shigemoto, Kazuhiro; Brierley, Ian</td>
<td>2005</td>
<td>2005-03-14</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1065257" target="_blank">PMC1065257</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15767280.0" target="_blank">15767280.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gki299" target="_blank">10.1093/nar/gki299</a></td>
<td>mcfmxqp2</td>
<td>0.651324</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#6z7rt5dd">Wang_2006</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="ly55753z";>173</th>
<td>Brierley_2009</td>
<td>Pseudoknot-Dependent Programmed —1 Ribosomal Frameshifting: Structures, Mechanisms and Models</td>
<td>Brierley, Ian; Gilbert, Robert J.C.; Pennell, Simon</td>
<td>2009</td>
<td>2009-07-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7119991" target="_blank">PMC7119991</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-0-387-89382-2_7" target="_blank">10.1007/978-0-387-89382-2_7</a></td>
<td>ly55753z</td>
<td>0.650949</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#i3yiuai7">Namy_2006</a></td>
</tr>
<tr>
<th id="x8pkgsk1";>174</th>
<td>Stork_2011</td>
<td>RNA chaperone activity of the tombusviral p33 replication protein facilitates initiation of RNA synthesis by the viral RdRp in vitro</td>
<td>Stork, Jozsef; Kovalev, Nikolay; Sasvari, Zsuzsanna; Nagy, Peter D.</td>
<td>2011</td>
<td>2011-01-20</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21071052.0" target="_blank">21071052.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.10.015" target="_blank">10.1016/j.virol.2010.10.015</a></td>
<td>x8pkgsk1</td>
<td>0.650556</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="gkhdfd4h";>175</th>
<td>Wesley_1989</td>
<td>Nucleotide sequence of coronavirus TGEV genomic RNA: evidence for 3 mRNA species between the peplomer and matrix protein genes</td>
<td>Wesley, Ronald D.; Cheung, Andrew K.; Michael, David D.; Woods, Roger D.</td>
<td>1989</td>
<td>1989-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134121" target="_blank">PMC7134121</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2549745.0" target="_blank">2549745.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(89)90008-7" target="_blank">10.1016/0168-1702(89)90008-7</a></td>
<td>gkhdfd4h</td>
<td>0.650172</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a></td>
<td><a href="Topic_62.html#wdi66k53">Jouvenne_1992</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="t16n853r";>176</th>
<td>Dinan_2019</td>
<td>A case for a reverse-frame coding sequence in a group of positive-sense RNA viruses</td>
<td>Adam M. Dinan; Nina I. Lukhovitskaya; Ingrida Olendraite; Andrew E. Firth</td>
<td>2019</td>
<td>2019-06-10</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/664342" target="_blank">10.1101/664342</a></td>
<td>t16n853r</td>
<td>0.650106</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#x0t9fu4d">Dinan_2020</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="rdru7ifb";>177</th>
<td>Advani_2015</td>
<td>Reprogramming the genetic code: the emerging role of ribosomal frameshifting in regulating cellular gene expression</td>
<td>Advani, Vivek M.; Dinman, Jonathan D.</td>
<td>2015</td>
<td>2015-12-12</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4749135" target="_blank">PMC4749135</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26661048.0" target="_blank">26661048.0</a></td>
<td><a href="https://doi.org/10.1002/bies.201500131" target="_blank">10.1002/bies.201500131</a></td>
<td>rdru7ifb</td>
<td>0.646411</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="loey5xq9";>178</th>
<td>Huh_C_1995</td>
<td>Structural organization, expression and chromosomal mapping of the mouse cystatin-C-encoding gene (Cst3)</td>
<td>Huh, Changgoo; Nagle, James W.; Kozak, Christine A.; Abrahamson, Magnus; Karlsson, Stefan</td>
<td>1995</td>
<td>1995-01-23</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7835704.0" target="_blank">7835704.0</a></td>
<td><a href="https://doi.org/10.1016/0378-1119(94)00728-b" target="_blank">10.1016/0378-1119(94)00728-b</a></td>
<td>loey5xq9</td>
<td>0.645480</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td></td>
</tr>
<tr>
<th id="zyaqh139";>179</th>
<td>Brierley_1987</td>
<td>An efficient ribosomal frame-shifting signal in the polymerase-encoding region of the coronavirus IBV.</td>
<td>Brierley, I; Boursnell, M E; Binns, M M; Bilimoria, B; Blok, V C; Brown, T D; Inglis, S C</td>
<td>1987</td>
<td>1987-12-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC553849" target="_blank">PMC553849</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3428275.0" target="_blank">3428275.0</a></td>
<td></td>
<td>zyaqh139</td>
<td>0.645182</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="wyhsxj6g";>180</th>
<td>Edwards_2014</td>
<td>Coat protein expression strategy of oat blue dwarf virus</td>
<td>Edwards, Michael C.; Weiland, John J.</td>
<td>2014</td>
<td>2014-02-28</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24503092.0" target="_blank">24503092.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2013.12.018" target="_blank">10.1016/j.virol.2013.12.018</a></td>
<td>wyhsxj6g</td>
<td>0.645182</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td></td>
</tr>
<tr>
<th id="rzl03vn1";>181</th>
<td>Chevin_2015</td>
<td>Characterisation of Structural Proteins from Chronic Bee Paralysis Virus (CBPV) Using Mass Spectrometry</td>
<td>Chevin, Aurore; Coutard, Bruno; Blanchard, Philippe; Dabert-Gay, Anne-Sophie; Ribière-Chabert, Magali; Thiéry, Richard</td>
<td>2015</td>
<td>2015-06-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488741" target="_blank">PMC4488741</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26110588.0" target="_blank">26110588.0</a></td>
<td><a href="https://doi.org/10.3390/v7062774" target="_blank">10.3390/v7062774</a></td>
<td>rzl03vn1</td>
<td>0.645176</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="1pbd4maf";>182</th>
<td>Sztuba-Solinska_2013</td>
<td>Structural complexity of Dengue virus untranslated regions: cis-acting RNA motifs and pseudoknot interactions modulating functionality of the viral genome</td>
<td>Sztuba-Solinska, Joanna; Teramoto, Tadahisa; Rausch, Jason W.; Shapiro, Bruce A.; Padmanabhan, Radhakrishnan; Le Grice, Stuart F. J.</td>
<td>2013</td>
<td>2013-03-26</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3643606" target="_blank">PMC3643606</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23531545.0" target="_blank">23531545.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkt203" target="_blank">10.1093/nar/gkt203</a></td>
<td>1pbd4maf</td>
<td>0.642339</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="tvjqnxy8";>183</th>
<td>Meyers_1992</td>
<td>Rearrangement of viral sequences in cytopathogenic pestiviruses</td>
<td>Meyers, Gregor; Tautz, Norbert; Stark, Robert; Brownlie, Joe; Dubovi, Edward J.; Collett, Marc S.; Thiel, Heinz-Jürgen</td>
<td>1992</td>
<td>1992-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131167" target="_blank">PMC7131167</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1329326.0" target="_blank">1329326.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90199-y" target="_blank">10.1016/0042-6822(92)90199-y</a></td>
<td>tvjqnxy8</td>
<td>0.642023</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="bam3pa70";>184</th>
<td>Lee_H_1991</td>
<td>The complete sequence (22 kilobases) of murine coronavirus gene 1 encoding the putative proteases and RNA polymerase</td>
<td>Lee, Han-Jung; Shieh, Chien-Kou; Gorbalenya, Alexander E.; Koonin, Eugene V.; La Monica, Nicola; Tuler, Jeremy; Bagdzhadzhyan, Anush; Lai, Michael M.C.</td>
<td>1991</td>
<td>1991-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131164" target="_blank">PMC7131164</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1846489.0" target="_blank">1846489.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90071-i" target="_blank">10.1016/0042-6822(91)90071-i</a></td>
<td>bam3pa70</td>
<td>0.641365</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="t21l6i3f";>185</th>
<td>Kovalev_2014</td>
<td>The Expanding Functions of Cellular Helicases: The Tombusvirus RNA Replication Enhancer Co-opts the Plant eIF4AIII-Like AtRH2 and the DDX5-Like AtRH5 DEAD-Box RNA Helicases to Promote Viral Asymmetric RNA Replication</td>
<td>Kovalev, Nikolay; Nagy, Peter D.</td>
<td>2014</td>
<td>2014-04-17</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3990711" target="_blank">PMC3990711</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24743583.0" target="_blank">24743583.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1004051" target="_blank">10.1371/journal.ppat.1004051</a></td>
<td>t21l6i3f</td>
<td>0.640561</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#06qfbvlr">Li_Z_2009</a></td>
</tr>
<tr>
<th id="aofirvc8";>186</th>
<td>Chen_2017</td>
<td>Coordination among tertiary base pairs results in an efficient frameshift-stimulating RNA pseudoknot</td>
<td>Chen, Yu-Ting; Chang, Kai-Chun; Hu, Hao-Teng; Chen, Yi-Lan; Lin, You-Hsin; Hsu, Chiung-Fang; Chang, Cheng-Fu; Chang, Kung-Yao; Wen, Jin-Der</td>
<td>2017</td>
<td>2017-06-02</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5449628" target="_blank">PMC5449628</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28334864.0" target="_blank">28334864.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkx134" target="_blank">10.1093/nar/gkx134</a></td>
<td>aofirvc8</td>
<td>0.640234</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="ahrrphm8";>187</th>
<td>Ward_2020</td>
<td>The RNA pseudoknots in foot-and-mouth disease virus are dispensable for genome replication but essential for the production of infectious virus</td>
<td>Joseph C. Ward; Lidia Lasecka-Dykes; Chris Neil; Oluwapelumi Adeyemi; Sarah Gold; Niall McLean; Caroline Wright; Morgan R. Herod; David Kealy; Emma Warner; Donald P. King; Tobias J. Tuthill; David J. Rowlands; Nicola J. Stonehouse</td>
<td>2020</td>
<td>2020-01-11</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.01.10.901801" target="_blank">10.1101/2020.01.10.901801</a></td>
<td>ahrrphm8</td>
<td>0.639594</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="l2qrlpwh";>188</th>
<td>Geng_2019</td>
<td>Variable 3’polyadenylation of Wheat yellow mosaic virus and its novel effects on translation and replication</td>
<td>Geng, Guowei; Yu, Chengming; Li, Xiangdong; Yuan, Xuefeng</td>
<td>2019</td>
<td>2019-02-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6383263" target="_blank">PMC6383263</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30786887.0" target="_blank">30786887.0</a></td>
<td><a href="https://doi.org/10.1186/s12985-019-1130-z" target="_blank">10.1186/s12985-019-1130-z</a></td>
<td>l2qrlpwh</td>
<td>0.637103</td>
<td><a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#tu50ab1b">Chen_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a></td>
</tr>
<tr>
<th id="t1nfyzf5";>189</th>
<td>Boursnell_1984</td>
<td>Sequencing of coronavirus IBV genomic RNA: a 195-base open reading frame encoded by mRNA B</td>
<td>Boursnell, M.E.G.; Brown, T.D.K.</td>
<td>1984</td>
<td>1984-08-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7157916" target="_blank">PMC7157916</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6092234.0" target="_blank">6092234.0</a></td>
<td><a href="https://doi.org/10.1016/0378-1119(84)90169-0" target="_blank">10.1016/0378-1119(84)90169-0</a></td>
<td>t1nfyzf5</td>
<td>0.635879</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_62.html#wdi66k53">Jouvenne_1992</a></td>
</tr>
<tr>
<th id="o7mt8hr6";>190</th>
<td>Kim_J_2007</td>
<td>A pseudoknot improves selection efficiency in ribosome display</td>
<td>Kim, Jong-Myung; Shin, Ho-Joon; Kim, Kyongmin; Lee, Myung-Shin</td>
<td>2007</td>
<td>2007-04-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7090622" target="_blank">PMC7090622</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17827535.0" target="_blank">17827535.0</a></td>
<td><a href="https://doi.org/10.1007/s12033-007-0017-1" target="_blank">10.1007/s12033-007-0017-1</a></td>
<td>o7mt8hr6</td>
<td>0.635115</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#9pkvj14m">Singleton_2018</a></td>
</tr>
<tr>
<th id="03s4zp4q";>191</th>
<td>Lin_H_2004</td>
<td>A complex network of RNA–RNA interactions controls subgenomic mRNA transcription in a tombusvirus</td>
<td>Lin, Han-Xin; White, K Andrew</td>
<td>2004</td>
<td>2004-07-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC514510" target="_blank">PMC514510</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15282544.0" target="_blank">15282544.0</a></td>
<td><a href="https://doi.org/10.1038/sj.emboj.7600336" target="_blank">10.1038/sj.emboj.7600336</a></td>
<td>03s4zp4q</td>
<td>0.634680</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_12.html#06qfbvlr">Li_Z_2009</a></td>
</tr>
<tr>
<th id="rdgm0q7m";>192</th>
<td>Napthine_2016</td>
<td>A novel role for poly(C) binding proteins in programmed ribosomal frameshifting</td>
<td>Napthine, Sawsan; Treffers, Emmely E.; Bell, Susanne; Goodfellow, Ian; Fang, Ying; Firth, Andrew E.; Snijder, Eric J.; Brierley, Ian</td>
<td>2016</td>
<td>2016-07-08</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4937337" target="_blank">PMC4937337</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27257056.0" target="_blank">27257056.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw480" target="_blank">10.1093/nar/gkw480</a></td>
<td>rdgm0q7m</td>
<td>0.634514</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td></td>
</tr>
<tr>
<th id="s32d3di2";>193</th>
<td>Westhof_1992</td>
<td>RNA pseudoknots</td>
<td>Westhof, Eric; Jaeger, Luc</td>
<td>1992</td>
<td>1992-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144347" target="_blank">PMC7144347</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/0959-440x(92)90221-r" target="_blank">10.1016/0959-440x(92)90221-r</a></td>
<td>s32d3di2</td>
<td>0.633317</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td></td>
</tr>
<tr>
<th id="2naxn580";>194</th>
<td>An_H_2019</td>
<td>Identification and formation mechanism of a novel noncoding RNA produced by avian infectious bronchitis virus</td>
<td>An, Hongliu; Cai, Zhichao; Yang, Yuying; Wang, Zhaoxiong; Liu, Ding Xiang; Fang, Shouguo</td>
<td>2019</td>
<td>2019-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112027" target="_blank">PMC7112027</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30616206.0" target="_blank">30616206.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2018.12.019" target="_blank">10.1016/j.virol.2018.12.019</a></td>
<td>2naxn580</td>
<td>0.633317</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="cbzd8ybv";>195</th>
<td>Belew_2010</td>
<td>Endogenous ribosomal frameshift signals operate as mRNA destabilizing elements through at least two molecular pathways in yeast</td>
<td>Belew, Ashton T.; Advani, Vivek M.; Dinman, Jonathan D.</td>
<td>2010</td>
<td>2010-11-24</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3074144" target="_blank">PMC3074144</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21109528.0" target="_blank">21109528.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq1220" target="_blank">10.1093/nar/gkq1220</a></td>
<td>cbzd8ybv</td>
<td>0.632524</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a></td>
<td><a href="Topic_19.html#l92nlegt">Sarnowska_2007</a></td>
</tr>
<tr>
<th id="kuxvnq6d";>196</th>
<td>Sung_2003</td>
<td>Prokaryotic and eukaryotic translational machineries respond differently to the frameshifting RNA signal from plant or animal virus</td>
<td>Sung, Deukyong; Kang, Hunseung</td>
<td>2003</td>
<td>2003-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127617" target="_blank">PMC7127617</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12686425.0" target="_blank">12686425.0</a></td>
<td><a href="https://doi.org/10.1016/s0168-1702(03)00042-x" target="_blank">10.1016/s0168-1702(03)00042-x</a></td>
<td>kuxvnq6d</td>
<td>0.631684</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_12.html#06qfbvlr">Li_Z_2009</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="czjjnlkf";>197</th>
<td>Moon_2006</td>
<td>Prediction of Ribosomal -1 Frameshifts in the Escherichia coli K12 Genome</td>
<td>Moon, Sanghoon; Byun, Yanga; Han, Kyungsook</td>
<td>2006</td>
<td>2006-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122894" target="_blank">PMC7122894</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/11816102_65" target="_blank">10.1007/11816102_65</a></td>
<td>czjjnlkf</td>
<td>0.631684</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a></td>
</tr>
<tr>
<th id="1esr4qcz";>198</th>
<td>Makino_1989</td>
<td>Evolution of the 5′-end of genomic rna of murine coronaviruses during passages in vitro</td>
<td>Makino, Shinji; Lai, Michael M.C.</td>
<td>1989</td>
<td>1989-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131712" target="_blank">PMC7131712</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2538033.0" target="_blank">2538033.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(89)90060-3" target="_blank">10.1016/0042-6822(89)90060-3</a></td>
<td>1esr4qcz</td>
<td>0.630113</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#vtrfqozl">Makino_1988</a></td>
</tr>
<tr>
<th id="169j2woy";>199</th>
<td>Larsen_1997</td>
<td>Structural probing and mutagenic analysis of the stem-loop required for Escherichia coli dnaX ribosomal frameshifting: programmed efficiency of 50% 1 1 Edited By D. E. Draper</td>
<td>Larsen, Bente; Gesteland, Raymond F; Atkins, John F</td>
<td>1997</td>
<td>1997-08-08</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126992" target="_blank">PMC7126992</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9300054.0" target="_blank">9300054.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1997.1162" target="_blank">10.1006/jmbi.1997.1162</a></td>
<td>169j2woy</td>
<td>0.627089</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="d6dqr03e";>200</th>
<td>Yang_2013</td>
<td>A cypovirus VP5 displays the RNA chaperone-like activity that destabilizes RNA helices and accelerates strand annealing</td>
<td>Yang, Jie; Cheng, Zhenyun; Zhang, Songliu; Xiong, Wei; Xia, Hongjie; Qiu, Yang; Wang, Zhaowei; Wu, Feige; Qin, Cheng-Feng; Yin, Lei; Hu, Yuanyang; Zhou, Xi</td>
<td>2013</td>
<td>2013-12-05</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936753" target="_blank">PMC3936753</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24319147.0" target="_blank">24319147.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkt1256" target="_blank">10.1093/nar/gkt1256</a></td>
<td>d6dqr03e</td>
<td>0.626451</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="r0mqxu90";>201</th>
<td>Brakier-Gingras_2012</td>
<td>Targeting frameshifting in the human immunodeficiency virus</td>
<td>Brakier-Gingras, Léa; Charbonneau, Johanie; Butcher, Samuel E.</td>
<td>2012</td>
<td>2012-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3328590" target="_blank">PMC3328590</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22404160.0" target="_blank">22404160.0</a></td>
<td><a href="https://doi.org/10.1517/14728222.2012.665879" target="_blank">10.1517/14728222.2012.665879</a></td>
<td>r0mqxu90</td>
<td>0.626451</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a></td>
<td><a href="Topic_19.html#6m4qrt3m">Brunelle_1999</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
</tr>
<tr>
<th id="staq8byl";>202</th>
<td>Huang_2011</td>
<td>SARS Coronavirus nsp1 Protein Induces Template-Dependent Endonucleolytic Cleavage of mRNAs: Viral mRNAs Are Resistant to nsp1-Induced RNA Cleavage</td>
<td>Huang, Cheng; Lokugamage, Kumari G.; Rozovics, Janet M.; Narayanan, Krishna; Semler, Bert L.; Makino, Shinji</td>
<td>2011</td>
<td>2011-12-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3234236" target="_blank">PMC3234236</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22174690.0" target="_blank">22174690.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1002433" target="_blank">10.1371/journal.ppat.1002433</a></td>
<td>staq8byl</td>
<td>0.623305</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="zrbn637z";>203</th>
<td>Ishimaru_2012</td>
<td>RNA dimerization plays a role in ribosomal frameshifting of the SARS coronavirus</td>
<td>Ishimaru, Daniella; Plant, Ewan P.; Sims, Amy C.; Yount, Boyd L.; Roth, Braden M.; Eldho, Nadukkudy V.; Pérez-Alvarado, Gabriela C.; Armbruster, David W.; Baric, Ralph S.; Dinman, Jonathan D.; Taylor, Deborah R.; Hennig, Mirko</td>
<td>2012</td>
<td>2012-12-26</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3575852" target="_blank">PMC3575852</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23275571.0" target="_blank">23275571.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gks1361" target="_blank">10.1093/nar/gks1361</a></td>
<td>zrbn637z</td>
<td>0.622946</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="mn6yp6d7";>204</th>
<td>Lamb_1991</td>
<td>Diversity of coding strategies in influenza viruses</td>
<td>Lamb, Robert A.; Horvath, Curt M.</td>
<td>1991</td>
<td>1991-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1771674.0" target="_blank">1771674.0</a></td>
<td><a href="https://doi.org/10.1016/0168-9525(91)90326-l" target="_blank">10.1016/0168-9525(91)90326-l</a></td>
<td>mn6yp6d7</td>
<td>0.622925</td>
<td><a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td></td>
</tr>
<tr>
<th id="gs8s7kn8";>205</th>
<td>Herold_2001</td>
<td>Poliovirus RNA Replication Requires Genome Circularization through a Protein–Protein Bridge</td>
<td>Herold, Jens; Andino, Raul</td>
<td>2001</td>
<td>2001-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7129834" target="_blank">PMC7129834</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11463383.0" target="_blank">11463383.0</a></td>
<td><a href="https://doi.org/10.1016/s1097-2765(01)00205-2" target="_blank">10.1016/s1097-2765(01)00205-2</a></td>
<td>gs8s7kn8</td>
<td>0.621434</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="fjrq63me";>206</th>
<td>Olspert_2015</td>
<td>Transcriptional slippage in the positive-sense RNA virus family Potyviridae</td>
<td>Olspert, Allan; Chung, Betty Y-W; Atkins, John F; Carr, John P; Firth, Andrew E</td>
<td>2015</td>
<td>2015-06-25</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4552492" target="_blank">PMC4552492</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26113364.0" target="_blank">26113364.0</a></td>
<td><a href="https://doi.org/10.15252/embr.201540509" target="_blank">10.15252/embr.201540509</a></td>
<td>fjrq63me</td>
<td>0.619222</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="l6wh0gud";>207</th>
<td>Galinski_1992</td>
<td>RNA editing in the phosphoprotein gene of the human parainfluenza virus type 3</td>
<td>Galinski, Mark S.; Troy, Roberta M.; Banerjee, Amiya K.</td>
<td>1992</td>
<td>1992-02-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130814" target="_blank">PMC7130814</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1310183.0" target="_blank">1310183.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90020-p" target="_blank">10.1016/0042-6822(92)90020-p</a></td>
<td>l6wh0gud</td>
<td>0.619191</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="q3qtgrfc";>208</th>
<td>Rajagopal_2008</td>
<td>Viral Helicases</td>
<td>Rajagopal, Vaishnavi; Patel, Smita S.</td>
<td>2008</td>
<td>2008-11-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121818" target="_blank">PMC7121818</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/b135974_20" target="_blank">10.1007/b135974_20</a></td>
<td>q3qtgrfc</td>
<td>0.618394</td>
<td><a href="Topic_16.html#997yo3ni">Gralinski_2015</a>, <a href="Topic_74.html#fuzvu7y1">Wojcechowskyj_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_73.html#biqkzpg2">Gupta_2012</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
</tr>
<tr>
<th id="rkq5wn0x";>209</th>
<td>Ivanyi-Nagy_2012</td>
<td>Core protein-mediated 5′–3′ annealing of the West Nile virus genomic RNA in vitro</td>
<td>Ivanyi-Nagy, Roland; Darlix, Jean-Luc</td>
<td>2012</td>
<td>2012-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22652509.0" target="_blank">22652509.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2012.05.003" target="_blank">10.1016/j.virusres.2012.05.003</a></td>
<td>rkq5wn0x</td>
<td>0.617882</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="4ov0j2u3";>210</th>
<td>Theis_2008</td>
<td>KnotInFrame: prediction of −1 ribosomal frameshift events</td>
<td>Theis, Corinna; Reeder, Jens; Giegerich, Robert</td>
<td>2008</td>
<td>2008-09-27</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2566878" target="_blank">PMC2566878</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18820303.0" target="_blank">18820303.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkn578" target="_blank">10.1093/nar/gkn578</a></td>
<td>4ov0j2u3</td>
<td>0.617741</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#2fcl6f4i">Price_2019</a></td>
<td><a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_19.html#58cat4xj">Caliskan_2015</a>, <a href="Topic_19.html#rlnb674e">Giedroc_2009</a></td>
</tr>
<tr>
<th id="i3yiuai7";>211</th>
<td>Namy_2006</td>
<td>A mechanical explanation of RNA pseudoknot function in programmed ribosomal frameshifting</td>
<td>Namy, Olivier; Moran, Stephen J.; Stuart, David I.; Gilbert, Robert J. C.; Brierley, Ian</td>
<td>2006</td>
<td>2006-01-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7094908" target="_blank">PMC7094908</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16688178.0" target="_blank">16688178.0</a></td>
<td><a href="https://doi.org/10.1038/nature04735" target="_blank">10.1038/nature04735</a></td>
<td>i3yiuai7</td>
<td>0.617682</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#rlnb674e">Giedroc_2009</a>, <a href="Topic_19.html#ly55753z">Brierley_2009</a></td>
</tr>
<tr>
<th id="ftxq9g7h";>212</th>
<td>Mazauric_2009</td>
<td>Interaction of the HIV-1 frameshift signal with the ribosome</td>
<td>Mazauric, Marie-Hélène; Seol, Yeonee; Yoshizawa, Satoko; Visscher, Koen; Fourmy, Dominique</td>
<td>2009</td>
<td>2009-10-07</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2794165" target="_blank">PMC2794165</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19812214.0" target="_blank">19812214.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkp779" target="_blank">10.1093/nar/gkp779</a></td>
<td>ftxq9g7h</td>
<td>0.617204</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="v6lycc7k";>213</th>
<td>Yu_C_2013</td>
<td>Stimulation of ribosomal frameshifting by RNA G-quadruplex structures</td>
<td>Yu, Chien-Hung; Teulade-Fichou, Marie-Paule; Olsthoorn, René C. L.</td>
<td>2013</td>
<td>2013-10-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3919603" target="_blank">PMC3919603</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24178029.0" target="_blank">24178029.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkt1022" target="_blank">10.1093/nar/gkt1022</a></td>
<td>v6lycc7k</td>
<td>0.617028</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="jzngtd06";>214</th>
<td>Spaan_1983</td>
<td>Coronavirus mRNA synthesis involves fusion of non-contiguous sequences.</td>
<td>Spaan, W; Delius, H; Skinner, M; Armstrong, J; Rottier, P; Smeekens, S; van der Zeijst, B A; Siddell, S G</td>
<td>1983</td>
<td>1983-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC555368" target="_blank">PMC555368</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6196191.0" target="_blank">6196191.0</a></td>
<td></td>
<td>jzngtd06</td>
<td>0.614977</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="0brhn8oc";>215</th>
<td>Staple_2005</td>
<td>Pseudoknots: RNA Structures with Diverse Functions</td>
<td>Staple, David W; Butcher, Samuel E</td>
<td>2005</td>
<td>2005-06-14</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1149493" target="_blank">PMC1149493</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15941360.0" target="_blank">15941360.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pbio.0030213" target="_blank">10.1371/journal.pbio.0030213</a></td>
<td>0brhn8oc</td>
<td>0.614681</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#ai8n1oeq">Pleij_1994</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#8sb5xqxc">Jiang_2013</a>, <a href="Topic_10.html#bnu51jee">Wesolowski_2010</a></td>
</tr>
<tr>
<th id="c5k5rpq5";>216</th>
<td>Gorbalenya_1988</td>
<td>A novel superfamily of nucleoside triphosphate-binding motif containing proteins which are probably involved in duplex unwinding in DNA and RNA replication and recombination</td>
<td>Gorbalenya, Alexander E.; Koonin, Eugene V.; Donchenko, Alexei P.; Blinov, Vladimir M.</td>
<td>1988</td>
<td>1988-08-01</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2841153.0" target="_blank">2841153.0</a></td>
<td><a href="https://doi.org/10.1016/0014-5793(88)81226-2" target="_blank">10.1016/0014-5793(88)81226-2</a></td>
<td>c5k5rpq5</td>
<td>0.613939</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_55.html#0a3okta0">Myllykoski_2017</a></td>
</tr>
<tr>
<th id="8sein6kc";>217</th>
<td>Brian_1997</td>
<td>Recombination and Coronavirus Defective Interfering RNAs</td>
<td>Brian, David A.; Spaan, Willy J.M.</td>
<td>1997</td>
<td>1997-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7129747" target="_blank">PMC7129747</a></td>
<td></td>
<td><a href="https://doi.org/10.1006/smvy.1997.0109" target="_blank">10.1006/smvy.1997.0109</a></td>
<td>8sein6kc</td>
<td>0.612622</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="2cfphi88";>218</th>
<td>Carter_1990</td>
<td>Transcription of feline calicivirus RNA</td>
<td>Carter, M. J.</td>
<td>1990</td>
<td>1990-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087285" target="_blank">PMC7087285</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2241572.0" target="_blank">2241572.0</a></td>
<td><a href="https://doi.org/10.1007/bf01310744" target="_blank">10.1007/bf01310744</a></td>
<td>2cfphi88</td>
<td>0.611318</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_19.html#zgqivufm">Carter_1992</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="igzdrbfr";>219</th>
<td>Bock_2019</td>
<td>Thermodynamic control of −1 programmed ribosomal frameshifting</td>
<td>Bock, Lars V.; Caliskan, Neva; Korniy, Natalia; Peske, Frank; Rodnina, Marina V.; Grubmüller, Helmut</td>
<td>2019</td>
<td>2019-10-10</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6787027" target="_blank">PMC6787027</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31601802.0" target="_blank">31601802.0</a></td>
<td><a href="https://doi.org/10.1038/s41467-019-12648-x" target="_blank">10.1038/s41467-019-12648-x</a></td>
<td>igzdrbfr</td>
<td>0.610536</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#58cat4xj">Caliskan_2015</a>, <a href="Topic_19.html#kzshcrwx">Caliskan_2014</a></td>
</tr>
<tr>
<th id="16qy4j1s";>220</th>
<td>Kempf_2015</td>
<td>Picornavirus RNA polyadenylation by 3Dpol, the viral RNA-dependent RNA polymerase</td>
<td>Kempf, Brian J.; Barton, David J.</td>
<td>2015</td>
<td>2015-08-03</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801031" target="_blank">PMC4801031</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25559071.0" target="_blank">25559071.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2014.12.030" target="_blank">10.1016/j.virusres.2014.12.030</a></td>
<td>16qy4j1s</td>
<td>0.610383</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="c1kjvfwj";>221</th>
<td>Liu_Y_2009</td>
<td>Cis-acting RNA elements in human and animal plus-strand RNA viruses</td>
<td>Liu, Ying; Wimmer, Eckard; Paul, Aniko V.</td>
<td>2009</td>
<td>2009-10-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2783963" target="_blank">PMC2783963</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19781674.0" target="_blank">19781674.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbagrm.2009.09.007" target="_blank">10.1016/j.bbagrm.2009.09.007</a></td>
<td>c1kjvfwj</td>
<td>0.608469</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="69vuc6l9";>222</th>
<td>Kruse_2011</td>
<td>A novel synthesis and detection method for cap-associated adenosine modifications in mouse mRNA</td>
<td>Kruse, Susanne; Zhong, Silin; Bodi, Zsuzsanna; Button, James; Alcocer, Marcos J. C.; Hayes, Christopher J.; Fray, Rupert</td>
<td>2011</td>
<td>2011-10-24</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3216607" target="_blank">PMC3216607</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22355643.0" target="_blank">22355643.0</a></td>
<td><a href="https://doi.org/10.1038/srep00126" target="_blank">10.1038/srep00126</a></td>
<td>69vuc6l9</td>
<td>0.608282</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#7xkj27ph">Lai_M_2005</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_34.html#7jn2snih">Poulsen_2015</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#sz2531mv">Byszewska_2015</a></td>
</tr>
<tr>
<th id="n3ouk7wa";>223</th>
<td>Jacobs_2006</td>
<td>Identification of functional, endogenous programmed −1 ribosomal frameshift signals in the genome of Saccharomyces cerevisiae</td>
<td>Jacobs, Jonathan L.; Belew, Ashton T.; Rakauskaite, Rasa; Dinman, Jonathan D.</td>
<td>2006</td>
<td>2006-12-07</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1802563" target="_blank">PMC1802563</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17158156.0" target="_blank">17158156.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl1033" target="_blank">10.1093/nar/gkl1033</a></td>
<td>n3ouk7wa</td>
<td>0.607880</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#2fcl6f4i">Price_2019</a></td>
<td></td>
</tr>
<tr>
<th id="5rovh1xf";>224</th>
<td>Godeny_1990</td>
<td>Map location of lactate dehydrogenase-elevating virus (LDV) capsid protein (Vpl) gene</td>
<td>Godeny, E.K.; Speicher, D.W.; Brintow, M.A.</td>
<td>1990</td>
<td>1990-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2371780.0" target="_blank">2371780.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(90)90546-4" target="_blank">10.1016/0042-6822(90)90546-4</a></td>
<td>5rovh1xf</td>
<td>0.607383</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_10.html#c8qcjve9">Faaberg_1996</a></td>
</tr>
<tr>
<th id="sik7m86l";>225</th>
<td>Tzeng_2006</td>
<td>C-E1 fusion protein synthesized by rubella virus DI RNAs maintained during serial passage</td>
<td>Tzeng, Wen-Pin; Frey, Teryl K.</td>
<td>2006</td>
<td>2006-12-20</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2694048" target="_blank">PMC2694048</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16938325.0" target="_blank">16938325.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2006.07.041" target="_blank">10.1016/j.virol.2006.07.041</a></td>
<td>sik7m86l</td>
<td>0.606863</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="8oy18apx";>226</th>
<td>Chetverin_1997</td>
<td>Nonhomologous RNA Recombination in a Cell-Free System: Evidence for a Transesterification Mechanism Guided by Secondary Structure</td>
<td>Chetverin, Alexander B; Chetverina, Helena V; Demidenko, Alexander A; Ugarov, Victor I</td>
<td>1997</td>
<td>1997-02-21</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9038341.0" target="_blank">9038341.0</a></td>
<td><a href="https://doi.org/10.1016/s0092-8674(00)81890-5" target="_blank">10.1016/s0092-8674(00)81890-5</a></td>
<td>8oy18apx</td>
<td>0.606531</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="58cat4xj";>227</th>
<td>Caliskan_2015</td>
<td>Changed in translation: mRNA recoding by −1 programmed ribosomal frameshifting</td>
<td>Caliskan, Neva; Peske, Frank; Rodnina, Marina V.</td>
<td>2015</td>
<td>2015-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126180" target="_blank">PMC7126180</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25850333.0" target="_blank">25850333.0</a></td>
<td><a href="https://doi.org/10.1016/j.tibs.2015.03.006" target="_blank">10.1016/j.tibs.2015.03.006</a></td>
<td>58cat4xj</td>
<td>0.606101</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td><a href="Topic_19.html#rlnb674e">Giedroc_2009</a></td>
</tr>
<tr>
<th id="pil78xd3";>228</th>
<td>Dinman_2012</td>
<td>Mechanisms and Implications of Programmed Translational Frameshifting</td>
<td>Dinman, Jonathan D.</td>
<td>2012</td>
<td>2012-06-19</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3419312" target="_blank">PMC3419312</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22715123.0" target="_blank">22715123.0</a></td>
<td><a href="https://doi.org/10.1002/wrna.1126" target="_blank">10.1002/wrna.1126</a></td>
<td>pil78xd3</td>
<td>0.605577</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a></td>
<td><a href="Topic_19.html#xgwbl8em">Henderson_2006</a></td>
</tr>
<tr>
<th id="p0nwbgun";>229</th>
<td>Kirkegaard_1986</td>
<td>The mechanism of RNA recombination in poliovirus</td>
<td>Kirkegaard, Karla; Baltimore, David</td>
<td>1986</td>
<td>1986-11-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133339" target="_blank">PMC7133339</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3021340.0" target="_blank">3021340.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(86)90600-8" target="_blank">10.1016/0092-8674(86)90600-8</a></td>
<td>p0nwbgun</td>
<td>0.603378</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a>, <a href="Topic_19.html#1q75zw6b">King_1982</a></td>
</tr>
<tr>
<th id="rdpd6hbg";>230</th>
<td>Mauger_2013</td>
<td>The genetic code as expressed through relationships between mRNA structure and protein function</td>
<td>Mauger, David M.; Siegfried, Nathan A.; Weeks, Kevin M.</td>
<td>2013</td>
<td>2013-04-17</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4269304" target="_blank">PMC4269304</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23499436.0" target="_blank">23499436.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2013.03.002" target="_blank">10.1016/j.febslet.2013.03.002</a></td>
<td>rdpd6hbg</td>
<td>0.603174</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a></td>
<td><a href="Topic_12.html#vhsipxs7">Järvelin_2016</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="jhn81kon";>231</th>
<td>Potisopon_2014</td>
<td>The methyltransferase domain of dengue virus protein NS5 ensures efficient RNA synthesis initiation and elongation by the polymerase domain</td>
<td>Potisopon, Supanee; Priet, Stéphane; Collet, Axelle; Decroly, Etienne; Canard, Bruno; Selisko, Barbara</td>
<td>2014</td>
<td>2014-10-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191377" target="_blank">PMC4191377</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25209234.0" target="_blank">25209234.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku666" target="_blank">10.1093/nar/gku666</a></td>
<td>jhn81kon</td>
<td>0.601909</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="yo9libo0";>232</th>
<td>Zhou_2011</td>
<td>Mutational analysis of the SDD sequence motif of a PRRSV RNA-dependent RNA polymerase</td>
<td>Zhou, Yan; Zheng, HaiHong; Gao, Fei; Tian, DeBin; Yuan, ShiShan</td>
<td>2011</td>
<td>2011-09-16</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088696" target="_blank">PMC7088696</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21922433.0" target="_blank">21922433.0</a></td>
<td><a href="https://doi.org/10.1007/s11427-011-4216-4" target="_blank">10.1007/s11427-011-4216-4</a></td>
<td>yo9libo0</td>
<td>0.600422</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ah9cnwzw";>233</th>
<td>Nga_P_2011</td>
<td>Discovery of the First Insect Nidovirus, a Missing Evolutionary Link in the Emergence of the Largest RNA Virus Genomes</td>
<td>Nga, Phan Thi; Parquet, Maria del Carmen; Lauber, Chris; Parida, Manmohan; Nabeshima, Takeshi; Yu, Fuxun; Thuy, Nguyen Thanh; Inoue, Shingo; Ito, Takashi; Okamoto, Kenta; Ichinose, Akitoyo; Snijder, Eric J.; Morita, Kouichi; Gorbalenya, Alexander E.</td>
<td>2011</td>
<td>2011-09-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169540" target="_blank">PMC3169540</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21931546.0" target="_blank">21931546.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1002215" target="_blank">10.1371/journal.ppat.1002215</a></td>
<td>ah9cnwzw</td>
<td>0.600333</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_19.html#d6vud7xg">Ogando_2019</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a></td>
</tr>
<tr>
<th id="zo2ff0jk";>234</th>
<td>Cologna_2000</td>
<td>Identification of Nucleocapsid Binding Sites within Coronavirus-Defective Genomes</td>
<td>Cologna, Raymond; Spagnolo, Jeannie F.; Hogue, Brenda G.</td>
<td>2000</td>
<td>2000-11-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131401" target="_blank">PMC7131401</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11080472.0" target="_blank">11080472.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2000.0611" target="_blank">10.1006/viro.2000.0611</a></td>
<td>zo2ff0jk</td>
<td>0.599288</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_12.html#wrztpeb8">Zhang_2015</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_10.html#kyavg4vu">Masters_1992</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="0u2fatbg";>235</th>
<td>Bujarski_1994</td>
<td>Molecular Studies of Genetic RNA–RNA Recombination in Brome Mosaic Virus</td>
<td>Bujarski, Jozef J.; Nagy, Peter D.; Flasinski, Stanislaw</td>
<td>1994</td>
<td>1994-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8191956.0" target="_blank">8191956.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60051-2" target="_blank">10.1016/s0065-3527(08)60051-2</a></td>
<td>0u2fatbg</td>
<td>0.598878</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#5t5xthk6">Gmyl_2005</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="pz7mi86u";>236</th>
<td>Yang_2009</td>
<td>Translational control of the subgenomic RNAs of severe acute respiratory syndrome coronavirus</td>
<td>Yang, Yaling; Hussain, Snawar; Wang, Hao; Ke, Min; Guo, Deyin</td>
<td>2009</td>
<td>2009-04-12</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089290" target="_blank">PMC7089290</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19363699.0" target="_blank">19363699.0</a></td>
<td><a href="https://doi.org/10.1007/s11262-009-0357-y" target="_blank">10.1007/s11262-009-0357-y</a></td>
<td>pz7mi86u</td>
<td>0.598831</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a></td>
</tr>
<tr>
<th id="puj74k7y";>237</th>
<td>Crescenzo-Chaigne_2013</td>
<td>The Panhandle Formed by Influenza A and C Virus NS Non-Coding Regions Determines NS Segment Expression</td>
<td>Crescenzo-Chaigne, Bernadette; Barbezange, Cyril; van der Werf, Sylvie</td>
<td>2013</td>
<td>2013-11-21</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858493" target="_blank">PMC3858493</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24348921.0" target="_blank">24348921.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0081550" target="_blank">10.1371/journal.pone.0081550</a></td>
<td>puj74k7y</td>
<td>0.596297</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#b4zcvd04">Crescenzo-Chaigne_2014</a></td>
</tr>
<tr>
<th id="8hvznle0";>238</th>
<td>Maines_2005</td>
<td>Two cellular proteins that interact with a stem loop in the simian hemorrhagic fever virus 3′(+)NCR RNA</td>
<td>Maines, Taronna R.; Young, Mary; Dinh, Nikita Nhu-Nguyen; Brinton, Margo A.</td>
<td>2005</td>
<td>2005-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126611" target="_blank">PMC7126611</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15763141.0" target="_blank">15763141.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2004.11.014" target="_blank">10.1016/j.virusres.2004.11.014</a></td>
<td>8hvznle0</td>
<td>0.595901</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td></td>
</tr>
<tr>
<th id="bxbmcntf";>239</th>
<td>Korniy_2019</td>
<td>Mechanisms and biomedical implications of –1 programmed ribosome frameshifting on viral and bacterial mRNAs</td>
<td>Korniy, Natalia; Samatova, Ekaterina; Anokhina, Maria M.; Peske, Frank; Rodnina, Marina V.</td>
<td>2019</td>
<td>2019-06-20</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6771820" target="_blank">PMC6771820</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31222875.0" target="_blank">31222875.0</a></td>
<td><a href="https://doi.org/10.1002/1873-3468.13478" target="_blank">10.1002/1873-3468.13478</a></td>
<td>bxbmcntf</td>
<td>0.595734</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="jbcnz0of";>240</th>
<td>Giedroc_2000</td>
<td>Structure, stability and function of RNA pseudoknots involved in stimulating ribosomal frameshifting 1 1 Edited by D. E. Draper</td>
<td>Giedroc, David P; Theimer, Carla A; Nixon, Paul L</td>
<td>2000</td>
<td>2000-04-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126452" target="_blank">PMC7126452</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10764589.0" target="_blank">10764589.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.2000.3668" target="_blank">10.1006/jmbi.2000.3668</a></td>
<td>jbcnz0of</td>
<td>0.595370</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="ck7eto16";>241</th>
<td>Baric_1987</td>
<td>Analysis of intracellular small RNAs of mouse hepatitis virus: evidence for discontinuous transcription</td>
<td>Baric, Ralph S.; Shieh, Chien-Kou; Stohlman, Stephen A.; Lai, Michael M.C.</td>
<td>1987</td>
<td>1987-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130593" target="_blank">PMC7130593</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3027983.0" target="_blank">3027983.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(87)90414-4" target="_blank">10.1016/0042-6822(87)90414-4</a></td>
<td>ck7eto16</td>
<td>0.595020</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#ztmrrii3">Baric_1985</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="1tlxfc6r";>242</th>
<td>Ahn_D_2012</td>
<td>Biochemical characterization of a recombinant SARS coronavirus nsp12 RNA-dependent RNA polymerase capable of copying viral RNA templates</td>
<td>Ahn, Dae-Gyun; Choi, Jin-Kyu; Taylor, Deborah R.; Oh, Jong-Won</td>
<td>2012</td>
<td>2012-07-13</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086750" target="_blank">PMC7086750</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22791111.0" target="_blank">22791111.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-012-1404-x" target="_blank">10.1007/s00705-012-1404-x</a></td>
<td>1tlxfc6r</td>
<td>0.594682</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="xx73wawr";>243</th>
<td>Vendeix_2012</td>
<td>Human tRNA(Lys3)(UUU) is Pre-Structured by Natural Modifications for Cognate and Wobble Codon Binding through Keto-EnolTautomerism</td>
<td>Vendeix, Franck A. P.; Murphy, Frank V.; Cantara, William A.; Leszczyńska, Grażyna; Gustilo, Estella M.; Sproat, Brian; Malkiewicz, Andrzej; Agris, Paul F.</td>
<td>2012</td>
<td>2012-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3662832" target="_blank">PMC3662832</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22227389.0" target="_blank">22227389.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2011.12.048" target="_blank">10.1016/j.jmb.2011.12.048</a></td>
<td>xx73wawr</td>
<td>0.594143</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a></td>
<td><a href="Topic_19.html#7c37elh6">Tükenmez_2015</a>, <a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="7c37elh6";>244</th>
<td>Tükenmez_2015</td>
<td>The role of wobble uridine modifications in +1 translational frameshifting in eukaryotes</td>
<td>Tükenmez, Hasan; Xu, Hao; Esberg, Anders; Byström, Anders S.</td>
<td>2015</td>
<td>2015-10-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4627075" target="_blank">PMC4627075</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26283182.0" target="_blank">26283182.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv832" target="_blank">10.1093/nar/gkv832</a></td>
<td>7c37elh6</td>
<td>0.593753</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_55.html#plg5qx9m">Punekar_2012</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="7de21oaq";>245</th>
<td>Madhugiri_2014</td>
<td>RNA structure analysis of alphacoronavirus terminal genome regions</td>
<td>Madhugiri, Ramakanth; Fricke, Markus; Marz, Manja; Ziebuhr, John</td>
<td>2014</td>
<td>2014-12-19</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114417" target="_blank">PMC7114417</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25307890.0" target="_blank">25307890.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2014.10.001" target="_blank">10.1016/j.virusres.2014.10.001</a></td>
<td>7de21oaq</td>
<td>0.593753</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="5gn2qy8g";>246</th>
<td>Ke_T_2013</td>
<td>A Leaderless Genome Identified during Persistent Bovine Coronavirus Infection Is Associated with Attenuation of Gene Expression</td>
<td>Ke, Ting-Yung; Liao, Wei-Yu; Wu, Hung-Yi</td>
<td>2013</td>
<td>2013-12-12</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3861326" target="_blank">PMC3861326</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24349214.0" target="_blank">24349214.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0082176" target="_blank">10.1371/journal.pone.0082176</a></td>
<td>5gn2qy8g</td>
<td>0.593476</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ay3ayh8b";>247</th>
<td>Dinman_2012</td>
<td>Control of gene expression by translational recoding</td>
<td>Dinman, Jonathan D.</td>
<td>2012</td>
<td>2012-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149833" target="_blank">PMC7149833</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22243583.0" target="_blank">22243583.0</a></td>
<td><a href="https://doi.org/10.1016/b978-0-12-386497-0.00004-9" target="_blank">10.1016/b978-0-12-386497-0.00004-9</a></td>
<td>ay3ayh8b</td>
<td>0.592433</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#69gftii4">Cobucci-Ponzano_2006</a>, <a href="Topic_19.html#7elri6u3">Cassan_1990</a>, <a href="Topic_19.html#58cat4xj">Caliskan_2015</a></td>
</tr>
<tr>
<th id="ilbh8723";>248</th>
<td>Melior_2019</td>
<td>Transcription attenuation-derived small RNA rnTrpL regulates tryptophan biosynthesis gene expression in trans</td>
<td>Melior, Hendrik; Li, Siqi; Madhugiri, Ramakanth; Stötzel, Maximilian; Azarderakhsh, Saina; Barth-Weber, Susanne; Baumgardt, Kathrin; Ziebuhr, John; Evguenieva-Hackenberg, Elena</td>
<td>2019</td>
<td>2019-07-09</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614838" target="_blank">PMC6614838</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30993322.0" target="_blank">30993322.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz274" target="_blank">10.1093/nar/gkz274</a></td>
<td>ilbh8723</td>
<td>0.591849</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#ec1uq448">Bencun_2018</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="sztzrx1l";>249</th>
<td>Kierzek_2006</td>
<td>Nearest neighbor parameters for Watson–Crick complementary heteroduplexes formed between 2′-O-methyl RNA and RNA oligonucleotides</td>
<td>Kierzek, Elzbieta; Mathews, David H.; Ciesielska, Anna; Turner, Douglas H.; Kierzek, Ryszard</td>
<td>2006</td>
<td>2006-07-26</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1540717" target="_blank">PMC1540717</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16870722.0" target="_blank">16870722.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl232" target="_blank">10.1093/nar/gkl232</a></td>
<td>sztzrx1l</td>
<td>0.591191</td>
<td><a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_10.html#5figm2h5">Fernando_2008</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_19.html#3mtfvvfb">Vasquez-Del_Carpio_2006</a>, <a href="Topic_19.html#93qae2al">Su_L_1999</a></td>
</tr>
<tr>
<th id="i3bbo0qg";>250</th>
<td>Shu-Yun_Le_1991</td>
<td>RNA pseudoknots downstream of the frameshift sites of retroviruses</td>
<td>Shu-Yun Le, ; Shapiro, Bruce A.; Chen, Jih-H.; Nussinov, Ruth; Maizel, Jacob V.</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1663382.0" target="_blank">1663382.0</a></td>
<td><a href="https://doi.org/10.1016/1050-3862(91)90013-h" target="_blank">10.1016/1050-3862(91)90013-h</a></td>
<td>i3bbo0qg</td>
<td>0.590739</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="tysyq6o4";>251</th>
<td>Thomas_1988</td>
<td>Two mRNAs that differ by two nontemplated nucleotides encode the amino coterminal proteins P and V of the paramyxovirus SV5</td>
<td>Thomas, Sheila M.; Lamb, Robert A.; Paterson, Reay G.</td>
<td>1988</td>
<td>1988-09-09</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133244" target="_blank">PMC7133244</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3044614.0" target="_blank">3044614.0</a></td>
<td><a href="https://doi.org/10.1016/s0092-8674(88)91285-8" target="_blank">10.1016/s0092-8674(88)91285-8</a></td>
<td>tysyq6o4</td>
<td>0.588970</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a></td>
<td></td>
</tr>
<tr>
<th id="ypov9ha3";>252</th>
<td>Kumar_2017</td>
<td>Molecular characterization of a novel cryptic virus infecting pigeonpea plants</td>
<td>Kumar, Surender; Subbarao, Burra L.; Kumari, Reenu; Hallan, Vipin</td>
<td>2017</td>
<td>2017-08-03</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5542627" target="_blank">PMC5542627</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28771507.0" target="_blank">28771507.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0181829" target="_blank">10.1371/journal.pone.0181829</a></td>
<td>ypov9ha3</td>
<td>0.588603</td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#77lqxgmh">Wu_H_2004</a></td>
</tr>
<tr>
<th id="um9zw5bv";>253</th>
<td>Zhu_B_2014</td>
<td>Identification of the Active Sites in the Methyltransferases of a Transcribing dsRNA Virus</td>
<td>Zhu, Bin; Yang, Chongwen; Liu, Hongrong; Cheng, Lingpeng; Song, Feng; Zeng, Songjun; Huang, Xiaojun; Ji, Gang; Zhu, Ping</td>
<td>2014</td>
<td>2014-05-29</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7094362" target="_blank">PMC7094362</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24690366.0" target="_blank">24690366.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2014.03.013" target="_blank">10.1016/j.jmb.2014.03.013</a></td>
<td>um9zw5bv</td>
<td>0.588267</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="iy1oyiqm";>254</th>
<td>Wen_J_2008</td>
<td>Following translation by single ribosomes one codon at a time</td>
<td>Wen, Jin-Der; Lancaster, Laura; Hodges, Courtney; Zeri, Ana-Carolina; Yoshimura, Shige H.; Noller, Harry F.; Bustamante, Carlos; Tinoco, Ignacio</td>
<td>2008</td>
<td>2008-03-09</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2556548" target="_blank">PMC2556548</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18327250.0" target="_blank">18327250.0</a></td>
<td><a href="https://doi.org/10.1038/nature06716" target="_blank">10.1038/nature06716</a></td>
<td>iy1oyiqm</td>
<td>0.587499</td>
<td><a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#l600aeuo">Chen_2013</a></td>
</tr>
<tr>
<th id="vbmkasx2";>255</th>
<td>Kim_H_2019</td>
<td>RNA-Dependent RNA Polymerase Speed and Fidelity are not the Only Determinants of the Mechanism or Efficiency of Recombination</td>
<td>Kim, Hyejeong; Ellis, Victor D.; Woodman, Andrew; Zhao, Yan; Arnold, Jamie J.; Cameron, Craig E.</td>
<td>2019</td>
<td>2019-11-25</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6947342" target="_blank">PMC6947342</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31775299.0" target="_blank">31775299.0</a></td>
<td><a href="https://doi.org/10.3390/genes10120968" target="_blank">10.3390/genes10120968</a></td>
<td>vbmkasx2</td>
<td>0.587292</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_19.html#ljz7rfny">Kim_H_2019</a></td>
</tr>
<tr>
<th id="qufm6boc";>256</th>
<td>Wu_B_2007</td>
<td>Uncoupling RNA virus replication from transcription via the polymerase: functional and evolutionary insights</td>
<td>Wu, Baodong; White, K Andrew</td>
<td>2007</td>
<td>2007-11-22</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2140117" target="_blank">PMC2140117</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18034156.0" target="_blank">18034156.0</a></td>
<td><a href="https://doi.org/10.1038/sj.emboj.7601931" target="_blank">10.1038/sj.emboj.7601931</a></td>
<td>qufm6boc</td>
<td>0.585273</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="t78fyys0";>257</th>
<td>Wang_2001</td>
<td>Specific Inhibition of Coxsackievirus B3 Translation and Replication by Phosphorothioate Antisense Oligodeoxynucleotides</td>
<td>Wang, Aikun; Cheung, Paul K. M.; Zhang, Huifang; Carthy, Christopher M.; Bohunek, Lubos; Wilson, Janet E.; McManus, Bruce M.; Yang, Decheng</td>
<td>2001</td>
<td>2001-04-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC90423" target="_blank">PMC90423</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11257014.0" target="_blank">11257014.0</a></td>
<td><a href="https://doi.org/10.1128/aac.45.4.1043-1052.2001" target="_blank">10.1128/aac.45.4.1043-1052.2001</a></td>
<td>t78fyys0</td>
<td>0.584538</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#pmdera3v">Masaki_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#il9vbbgk">DEN_BOON_1995</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="5t5xthk6";>258</th>
<td>Gmyl_2005</td>
<td>Diverse Mechanisms of RNA Recombination</td>
<td>Gmyl, A. P.; Agol, V. I.</td>
<td>2005</td>
<td>2005-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089151" target="_blank">PMC7089151</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/s11008-005-0069-x" target="_blank">10.1007/s11008-005-0069-x</a></td>
<td>5t5xthk6</td>
<td>0.583981</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="0i2dvdey";>259</th>
<td>Tuteja_2004</td>
<td>Prokaryotic and eukaryotic DNA helicases: Essential molecular motor proteins for cellular machinery</td>
<td>Tuteja, Narendra; Tuteja, Renu</td>
<td>2004</td>
<td>2004-04-19</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7164108" target="_blank">PMC7164108</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15128294.0" target="_blank">15128294.0</a></td>
<td><a href="https://doi.org/10.1111/j.1432-1033.2004.04093.x" target="_blank">10.1111/j.1432-1033.2004.04093.x</a></td>
<td>0i2dvdey</td>
<td>0.583703</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td></td>
</tr>
<tr>
<th id="i6vuhaiv";>260</th>
<td>De_Groot_1988</td>
<td>Sequence analysis of the 3′ end of the feline coronavirus FIPV 79-1146 genome: Comparison with the genome of porcine coronavirus TGEV reveals large insertions</td>
<td>De Groot, Raoul J.; Andeweg, Arno C.; Horzinek, Marian C.; Spaan, Willy J.M.</td>
<td>1988</td>
<td>1988-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130511" target="_blank">PMC7130511</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3201747.0" target="_blank">3201747.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(88)90097-9" target="_blank">10.1016/0042-6822(88)90097-9</a></td>
<td>i6vuhaiv</td>
<td>0.581500</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#y8xvh6hs">Yamanaka_1998</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#3vi7pgvr">Vennema_1992</a>, <a href="Topic_19.html#y8xvh6hs">Yamanaka_1998</a>, <a href="Topic_62.html#2jlz4c58">Crucière_1988</a></td>
</tr>
<tr>
<th id="ap0w40vn";>261</th>
<td>Lo_C_2019</td>
<td>Interaction of coronavirus nucleocapsid protein with the 5′‐ and 3′‐ends of the coronavirus genome is involved in genome circularization and negative‐strand RNA synthesis</td>
<td>Lo, Chen‐Yu; Tsai, Tsung‐Lin; Lin, Chao‐Nan; Lin, Ching‐Hung; Wu, Hung‐Yi</td>
<td>2019</td>
<td>2019-05-08</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7164124" target="_blank">PMC7164124</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31034708.0" target="_blank">31034708.0</a></td>
<td><a href="https://doi.org/10.1111/febs.14863" target="_blank">10.1111/febs.14863</a></td>
<td>ap0w40vn</td>
<td>0.580853</td>
<td><a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#6lvn10f4">Shi_S_2000</a></td>
<td></td>
</tr>
<tr>
<th id="znhvdtg8";>262</th>
<td>Usui_2015</td>
<td>A design principle for a single-stranded RNA genome that replicates with less double-strand formation</td>
<td>Usui, Kimihito; Ichihashi, Norikazu; Yomo, Tetsuya</td>
<td>2015</td>
<td>2015-09-18</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652763" target="_blank">PMC4652763</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26202975.0" target="_blank">26202975.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv742" target="_blank">10.1093/nar/gkv742</a></td>
<td>znhvdtg8</td>
<td>0.578464</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="ihip45mw";>263</th>
<td>Cooper_2014</td>
<td>Proof by synthesis of Tobacco mosaic virus</td>
<td>Cooper, Bret</td>
<td>2014</td>
<td>2014-04-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4072989" target="_blank">PMC4072989</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24887356.0" target="_blank">24887356.0</a></td>
<td><a href="https://doi.org/10.1186/gb-2014-15-5-r67" target="_blank">10.1186/gb-2014-15-5-r67</a></td>
<td>ihip45mw</td>
<td>0.577495</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a></td>
</tr>
<tr>
<th id="yf8fvx7k";>264</th>
<td>Bekaert_2005</td>
<td>An Extended Signal Involved in Eukaryotic −1 Frameshifting Operates through Modification of the E Site tRNA</td>
<td>Bekaert, Michaël; Rousset, Jean-Pierre</td>
<td>2005</td>
<td>2005-01-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7129640" target="_blank">PMC7129640</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15629717.0" target="_blank">15629717.0</a></td>
<td><a href="https://doi.org/10.1016/j.molcel.2004.12.009" target="_blank">10.1016/j.molcel.2004.12.009</a></td>
<td>yf8fvx7k</td>
<td>0.575770</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="r68l7g2e";>265</th>
<td>Gorbalenya_2006</td>
<td>Nidovirales: Evolving the largest RNA virus genome</td>
<td>Gorbalenya, Alexander E.; Enjuanes, Luis; Ziebuhr, John; Snijder, Eric J.</td>
<td>2006</td>
<td>2006-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114179" target="_blank">PMC7114179</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16503362.0" target="_blank">16503362.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2006.01.017" target="_blank">10.1016/j.virusres.2006.01.017</a></td>
<td>r68l7g2e</td>
<td>0.574454</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_19.html#g4sg2nex">Posthuma_2017</a>, <a href="Topic_19.html#d6vud7xg">Ogando_2019</a></td>
</tr>
<tr>
<th id="5r0oc9kz";>266</th>
<td>Parsons_1984</td>
<td>Trypanosome mRNAs share a common 5′ spliced leader sequence</td>
<td>Parsons, Marilyn; Nelson, Richard G.; Watkins, Kenneth P.; Agabian, Nina</td>
<td>1984</td>
<td>1984-08-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133311" target="_blank">PMC7133311</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6088073.0" target="_blank">6088073.0</a></td>
<td><a href="https://doi.org/10.1016/0092-8674(84)90552-x" target="_blank">10.1016/0092-8674(84)90552-x</a></td>
<td>5r0oc9kz</td>
<td>0.574434</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#so5jooj0">Bertholet_1987</a></td>
<td><a href="Topic_19.html#5q8tvowp">Milhausen_1984</a>, <a href="Topic_19.html#dg94h2ko">Samal_2013</a>, <a href="Topic_19.html#ztmrrii3">Baric_1985</a></td>
</tr>
<tr>
<th id="hq84lje9";>267</th>
<td>Martínez-Salas_2008</td>
<td>The impact of RNA structure on picornavirus IRES activity</td>
<td>Martínez-Salas, Encarnación</td>
<td>2008</td>
<td>2008-05-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18420413.0" target="_blank">18420413.0</a></td>
<td><a href="https://doi.org/10.1016/j.tim.2008.01.013" target="_blank">10.1016/j.tim.2008.01.013</a></td>
<td>hq84lje9</td>
<td>0.574153</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td></td>
</tr>
<tr>
<th id="pl3tmky8";>268</th>
<td>Brian_2005</td>
<td>Coronavirus Genome Structure and Replication</td>
<td>Brian, D. A.; Baric, R. S.</td>
<td>2005</td>
<td>2005-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7120446" target="_blank">PMC7120446</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15609507.0" target="_blank">15609507.0</a></td>
<td><a href="https://doi.org/10.1007/3-540-26765-4_1" target="_blank">10.1007/3-540-26765-4_1</a></td>
<td>pl3tmky8</td>
<td>0.571765</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#432ixb7g">Phillips_2011</a></td>
</tr>
<tr>
<th id="wbwb90h8";>269</th>
<td>Yokomori_1991</td>
<td>Heterogeneity of gene expression of the hemagglutinin-esterase (HE) protein of murine coronaviruses</td>
<td>Yokomori, Kyoko; Banner, Lisa R.; Lai, Michael M.C.</td>
<td>1991</td>
<td>1991-08-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130567" target="_blank">PMC7130567</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1649505.0" target="_blank">1649505.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90994-m" target="_blank">10.1016/0042-6822(91)90994-m</a></td>
<td>wbwb90h8</td>
<td>0.571741</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_23.html#7zf5tx94">Duckmanton_1999</a>, <a href="Topic_62.html#16sxf5fs">Morita_1998</a>, <a href="Topic_14.html#5rnqd9mb">Zhang_1998</a></td>
</tr>
<tr>
<th id="s0zrvn9o";>270</th>
<td>Graham_2008</td>
<td>Sequence analysis of a reovirus isolated from the winter moth Operophtera brumata (Lepidoptera: Geometridae) and its parasitoid wasp Phobocampe tempestiva (Hymenoptera: Ichneumonidae)</td>
<td>Graham, Robert I.; Rao, Shujing; Sait, Steven M.; Attoui, Houssam; Mertens, Peter P.C.; Hails, Rosemary S.; Possee, Robert D.</td>
<td>2008</td>
<td>2008-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114361" target="_blank">PMC7114361</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18405997.0" target="_blank">18405997.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2008.02.005" target="_blank">10.1016/j.virusres.2008.02.005</a></td>
<td>s0zrvn9o</td>
<td>0.570791</td>
<td><a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a></td>
<td><a href="Topic_09.html#44h6rdwg">Zhou_2017</a>, <a href="Topic_37.html#f5hfssk5">Hashimoto_2005</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="0v8yd5qj";>271</th>
<td>Dunkle_2015</td>
<td>Mechanisms of mRNA frame maintenance and its subversion during translation of the genetic code</td>
<td>Dunkle, Jack A.; Dunham, Christine M.</td>
<td>2015</td>
<td>2015-07-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4458409" target="_blank">PMC4458409</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25708857.0" target="_blank">25708857.0</a></td>
<td><a href="https://doi.org/10.1016/j.biochi.2015.02.007" target="_blank">10.1016/j.biochi.2015.02.007</a></td>
<td>0v8yd5qj</td>
<td>0.570295</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#il9mz5na">Rodnina_2020</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="crmggkkx";>272</th>
<td>Flores_2000</td>
<td>Avsunviroidae family: Viroids containing hammerhead ribozymes</td>
<td>Flores, Ricardo; Daròs, Jose-Antonio; Hernández, Carmen</td>
<td>2000</td>
<td>2000-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11050945.0" target="_blank">11050945.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(00)55006-4" target="_blank">10.1016/s0065-3527(00)55006-4</a></td>
<td>crmggkkx</td>
<td>0.570172</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#gqvwiy5h">Modrow_2013</a></td>
<td></td>
</tr>
<tr>
<th id="i9q5il41";>273</th>
<td>MÉNDEZ_1996</td>
<td>Molecular Characterization of Transmissible Gastroenteritis Coronavirus Defective Interfering Genomes: Packaging and Heterogeneity</td>
<td>MÉNDEZ, ANA; SMERDOU, CRISTIAN; IZETA, ANDER; GEBAUER, FÁTIMA; ENJUANES, LUIS</td>
<td>1996</td>
<td>1996-03-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131039" target="_blank">PMC7131039</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8610441.0" target="_blank">8610441.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1996.0144" target="_blank">10.1006/viro.1996.0144</a></td>
<td>i9q5il41</td>
<td>0.570008</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#jbp8bxjz">Derdeyn_1995</a></td>
</tr>
<tr>
<th id="qtn3ukf4";>274</th>
<td>Gendron_2010</td>
<td>The activity of the HIV-1 IRES is stimulated by oxidative stress and controlled by a negative regulatory element</td>
<td>Gendron, Karine; Ferbeyre, Gerardo; Heveker, Nikolaus; Brakier-Gingras, Léa</td>
<td>2010</td>
<td>2010-10-08</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3035469" target="_blank">PMC3035469</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20935056.0" target="_blank">20935056.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq885" target="_blank">10.1093/nar/gkq885</a></td>
<td>qtn3ukf4</td>
<td>0.567175</td>
<td><a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_55.html#ul0k95x2">van_der_Linden_2014</a>, <a href="Topic_19.html#ywkxxye5">Fajardo_2012</a></td>
</tr>
<tr>
<th id="50lhd5yc";>275</th>
<td>Napthine_2017</td>
<td>Protein-directed ribosomal frameshifting temporally regulates gene expression</td>
<td>Napthine, Sawsan; Ling, Roger; Finch, Leanne K.; Jones, Joshua D.; Bell, Susanne; Brierley, Ian; Firth, Andrew E.</td>
<td>2017</td>
<td>2017-06-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5472766" target="_blank">PMC5472766</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28593994.0" target="_blank">28593994.0</a></td>
<td><a href="https://doi.org/10.1038/ncomms15582" target="_blank">10.1038/ncomms15582</a></td>
<td>50lhd5yc</td>
<td>0.567000</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a></td>
<td><a href="Topic_19.html#xgwbl8em">Henderson_2006</a></td>
</tr>
<tr>
<th id="vjre36nt";>276</th>
<td>Firth_2011</td>
<td>Discovery of a small arterivirus gene that overlaps the GP5 coding sequence and is important for virus production</td>
<td>Firth, Andrew E.; Zevenhoven-Dobbe, Jessika C.; Wills, Norma M.; Go, Yun Young; Balasuriya, Udeni B. R.; Atkins, John F.; Snijder, Eric J.; Posthuma, Clara C.</td>
<td>2011</td>
<td>2011-05-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3139419" target="_blank">PMC3139419</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21307223.0" target="_blank">21307223.0</a></td>
<td><a href="https://doi.org/10.1099/vir.0.029264-0" target="_blank">10.1099/vir.0.029264-0</a></td>
<td>vjre36nt</td>
<td>0.566190</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="bvvjdnp7";>277</th>
<td>Draker_2006</td>
<td>The complete sequence of the bovine torovirus genome</td>
<td>Draker, Ryan; Roper, Rachel L.; Petric, Martin; Tellier, Raymond</td>
<td>2006</td>
<td>2006-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114287" target="_blank">PMC7114287</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16137782.0" target="_blank">16137782.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2005.07.005" target="_blank">10.1016/j.virusres.2005.07.005</a></td>
<td>bvvjdnp7</td>
<td>0.566190</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#bam3pa70">Lee_H_1991</a></td>
<td><a href="Topic_43.html#8y5tm8zc">Duckmanton_1998</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="l2akpv5b";>278</th>
<td>Pachuk_1989</td>
<td>Molecular cloning of the gene encoding the putative polymerase of mouse hepatitis coronavirus, strain A59</td>
<td>Pachuk, Catherine J.; Bredenbeek, Peter J.; Zoltick, Philip W.; Spaan, Willy J.M.; Weiss, Susan R.</td>
<td>1989</td>
<td>1989-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130916" target="_blank">PMC7130916</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2545027.0" target="_blank">2545027.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(89)90520-5" target="_blank">10.1016/0042-6822(89)90520-5</a></td>
<td>l2akpv5b</td>
<td>0.566073</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="4s71mh8j";>279</th>
<td>van_Ooij_2006</td>
<td>Polyadenylation of genomic RNA and initiation of antigenomic RNA in a positive-strand RNA virus are controlled by the same cis-element</td>
<td>van Ooij, Mark J. M.; Polacek, Charlotta; Glaudemans, Dirk H. R. F.; Kuijpers, Judith; van Kuppeveld, Frank J. M.; Andino, Raul; Agol, Vadim I.; Melchers, Willem J. G.</td>
<td>2006</td>
<td>2006-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1474053" target="_blank">PMC1474053</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16738134.0" target="_blank">16738134.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkl349" target="_blank">10.1093/nar/gkl349</a></td>
<td>4s71mh8j</td>
<td>0.564477</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="4hwamo17";>280</th>
<td>Yi_G_2009</td>
<td>RNA Binding by the Brome Mosaic Virus Capsid Protein and the Regulation of Viral RNA Accumulation</td>
<td>Yi, Guanghui; Vaughan, Robert C.; Yarbrough, Ian; Dharmaiah, S.; Kao, C. Cheng</td>
<td>2009</td>
<td>2009-08-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2774812" target="_blank">PMC2774812</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19481091.0" target="_blank">19481091.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2009.05.065" target="_blank">10.1016/j.jmb.2009.05.065</a></td>
<td>4hwamo17</td>
<td>0.563316</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="tkfozwpf";>281</th>
<td>Sasvari_2011</td>
<td>Synergistic Roles of Eukaryotic Translation Elongation Factors 1Bγ and 1A in Stimulation of Tombusvirus Minus-Strand Synthesis</td>
<td>Sasvari, Zsuzsanna; Izotova, Lara; Kinzy, Terri Goss; Nagy, Peter D.</td>
<td>2011</td>
<td>2011-12-15</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3240602" target="_blank">PMC3240602</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22194687.0" target="_blank">22194687.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1002438" target="_blank">10.1371/journal.ppat.1002438</a></td>
<td>tkfozwpf</td>
<td>0.562974</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a>, <a href="Topic_12.html#06qfbvlr">Li_Z_2009</a></td>
</tr>
<tr>
<th id="rd61t7ln";>282</th>
<td>Lenstra_1988</td>
<td>Synthesis of long cDNA from viral RNA template</td>
<td>Lenstra, J.A.; De Groot, R.J.; Jacobs, L.; Kusters, J.G.; Niesters, H.G.M.; Van Der Zeijst, B.A.M.</td>
<td>1988</td>
<td>1988-06-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3192156.0" target="_blank">3192156.0</a></td>
<td><a href="https://doi.org/10.1016/0735-0651(88)90017-9" target="_blank">10.1016/0735-0651(88)90017-9</a></td>
<td>rd61t7ln</td>
<td>0.561524</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#86ptuyn8">Majerciak_2018</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a>, <a href="Topic_37.html#402ls2aq">Endoh_2005</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="r2j3yssb";>283</th>
<td>Wang_2011</td>
<td>Poly(C)-Binding Protein 2 Interacts with Sequences Required for Viral Replication in the Hepatitis C Virus (HCV) 5′ Untranslated Region and Directs HCV RNA Replication through Circularizing the Viral Genome</td>
<td>Wang, Linya; Jeng, King-Song; Lai, Michael M. C.</td>
<td>2011</td>
<td>2011-06-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3147998" target="_blank">PMC3147998</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21632751.0" target="_blank">21632751.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00339-11" target="_blank">10.1128/jvi.00339-11</a></td>
<td>r2j3yssb</td>
<td>0.561448</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#h2asxv4j">Liu_H_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#pmdera3v">Masaki_2015</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="ncufofro";>284</th>
<td>Nakagawa_2016</td>
<td>Chapter Five Viral and Cellular mRNA Translation in Coronavirus-Infected Cells</td>
<td>Nakagawa, K.; Lokugamage, K.G.; Makino, S.</td>
<td>2016</td>
<td>2016-12-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5388242" target="_blank">PMC5388242</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27712623.0" target="_blank">27712623.0</a></td>
<td><a href="https://doi.org/10.1016/bs.aivir.2016.08.001" target="_blank">10.1016/bs.aivir.2016.08.001</a></td>
<td>ncufofro</td>
<td>0.560867</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#6ghod65y">Galán_2009</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="31by8zse";>285</th>
<td>Imbert_2006</td>
<td>A second, non-canonical RNA-dependent RNA polymerase in SARS Coronavirus</td>
<td>Imbert, Isabelle; Guillemot, Jean-Claude; Bourhis, Jean-Marie; Bussetta, Cécile; Coutard, Bruno; Egloff, Marie-Pierre; Ferron, François; Gorbalenya, Alexander E; Canard, Bruno</td>
<td>2006</td>
<td>2006-10-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1618104" target="_blank">PMC1618104</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17024178.0" target="_blank">17024178.0</a></td>
<td><a href="https://doi.org/10.1038/sj.emboj.7601368" target="_blank">10.1038/sj.emboj.7601368</a></td>
<td>31by8zse</td>
<td>0.560188</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#1tlxfc6r">Ahn_D_2012</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="vy1nxax2";>286</th>
<td>Malagnac_2013</td>
<td>Rab-GDI Complex Dissociation Factor Expressed through Translational Frameshifting in Filamentous Ascomycetes</td>
<td>Malagnac, Fabienne; Fabret, Céline; Prigent, Magali; Rousset, Jean-Pierre; Namy, Olivier; Silar, Philippe</td>
<td>2013</td>
<td>2013-09-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3777964" target="_blank">PMC3777964</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24069231.0" target="_blank">24069231.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0073772" target="_blank">10.1371/journal.pone.0073772</a></td>
<td>vy1nxax2</td>
<td>0.559713</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_27.html#qaurriwg">Connelly_1996</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#n3omlvfl">Brown_2008</a></td>
<td><a href="Topic_10.html#waho38j5">Bhat_2011</a>, <a href="Topic_19.html#cwcpsq65">Suzuki_1992</a></td>
</tr>
<tr>
<th id="6f4h3cck";>287</th>
<td>Kozak_2002</td>
<td>Pushing the limits of the scanning mechanism for initiation of translation</td>
<td>Kozak, Marilyn</td>
<td>2002</td>
<td>2002-10-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126118" target="_blank">PMC7126118</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12459250.0" target="_blank">12459250.0</a></td>
<td><a href="https://doi.org/10.1016/s0378-1119(02)01056-9" target="_blank">10.1016/s0378-1119(02)01056-9</a></td>
<td>6f4h3cck</td>
<td>0.559664</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#2xvd5ogf">Napthine_2009</a>, <a href="Topic_19.html#xq1dxmb9">KRISHNAN_1996</a></td>
</tr>
<tr>
<th id="4kgy20o9";>288</th>
<td>de_Vries_1997</td>
<td>The Genome Organization of the Nidovirales: Similarities and Differences between Arteri-, Toro-, and Coronaviruses</td>
<td>de Vries, Antoine A.F.; Horzinek, Marian C.; Rottier, Peter J.M.; de Groot, Raoul J.</td>
<td>1997</td>
<td>1997-02-28</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1006/smvy.1997.0104" target="_blank">10.1006/smvy.1997.0104</a></td>
<td>4kgy20o9</td>
<td>0.558854</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a></td>
</tr>
<tr>
<th id="ajfgwe3o";>289</th>
<td>Xie_P_2016</td>
<td>Model of the pathway of −1 frameshifting: Long pausing</td>
<td>Xie, Ping</td>
<td>2016</td>
<td>2016-01-29</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5600365" target="_blank">PMC5600365</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28955849.0" target="_blank">28955849.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrep.2016.01.017" target="_blank">10.1016/j.bbrep.2016.01.017</a></td>
<td>ajfgwe3o</td>
<td>0.558056</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td></td>
</tr>
<tr>
<th id="xzw8iwzf";>290</th>
<td>Lehmann_2016</td>
<td>Arterivirus RNA-dependent RNA polymerase: Vital enzymatic activity remains elusive</td>
<td>Lehmann, Kathleen C.; Gorbalenya, Alexander E.; Snijder, Eric J.; Posthuma, Clara C.</td>
<td>2016</td>
<td>2016-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111705" target="_blank">PMC7111705</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26499043.0" target="_blank">26499043.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2015.10.002" target="_blank">10.1016/j.virol.2015.10.002</a></td>
<td>xzw8iwzf</td>
<td>0.557173</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#s0lcyjgh">Yu_F_2007</a></td>
</tr>
<tr>
<th id="9ix9sg2u";>291</th>
<td>Wong_2008</td>
<td>Identification of Plant Virus IRES</td>
<td>Wong, Sek-Man; Koh, Dora Chin-Yen; Liu, Dingxiang</td>
<td>2008</td>
<td>2008-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121985" target="_blank">PMC7121985</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18370252.0" target="_blank">18370252.0</a></td>
<td><a href="https://doi.org/10.1007/978-1-59745-102-4_9" target="_blank">10.1007/978-1-59745-102-4_9</a></td>
<td>9ix9sg2u</td>
<td>0.556299</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_09.html#77lqxgmh">Wu_H_2004</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_12.html#xkcqo86y">Garcia_2014</a></td>
</tr>
<tr>
<th id="mq414yby";>292</th>
<td>Firth_2012</td>
<td>Ribosomal frameshifting used in influenza A virus expression occurs within the sequence UCC_UUU_CGU and is in the +1 direction</td>
<td>Firth, A. E.; Jagger, B. W.; Wise, H. M.; Nelson, C. C.; Parsawar, K.; Wills, N. M.; Napthine, S.; Taubenberger, J. K.; Digard, P.; Atkins, J. F.</td>
<td>2012</td>
<td>2012-10-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3498833" target="_blank">PMC3498833</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23155484.0" target="_blank">23155484.0</a></td>
<td><a href="https://doi.org/10.1098/rsob.120109" target="_blank">10.1098/rsob.120109</a></td>
<td>mq414yby</td>
<td>0.556164</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="6g55l35h";>293</th>
<td>Nedialkova_2010</td>
<td>Arterivirus Nsp1 Modulates the Accumulation of Minus-Strand Templates to Control the Relative Abundance of Viral mRNAs</td>
<td>Nedialkova, Danny D.; Gorbalenya, Alexander E.; Snijder, Eric J.</td>
<td>2010</td>
<td>2010-02-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2824749" target="_blank">PMC2824749</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20174607.0" target="_blank">20174607.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1000772" target="_blank">10.1371/journal.ppat.1000772</a></td>
<td>6g55l35h</td>
<td>0.555890</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="tkdh740c";>294</th>
<td>Arkhipova_2017</td>
<td>Giant Reverse Transcriptase-Encoding Transposable Elements at Telomeres</td>
<td>Arkhipova, Irina R.; Yushenova, Irina A.; Rodriguez, Fernando</td>
<td>2017</td>
<td>2017-05-30</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850863" target="_blank">PMC5850863</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28575409.0" target="_blank">28575409.0</a></td>
<td><a href="https://doi.org/10.1093/molbev/msx159" target="_blank">10.1093/molbev/msx159</a></td>
<td>tkdh740c</td>
<td>0.554460</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="1pou702r";>295</th>
<td>Lin_Y_2016</td>
<td>Rational design of a synthetic mammalian riboswitch as a ligand-responsive -1 ribosomal frame-shifting stimulator</td>
<td>Lin, Ya-Hui; Chang, Kung-Yao</td>
<td>2016</td>
<td>2016-10-14</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5062990" target="_blank">PMC5062990</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27521370.0" target="_blank">27521370.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw718" target="_blank">10.1093/nar/gkw718</a></td>
<td>1pou702r</td>
<td>0.551962</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="ec1uq448";>296</th>
<td>Bencun_2018</td>
<td>Translational profiling of B cells infected with the Epstein-Barr virus reveals 5′ leader ribosome recruitment through upstream open reading frames</td>
<td>Bencun, Maja; Klinke, Olaf; Hotz-Wagenblatt, Agnes; Klaus, Severina; Tsai, Ming-Han; Poirey, Remy; Delecluse, Henri-Jacques</td>
<td>2018</td>
<td>2018-04-06</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887285" target="_blank">PMC5887285</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29529302.0" target="_blank">29529302.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gky129" target="_blank">10.1093/nar/gky129</a></td>
<td>ec1uq448</td>
<td>0.551355</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#ztmrrii3">Baric_1985</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="5h8mtupm";>297</th>
<td>Mendes_2018</td>
<td>Alphavirus Nucleocapsid Packaging and Assembly</td>
<td>Mendes, Adriano; Kuhn, Richard J.</td>
<td>2018</td>
<td>2018-03-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5869531" target="_blank">PMC5869531</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29558394.0" target="_blank">29558394.0</a></td>
<td><a href="https://doi.org/10.3390/v10030138" target="_blank">10.3390/v10030138</a></td>
<td>5h8mtupm</td>
<td>0.551235</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#qdy29oym">Denison_2008</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="u8otoxn4";>298</th>
<td>Sawicki_1986</td>
<td>The effect of loss of regulation of minus-strand RNA synthesis on sindbis virus replication</td>
<td>Sawicki, Stanley G.; Sawicki, Dorothea L.</td>
<td>1986</td>
<td>1986-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131060" target="_blank">PMC7131060</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3705466.0" target="_blank">3705466.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(86)90054-1" target="_blank">10.1016/0042-6822(86)90054-1</a></td>
<td>u8otoxn4</td>
<td>0.551159</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="rw2byz31";>299</th>
<td>Stahl_2002</td>
<td>Ribosome structure: revisiting the connection between translational accuracy and unconventional decoding</td>
<td>Stahl, Guillaume; McCarty, Gregory P; Farabaugh, Philip J</td>
<td>2002</td>
<td>2002-04-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126812" target="_blank">PMC7126812</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11943544.0" target="_blank">11943544.0</a></td>
<td><a href="https://doi.org/10.1016/s0968-0004(02)02064-9" target="_blank">10.1016/s0968-0004(02)02064-9</a></td>
<td>rw2byz31</td>
<td>0.551008</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#i3yiuai7">Namy_2006</a>, <a href="Topic_19.html#6uv9nu65">Wan_J_2018</a></td>
</tr>
<tr>
<th id="utigp2vi";>300</th>
<td>Wojciechowska_2014</td>
<td>RAN translation and frameshifting as translational challenges at simple repeats of human neurodegenerative disorders</td>
<td>Wojciechowska, Marzena; Olejniczak, Marta; Galka-Marciniak, Paulina; Jazurek, Magdalena; Krzyzosiak, Wlodzimierz J.</td>
<td>2014</td>
<td>2014-10-29</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4231732" target="_blank">PMC4231732</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25217582.0" target="_blank">25217582.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku794" target="_blank">10.1093/nar/gku794</a></td>
<td>utigp2vi</td>
<td>0.550852</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a></td>
<td><a href="Topic_74.html#rj03dsib">Schein_2018</a>, <a href="Topic_19.html#8yu5j496">Toh_Z_2016</a></td>
</tr>
<tr>
<th id="dv6aak01";>301</th>
<td>Ivanyi-Nagy_2012</td>
<td>Reprint of: Core protein-mediated 5′–3′ annealing of the West Nile virus genomic RNA in vitro</td>
<td>Ivanyi-Nagy, Roland; Darlix, Jean-Luc</td>
<td>2012</td>
<td>2012-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.virusres.2012.09.009" target="_blank">10.1016/j.virusres.2012.09.009</a></td>
<td>dv6aak01</td>
<td>0.550737</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="obes9kjl";>302</th>
<td>Chen_2010</td>
<td>Group-specific structural features of the 5′-proximal sequences of coronavirus genomic RNAs</td>
<td>Chen, Shih-Cheng; Olsthoorn, René C.L.</td>
<td>2010</td>
<td>2010-05-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111916" target="_blank">PMC7111916</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20202661.0" target="_blank">20202661.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.02.007" target="_blank">10.1016/j.virol.2010.02.007</a></td>
<td>obes9kjl</td>
<td>0.550599</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a></td>
<td></td>
</tr>
<tr>
<th id="62izhj8d";>303</th>
<td>Kelly_2020</td>
<td>Structural and functional conservation of the programmed -1 ribosomal frameshift signal of SARS-CoV-2</td>
<td>Jamie A. Kelly; Jonathan D. Dinman</td>
<td>2020</td>
<td>2020-03-15</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.03.13.991083" target="_blank">10.1101/2020.03.13.991083</a></td>
<td>62izhj8d</td>
<td>0.549410</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_10.html#gceffbfp">Yuan_2004</a>, <a href="Topic_23.html#tmp6yxlv">Pinto_2020</a>, <a href="Topic_38.html#n44yml79">Ng_O_2014</a></td>
</tr>
<tr>
<th id="rbwag5qi";>304</th>
<td>Pattnaik_1995</td>
<td>The termini of VSV DI particle RNAs are sufficient to signal RNA encapsidation, replication, and budding to generate infectious particles</td>
<td>Pattnaik, Asit K.; Ball, L. Andrew; Legrone, Alison; Wertz, Gail W.</td>
<td>1995</td>
<td>1995-01-10</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7831839.0" target="_blank">7831839.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(95)80005-0" target="_blank">10.1016/s0042-6822(95)80005-0</a></td>
<td>rbwag5qi</td>
<td>0.548360</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="qn2frbwo";>305</th>
<td>Carlson_2008</td>
<td>RIBOSOMAL FRAMESHIFTING IN RESPONSE TO HYPOMODIFIED tRNAs IN XENOPUS OOCYTES</td>
<td>Carlson, Bradley A.; Lee, Byeong Jae; Hatfield, Dolph L.</td>
<td>2008</td>
<td>2008-10-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2674873" target="_blank">PMC2674873</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18675785.0" target="_blank">18675785.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2008.07.118" target="_blank">10.1016/j.bbrc.2008.07.118</a></td>
<td>qn2frbwo</td>
<td>0.547997</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#431pyuzu">Farabaugh_1993</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
<td><a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_19.html#xk4yuibj">Belcourt_1990</a></td>
</tr>
<tr>
<th id="5hm0jr7u";>306</th>
<td>Dedepsidis_2010</td>
<td>Correlation between recombination junctions and RNA secondary structure elements in poliovirus Sabin strains</td>
<td>Dedepsidis, Evaggelos; Kyriakopoulou, Zaharoula; Pliaka, Vaia; Markoulatos, Panayotis</td>
<td>2010</td>
<td>2010-07-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089419" target="_blank">PMC7089419</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20640496.0" target="_blank">20640496.0</a></td>
<td><a href="https://doi.org/10.1007/s11262-010-0512-5" target="_blank">10.1007/s11262-010-0512-5</a></td>
<td>5hm0jr7u</td>
<td>0.547682</td>
<td><a href="Topic_09.html#o9jdt86j">Callison_1999</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td></td>
</tr>
<tr>
<th id="y97iyrwj";>307</th>
<td>Kirkegaard_1992</td>
<td>Genetic analysis of picornaviruses</td>
<td>Kirkegaard, Karla</td>
<td>1992</td>
<td>1992-02-29</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1321679.0" target="_blank">1321679.0</a></td>
<td><a href="https://doi.org/10.1016/s0959-437x(05)80324-7" target="_blank">10.1016/s0959-437x(05)80324-7</a></td>
<td>y97iyrwj</td>
<td>0.546357</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td></td>
</tr>
<tr>
<th id="onybus5o";>308</th>
<td>Korniy_2019</td>
<td>Modulation of HIV-1 Gag/Gag-Pol frameshifting by tRNA abundance</td>
<td>Korniy, Natalia; Goyal, Akanksha; Hoffmann, Markus; Samatova, Ekaterina; Peske, Frank; Pöhlmann, Stefan; Rodnina, Marina V</td>
<td>2019</td>
<td>2019-06-04</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6547452" target="_blank">PMC6547452</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30968122.0" target="_blank">30968122.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz202" target="_blank">10.1093/nar/gkz202</a></td>
<td>onybus5o</td>
<td>0.544124</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_29.html#pgy1a1d5">van_Weringh_2011</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_55.html#20fhpmfg">Moosmayer_1991</a></td>
</tr>
<tr>
<th id="btfz6ye8";>309</th>
<td>Schreiber_1989</td>
<td>Sequence analysis of the nucleocapsid protein gene of human coronavirus 229E</td>
<td>Schreiber, Steven S.; Kamahora, Toshio; Lai, Michael M.C.</td>
<td>1989</td>
<td>1989-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131124" target="_blank">PMC7131124</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2922924.0" target="_blank">2922924.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(89)90050-0" target="_blank">10.1016/0042-6822(89)90050-0</a></td>
<td>btfz6ye8</td>
<td>0.544023</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_62.html#8cpgv08l">Jouvenne_1990</a>, <a href="Topic_62.html#wdi66k53">Jouvenne_1992</a>, <a href="Topic_62.html#mj9ea464">Lapps_1987</a></td>
</tr>
<tr>
<th id="or5nbobd";>310</th>
<td>Li_Y_2019</td>
<td>Programmed −2/−1 Ribosomal Frameshifting in Simarteriviruses: an Evolutionarily Conserved Mechanism</td>
<td>Li, Yanhua; Firth, Andrew E.; Brierley, Ian; Cai, Yingyun; Napthine, Sawsan; Wang, Tao; Yan, Xingyu; Kuhn, Jens H.; Fang, Ying</td>
<td>2019</td>
<td>2019-07-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6675879" target="_blank">PMC6675879</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31167906.0" target="_blank">31167906.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00370-19" target="_blank">10.1128/jvi.00370-19</a></td>
<td>or5nbobd</td>
<td>0.542866</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td></td>
</tr>
<tr>
<th id="cwuls6xs";>311</th>
<td>Visscher_2016</td>
<td>Chapter Two −1 Programmed Ribosomal Frameshifting as a Force-Dependent Process</td>
<td>Visscher, Koen</td>
<td>2016</td>
<td>2016-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7102820" target="_blank">PMC7102820</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26970190.0" target="_blank">26970190.0</a></td>
<td><a href="https://doi.org/10.1016/bs.pmbts.2015.11.003" target="_blank">10.1016/bs.pmbts.2015.11.003</a></td>
<td>cwuls6xs</td>
<td>0.542490</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#5xqnpur7">Cao_S_2008</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a></td>
<td><a href="Topic_19.html#58cat4xj">Caliskan_2015</a>, <a href="Topic_19.html#igzdrbfr">Bock_2019</a></td>
</tr>
<tr>
<th id="v3yqs4u8";>312</th>
<td>Enjuanes_2008</td>
<td>Nidovirales</td>
<td>Enjuanes, L.; Gorbalenya, A.E.; de Groot, R.J.; Cowley, J.A.; Ziebuhr, J.; Snijder, E.J.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150171" target="_blank">PMC7150171</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00775-5" target="_blank">10.1016/b978-012374410-4.00775-5</a></td>
<td>v3yqs4u8</td>
<td>0.541042</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="qfmzrexc";>313</th>
<td>Grötzinger_1996</td>
<td>Characterization of a 105-kDa Polypeptide Encoded in Gene 1 of the Human Coronavirus HCV 229E</td>
<td>Grötzinger, Carsten; Heusipp, Gerhard; Ziebuhr, John; Harms, Ute; Süss, Jochen; Siddell, Stuart G.</td>
<td>1996</td>
<td>1996-08-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130665" target="_blank">PMC7130665</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8806502.0" target="_blank">8806502.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1996.0413" target="_blank">10.1006/viro.1996.0413</a></td>
<td>qfmzrexc</td>
<td>0.540346</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_62.html#yaw92db7">O'Connor_1999</a></td>
</tr>
<tr>
<th id="g4sg2nex";>314</th>
<td>Posthuma_2017</td>
<td>Nidovirus RNA polymerases: Complex enzymes handling exceptional RNA genomes</td>
<td>Posthuma, Clara C.; te Velthuis, Aartjan J.W.; Snijder, Eric J.</td>
<td>2017</td>
<td>2017-04-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114556" target="_blank">PMC7114556</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28174054.0" target="_blank">28174054.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2017.01.023" target="_blank">10.1016/j.virusres.2017.01.023</a></td>
<td>g4sg2nex</td>
<td>0.540240</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_55.html#xocmve3x">Mielech_2014</a></td>
</tr>
<tr>
<th id="jlnv90vn";>315</th>
<td>Stewart_2018</td>
<td>Transcriptional and Translational Landscape of Equine Torovirus</td>
<td>Stewart, Hazel; Brown, Katherine; Dinan, Adam M.; Irigoyen, Nerea; Snijder, Eric J.; Firth, Andrew E.</td>
<td>2018</td>
<td>2018-08-16</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6096809" target="_blank">PMC6096809</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29950409.0" target="_blank">29950409.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00589-18" target="_blank">10.1128/jvi.00589-18</a></td>
<td>jlnv90vn</td>
<td>0.540184</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#mozfm5ds">Stewart_2018</a>, <a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a></td>
</tr>
<tr>
<th id="7ad7ievj";>316</th>
<td>Gao_F_2012</td>
<td>Cis-acting structural element in 5′ UTR is essential for infectivity of porcine reproductive and respiratory syndrome virus</td>
<td>Gao, Fei; Lu, Jiaqi; Yao, Huochun; Wei, Zuzhang; Yang, Qian; Yuan, Shishan</td>
<td>2012</td>
<td>2012-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114472" target="_blank">PMC7114472</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21924304.0" target="_blank">21924304.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2011.08.018" target="_blank">10.1016/j.virusres.2011.08.018</a></td>
<td>7ad7ievj</td>
<td>0.538840</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="s8hdoq4a";>317</th>
<td>Neill_1988</td>
<td>Further characterization of the virus-specific RNAs in feline calicivirus infected cells</td>
<td>Neill, John D.; Mengeling, William L.</td>
<td>1988</td>
<td>1988-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3176687.0" target="_blank">3176687.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(88)90067-6" target="_blank">10.1016/0168-1702(88)90067-6</a></td>
<td>s8hdoq4a</td>
<td>0.537869</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a></td>
<td></td>
</tr>
<tr>
<th id="ex3zlq38";>318</th>
<td>Wijngaert_2020</td>
<td>Cryo-EM structures reveal transcription initiation steps by yeast mitochondrial RNA polymerase</td>
<td>Brent De Wijngaert; Shemaila Sultana; Chhaya Dharia; Hans Vanbuel; Jiayu Shen; Daniel vasilchuk; Sergio E Martinez; Eaazhisai Kandiah; Smita S Patel; Kalyan Das</td>
<td>2020</td>
<td>2020-04-14</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.13.038620" target="_blank">10.1101/2020.04.13.038620</a></td>
<td>ex3zlq38</td>
<td>0.537463</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#gs8s7kn8">Herold_2001</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="3g3apbon";>319</th>
<td>Lauber_2013</td>
<td>The Footprint of Genome Architecture in the Largest Genome Expansion in RNA Viruses</td>
<td>Lauber, Chris; Goeman, Jelle J.; Parquet, Maria del Carmen; Thi Nga, Phan; Snijder, Eric J.; Morita, Kouichi; Gorbalenya, Alexander E.</td>
<td>2013</td>
<td>2013-07-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3715407" target="_blank">PMC3715407</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23874204.0" target="_blank">23874204.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1003500" target="_blank">10.1371/journal.ppat.1003500</a></td>
<td>3g3apbon</td>
<td>0.535294</td>
<td><a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td></td>
</tr>
<tr>
<th id="yvha7wzz";>320</th>
<td>Khan_2019</td>
<td>Contesting the evidence for -1 frameshifting in immune-functioning C-C chemokine receptor 5 (CCR5) - the HIV-1 co-receptor</td>
<td>Yousuf A Khan; Gary Loughran; John F. Atkins</td>
<td>2019</td>
<td>2019-01-08</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/513333" target="_blank">10.1101/513333</a></td>
<td>yvha7wzz</td>
<td>0.535236</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#6m4qrt3m">Brunelle_1999</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="il66v434";>321</th>
<td>Türkel_2011</td>
<td>Glucose signalling pathway controls the programmed ribosomal frameshift efficiency in retroviral‐like element Ty3 in Saccharomyces cerevisiae</td>
<td>Türkel, Sezai; Kaplan, Güliz; Farabaugh, Philip J.</td>
<td>2011</td>
<td>2011-10-12</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169698" target="_blank">PMC7169698</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21989811.0" target="_blank">21989811.0</a></td>
<td><a href="https://doi.org/10.1002/yea.1906" target="_blank">10.1002/yea.1906</a></td>
<td>il66v434</td>
<td>0.534800</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td></td>
</tr>
<tr>
<th id="a5htfx76";>322</th>
<td>Dost_2006</td>
<td>Structural Alignment of Pseudoknotted RNA</td>
<td>Dost, Banu; Han, Buhm; Zhang, Shaojie; Bafna, Vineet</td>
<td>2006</td>
<td>2006-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121381" target="_blank">PMC7121381</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/11732990_13" target="_blank">10.1007/11732990_13</a></td>
<td>a5htfx76</td>
<td>0.534759</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a>, <a href="Topic_37.html#gr108zuo">Deng_2015</a></td>
<td></td>
</tr>
<tr>
<th id="38ba3jk2";>323</th>
<td>Leppek_2017</td>
<td>Functional 5′ UTR mRNA structures in eukaryotic translation regulation and how to find them</td>
<td>Leppek, Kathrin; Das, Rhiju; Barna, Maria</td>
<td>2017</td>
<td>2017-11-22</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5820134" target="_blank">PMC5820134</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29165424.0" target="_blank">29165424.0</a></td>
<td><a href="https://doi.org/10.1038/nrm.2017.103" target="_blank">10.1038/nrm.2017.103</a></td>
<td>38ba3jk2</td>
<td>0.534759</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_19.html#l92nlegt">Sarnowska_2007</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="1u10lpx2";>324</th>
<td>Hu_H_2016</td>
<td>A general strategy to inhibiting viral −1 frameshifting based on upstream attenuation duplex formation</td>
<td>Hu, Hao-Teng; Cho, Che-Pei; Lin, Ya-Hui; Chang, Kung-Yao</td>
<td>2016</td>
<td>2016-01-08</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4705660" target="_blank">PMC4705660</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26612863.0" target="_blank">26612863.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv1307" target="_blank">10.1093/nar/gkv1307</a></td>
<td>1u10lpx2</td>
<td>0.533725</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#7ots8npg">Su_M_2005</a>, <a href="Topic_19.html#ywkxxye5">Fajardo_2012</a></td>
</tr>
<tr>
<th id="diwm1940";>325</th>
<td>Le_S_1992</td>
<td>Conserved tertiary structure elements in the 5′ untranslated region of human enteroviruses and rhinoviruses</td>
<td>Le, Shu-Yun; Chen, Jih-H.; Sonenberg, Nahum; Maizel, Jacob V.</td>
<td>1992</td>
<td>1992-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131026" target="_blank">PMC7131026</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1333125.0" target="_blank">1333125.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90261-m" target="_blank">10.1016/0042-6822(92)90261-m</a></td>
<td>diwm1940</td>
<td>0.533281</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td></td>
</tr>
<tr>
<th id="bago6g6k";>326</th>
<td>Zoltick_1989</td>
<td>A general method for the induction and screening of antisera for cDNA-encoded polypeptides: antibodies specific for a coronavirus putative polymerase-encoding gene</td>
<td>Zoltick, Philip W.; Leibowitz, Julian L.; DeVries, James R.; Weinstock, George M.; Weiss, Susan R.</td>
<td>1989</td>
<td>1989-12-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127337" target="_blank">PMC7127337</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2560756.0" target="_blank">2560756.0</a></td>
<td><a href="https://doi.org/10.1016/0378-1119(89)90434-4" target="_blank">10.1016/0378-1119(89)90434-4</a></td>
<td>bago6g6k</td>
<td>0.533268</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_23.html#v7x01y87">Zhang_2010</a></td>
</tr>
<tr>
<th id="urmhw450";>327</th>
<td>Fütterer_1996</td>
<td>Translation in plants-rules and exceptions</td>
<td>Fütterer, Johannes; Hohn, Thomas</td>
<td>1996</td>
<td>1996-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089402" target="_blank">PMC7089402</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8980479.0" target="_blank">8980479.0</a></td>
<td><a href="https://doi.org/10.1007/bf00039382" target="_blank">10.1007/bf00039382</a></td>
<td>urmhw450</td>
<td>0.530825</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a></td>
<td><a href="Topic_12.html#zz4w4jp3">de_Breyne_2018</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="x2w73spd";>328</th>
<td>Goldberg_1991</td>
<td>Structure of the glycoprotein gene of sonchus yellow net virus, a plant rhabdovirus</td>
<td>Goldberg, Karen-Beth; Modrell, Brett; Hillman, Bradley I.; Heaton, Louis A.; Choi, Tae-Jin; Jackson, A.O.</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130609" target="_blank">PMC7130609</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1926779.0" target="_blank">1926779.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90750-6" target="_blank">10.1016/0042-6822(91)90750-6</a></td>
<td>x2w73spd</td>
<td>0.530374</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5rovh1xf">Godeny_1990</a></td>
</tr>
<tr>
<th id="5hkd80eh";>329</th>
<td>Oberbeckmann_2020</td>
<td>Ruler elements in chromatin remodelers set nucleosome array spacing and phasing</td>
<td>Elisa Oberbeckmann; Vanessa Niebauer; Shinya Watanabe; Lucas Farnung; Manuela Moldt; Andrea Schmid; Patrick Cramer; Craig L. Peterson; Sebastian Eustermann; Karl-Peter Hopfner; Philipp Korber</td>
<td>2020</td>
<td>2020-02-29</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.02.28.969618" target="_blank">10.1101/2020.02.28.969618</a></td>
<td>5hkd80eh</td>
<td>0.529985</td>
<td><a href="Topic_10.html#ct2zhauz">Sundaramoorthy_2018</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_10.html#8as0ugi5">UNKNOWN_1992</a></td>
<td><a href="Topic_10.html#ct2zhauz">Sundaramoorthy_2018</a>, <a href="Topic_35.html#jvbcau6m">Jia_Z_2020</a>, <a href="Topic_19.html#l92nlegt">Sarnowska_2007</a></td>
</tr>
<tr>
<th id="2t09zqqi";>330</th>
<td>Miras_2017</td>
<td>Non-canonical Translation in Plant RNA Viruses</td>
<td>Miras, Manuel; Miller, W. Allen; Truniger, Verónica; Aranda, Miguel A.</td>
<td>2017</td>
<td>2017-04-06</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382211" target="_blank">PMC5382211</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28428795.0" target="_blank">28428795.0</a></td>
<td><a href="https://doi.org/10.3389/fpls.2017.00494" target="_blank">10.3389/fpls.2017.00494</a></td>
<td>2t09zqqi</td>
<td>0.529903</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#o5jo69um">Firth_2012</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="gqvwiy5h";>331</th>
<td>Modrow_2013</td>
<td>Viruses with Single-Stranded, Positive-Sense RNA Genomes</td>
<td>Modrow, Susanne; Falke, Dietrich; Truyen, Uwe; Schätzl, Hermann</td>
<td>2013</td>
<td>2013-08-12</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169642" target="_blank">PMC7169642</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-3-642-20718-1_14" target="_blank">10.1007/978-3-642-20718-1_14</a></td>
<td>gqvwiy5h</td>
<td>0.529408</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td></td>
</tr>
<tr>
<th id="tu6g977q";>332</th>
<td>Cheung_2013</td>
<td>A divergent clade of circular single-stranded DNA viruses from pig feces</td>
<td>Cheung, Andrew K.; Ng, Terry F.; Lager, Kelly M.; Bayles, Darrell O.; Alt, David P.; Delwart, Eric L.; Pogranichniy, Roman M.; Kehrli, Marcus E.</td>
<td>2013</td>
<td>2013-04-24</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4175981" target="_blank">PMC4175981</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23612924.0" target="_blank">23612924.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-013-1701-z" target="_blank">10.1007/s00705-013-1701-z</a></td>
<td>tu6g977q</td>
<td>0.529407</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_37.html#i34vmfpp">Lima_2015</a></td>
</tr>
<tr>
<th id="4wfhuvww";>333</th>
<td>Ketteler_2012</td>
<td>On programmed ribosomal frameshifting: the alternative proteomes</td>
<td>Ketteler, Robin</td>
<td>2012</td>
<td>2012-11-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3500957" target="_blank">PMC3500957</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23181069.0" target="_blank">23181069.0</a></td>
<td><a href="https://doi.org/10.3389/fgene.2012.00242" target="_blank">10.3389/fgene.2012.00242</a></td>
<td>4wfhuvww</td>
<td>0.529404</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#zwl0safn">Plant_2013</a>, <a href="Topic_19.html#2fcl6f4i">Price_2019</a></td>
<td><a href="Topic_19.html#58cat4xj">Caliskan_2015</a>, <a href="Topic_19.html#69gftii4">Cobucci-Ponzano_2006</a>, <a href="Topic_19.html#ly55753z">Brierley_2009</a></td>
</tr>
<tr>
<th id="1m8uazo3";>334</th>
<td>Jani_2012</td>
<td>In vitro Transcription and Capping of Gaussia Luciferase mRNA Followed by HeLa Cell Transfection</td>
<td>Jani, Bhairavi; Fuchs, Ryan</td>
<td>2012</td>
<td>2012-03-26</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3460589" target="_blank">PMC3460589</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22473375.0" target="_blank">22473375.0</a></td>
<td><a href="https://doi.org/10.3791/3702" target="_blank">10.3791/3702</a></td>
<td>1m8uazo3</td>
<td>0.528780</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a></td>
<td><a href="Topic_19.html#fma25t1n">Baker_1990</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="m44fic4g";>335</th>
<td>Horie_2016</td>
<td>An RNA-dependent RNA polymerase gene in bat genomes derived from an ancient negative-strand RNA virus</td>
<td>Horie, Masayuki; Kobayashi, Yuki; Honda, Tomoyuki; Fujino, Kan; Akasaka, Takumi; Kohl, Claudia; Wibbelt, Gudrun; Mühldorfer, Kristin; Kurth, Andreas; Müller, Marcel A.; Corman, Victor M.; Gillich, Nadine; Suzuki, Yoshiyuki; Schwemmle, Martin; Tomonaga, Keizo</td>
<td>2016</td>
<td>2016-05-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4865735" target="_blank">PMC4865735</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27174689.0" target="_blank">27174689.0</a></td>
<td><a href="https://doi.org/10.1038/srep25873" target="_blank">10.1038/srep25873</a></td>
<td>m44fic4g</td>
<td>0.528746</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="41h90h05";>336</th>
<td>Irigoyen_2018</td>
<td>Ribosome profiling of the retrovirus murine leukemia virus</td>
<td>Irigoyen, Nerea; Dinan, Adam M.; Brierley, Ian; Firth, Andrew E.</td>
<td>2018</td>
<td>2018-01-22</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5778647" target="_blank">PMC5778647</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29357872.0" target="_blank">29357872.0</a></td>
<td><a href="https://doi.org/10.1186/s12977-018-0394-5" target="_blank">10.1186/s12977-018-0394-5</a></td>
<td>41h90h05</td>
<td>0.528313</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ndjbrtrv";>337</th>
<td>Satyanarayana_2003</td>
<td>Frameshift mutations in infectious cDNA clones of Citrus tristeza virus: a strategy to minimize the toxicity of viral sequences to Escherichia coli</td>
<td>Satyanarayana, Tatineni; Gowda, Siddarame; Ayllón, María A; Dawson, William O</td>
<td>2003</td>
<td>2003-09-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125997" target="_blank">PMC7125997</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12954215.0" target="_blank">12954215.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(03)00387-8" target="_blank">10.1016/s0042-6822(03)00387-8</a></td>
<td>ndjbrtrv</td>
<td>0.527672</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="xo4mbxei";>338</th>
<td>Knorr_1991</td>
<td>De novo generation of defective interfering RNAs of tomato bushy stunt virus by high multiplicity passage</td>
<td>Knorr, D.A.; Mullin, R.H.; Hearne, P.Q.; Morris, T.J.</td>
<td>1991</td>
<td>1991-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131041" target="_blank">PMC7131041</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1994574.0" target="_blank">1994574.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90484-s" target="_blank">10.1016/0042-6822(91)90484-s</a></td>
<td>xo4mbxei</td>
<td>0.526357</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#jbp8bxjz">Derdeyn_1995</a></td>
</tr>
<tr>
<th id="ayfus6az";>339</th>
<td>May_J_2020</td>
<td>The Multifunctional Long-Distance Movement Protein of Pea Enation Mosaic Virus 2 Protects Viral and Host Transcripts from Nonsense-Mediated Decay</td>
<td>May, Jared P.; Johnson, Philip Z.; Ilyas, Muhammad; Gao, Feng; Simon, Anne E.</td>
<td>2020</td>
<td>2020-03-10</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7064760" target="_blank">PMC7064760</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/32156817.0" target="_blank">32156817.0</a></td>
<td><a href="https://doi.org/10.1128/mbio.00204-20" target="_blank">10.1128/mbio.00204-20</a></td>
<td>ayfus6az</td>
<td>0.525598</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="jvr1t6t2";>340</th>
<td>Sivanandam_2016</td>
<td>Functional analysis of the N-terminal basic motif of a eukaryotic satellite RNA virus capsid protein in replication and packaging</td>
<td>Sivanandam, Venkatesh; Mathews, Deborah; Garmann, Rees; Erdemci-Tandogan, Gonca; Zandi, Roya; Rao, A. L. N.</td>
<td>2016</td>
<td>2016-05-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4872054" target="_blank">PMC4872054</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27193742.0" target="_blank">27193742.0</a></td>
<td><a href="https://doi.org/10.1038/srep26328" target="_blank">10.1038/srep26328</a></td>
<td>jvr1t6t2</td>
<td>0.525598</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="b0pa47x2";>341</th>
<td>Kolondam_2015</td>
<td>Co-infection with two strains of Brome mosaic bromovirus reveals common RNA recombination sites in different hosts</td>
<td>Kolondam, Beivy; Rao, Parth; Sztuba-Solinska, Joanna; Weber, Philipp H.; Dzianott, Aleksandra; Johns, Mitrick A.; Bujarski, Jozef J.</td>
<td>2015</td>
<td>2015-12-23</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014487" target="_blank">PMC5014487</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27774290.0" target="_blank">27774290.0</a></td>
<td><a href="https://doi.org/10.1093/ve/vev021" target="_blank">10.1093/ve/vev021</a></td>
<td>b0pa47x2</td>
<td>0.524836</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#06qfbvlr">Li_Z_2009</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_09.html#77lqxgmh">Wu_H_2004</a></td>
</tr>
<tr>
<th id="wouunr5s";>342</th>
<td>Taufer_2008</td>
<td>RNAVLab: A virtual laboratory for studying RNA secondary structures based on grid computing technology</td>
<td>Taufer, Michela; Leung, Ming-Ying; Solorio, Thamar; Licon, Abel; Mireles, David; Araiza, Roberto; Johnson, Kyle L.</td>
<td>2008</td>
<td>2008-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.parco.2008.08.002" target="_blank">10.1016/j.parco.2008.08.002</a></td>
<td>wouunr5s</td>
<td>0.523045</td>
<td><a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a>, <a href="Topic_10.html#0oq2n0af">Liu_Z_2008</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a></td>
<td></td>
</tr>
<tr>
<th id="gzxtjf0a";>343</th>
<td>Liu_Z_2016</td>
<td>Viral RNA switch mediates the dynamic control of flavivirus replicase recruitment by genome cyclization</td>
<td>Liu, Zhong-Yu; Li, Xiao-Feng; Jiang, Tao; Deng, Yong-Qiang; Ye, Qing; Zhao, Hui; Yu, Jiu-Yang; Qin, Cheng-Feng</td>
<td>2016</td>
<td>2016-10-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5101012" target="_blank">PMC5101012</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27692070.0" target="_blank">27692070.0</a></td>
<td><a href="https://doi.org/10.7554/elife.17636" target="_blank">10.7554/elife.17636</a></td>
<td>gzxtjf0a</td>
<td>0.522637</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
</tr>
<tr>
<th id="pvt0amth";>344</th>
<td>Poole_2000</td>
<td>Methyl-RNA: an evolutionary bridge between RNA and DNA?</td>
<td>Poole, Anthony; Penny, David; Sjöberg, Britt-Marie</td>
<td>2000</td>
<td>2000-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11137821.0" target="_blank">11137821.0</a></td>
<td><a href="https://doi.org/10.1016/s1074-5521(00)00042-9" target="_blank">10.1016/s1074-5521(00)00042-9</a></td>
<td>pvt0amth</td>
<td>0.522579</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td></td>
</tr>
<tr>
<th id="y1vr1db0";>345</th>
<td>Kozak_1994</td>
<td>Determinants of translational fidelity and efficiency in vertebrate mRNAs</td>
<td>Kozak, M.</td>
<td>1994</td>
<td>1994-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7880897.0" target="_blank">7880897.0</a></td>
<td><a href="https://doi.org/10.1016/0300-9084(94)90182-1" target="_blank">10.1016/0300-9084(94)90182-1</a></td>
<td>y1vr1db0</td>
<td>0.522316</td>
<td><a href="Topic_01.html#qo74f00i">Valle_1988</a>, <a href="Topic_12.html#4eufvh88">Shulla_2016</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#il9mz5na">Rodnina_2020</a></td>
<td><a href="Topic_01.html#qo74f00i">Valle_1988</a>, <a href="Topic_19.html#siscssho">Oh_S_1993</a>, <a href="Topic_35.html#nrwus3m6">Whitelaw_2004</a>, <a href="Topic_19.html#j3q4k5ol">Trifonov_1992</a></td>
</tr>
<tr>
<th id="e993uavn";>346</th>
<td>Selisko_2018</td>
<td>Structural and Functional Basis of the Fidelity of Nucleotide Selection by Flavivirus RNA-Dependent RNA Polymerases</td>
<td>Selisko, Barbara; Papageorgiou, Nicolas; Ferron, François; Canard, Bruno</td>
<td>2018</td>
<td>2018-01-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850366" target="_blank">PMC5850366</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29385764.0" target="_blank">29385764.0</a></td>
<td><a href="https://doi.org/10.3390/v10020059" target="_blank">10.3390/v10020059</a></td>
<td>e993uavn</td>
<td>0.521892</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#yo9libo0">Zhou_2011</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="ihinqmig";>347</th>
<td>Yang_2015</td>
<td>The structure and functions of coronavirus genomic 3′ and 5′ ends</td>
<td>Yang, Dong; Leibowitz, Julian L.</td>
<td>2015</td>
<td>2015-08-03</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4476908" target="_blank">PMC4476908</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25736566.0" target="_blank">25736566.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2015.02.025" target="_blank">10.1016/j.virusres.2015.02.025</a></td>
<td>ihinqmig</td>
<td>0.521235</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a></td>
</tr>
<tr>
<th id="0if5z3xp";>348</th>
<td>Wang_2014</td>
<td>Switch from Cap- to Factorless IRES-Dependent 0 and +1 Frame Translation during Cellular Stress and Dicistrovirus Infection</td>
<td>Wang, Qing S.; Jan, Eric</td>
<td>2014</td>
<td>2014-08-04</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4121135" target="_blank">PMC4121135</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25089704.0" target="_blank">25089704.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0103601" target="_blank">10.1371/journal.pone.0103601</a></td>
<td>0if5z3xp</td>
<td>0.519827</td>
<td><a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="3jijeemg";>349</th>
<td>Nicholson_2014</td>
<td>Functional long-range RNA–RNA interactions in positive-strand RNA viruses</td>
<td>Nicholson, Beth L.; White, K. Andrew</td>
<td>2014</td>
<td>2014-06-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097572" target="_blank">PMC7097572</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24931042.0" target="_blank">24931042.0</a></td>
<td><a href="https://doi.org/10.1038/nrmicro3288" target="_blank">10.1038/nrmicro3288</a></td>
<td>3jijeemg</td>
<td>0.519231</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_12.html#f32rcce3">Diaz_2012</a>, <a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="jxhtdhgg";>350</th>
<td>Payne_2017</td>
<td>Chapter 10 Introduction to RNA Viruses</td>
<td>Payne, Susan</td>
<td>2017</td>
<td>2017-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-803109-4.00010-6" target="_blank">10.1016/b978-0-12-803109-4.00010-6</a></td>
<td>jxhtdhgg</td>
<td>0.518059</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td></td>
</tr>
<tr>
<th id="ne7rvqex";>351</th>
<td>Chang_2012</td>
<td>Revealing −1 Programmed Ribosomal Frameshifting Mechanisms by Single-Molecule Techniques and Computational Methods</td>
<td>Chang, Kai-Chun</td>
<td>2012</td>
<td>2012-04-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3321566" target="_blank">PMC3321566</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22545064.0" target="_blank">22545064.0</a></td>
<td><a href="https://doi.org/10.1155/2012/569870" target="_blank">10.1155/2012/569870</a></td>
<td>ne7rvqex</td>
<td>0.517116</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#oa24b5to">Zúñiga_2009</a></td>
<td><a href="Topic_19.html#nr2xmcs0">Zhong_2016</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="kv3otavl";>352</th>
<td>Reynolds_2015</td>
<td>Melting of duplex DNA in the absence of ATP by NS3 helicase domain through specific interaction with a single-strand/double-strand junction</td>
<td>Reynolds, Kimberly A.; Cameron, Craig E.; Raney, Kevin D.</td>
<td>2015</td>
<td>2015-07-02</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5111830" target="_blank">PMC5111830</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26091150.0" target="_blank">26091150.0</a></td>
<td><a href="https://doi.org/10.1021/acs.biochem.5b00214" target="_blank">10.1021/acs.biochem.5b00214</a></td>
<td>kv3otavl</td>
<td>0.514614</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#1k99yv4i">Lee_N_2010</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#3mtfvvfb">Vasquez-Del_Carpio_2006</a></td>
</tr>
<tr>
<th id="bww62vx8";>353</th>
<td>Gopinath_2015</td>
<td>Evidence for N(7) guanine methyl transferase activity encoded within the modular domain of RNA-dependent RNA polymerase L of a Morbillivirus</td>
<td>Gopinath, M.; Shaila, M. S.</td>
<td>2015</td>
<td>2015-10-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088885" target="_blank">PMC7088885</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26446666.0" target="_blank">26446666.0</a></td>
<td><a href="https://doi.org/10.1007/s11262-015-1252-3" target="_blank">10.1007/s11262-015-1252-3</a></td>
<td>bww62vx8</td>
<td>0.514289</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#0u62j7nj">Okamoto_2008</a></td>
</tr>
<tr>
<th id="bddiy1ea";>354</th>
<td>Flanagan_2010</td>
<td>Direct Observation of Distinct A/P Hybrid-State tRNAs in Translocating Ribosomes</td>
<td>Flanagan, John F.; Namy, Olivier; Brierley, Ian; Gilbert, Robert J.C.</td>
<td>2010</td>
<td>2010-02-10</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4340587" target="_blank">PMC4340587</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20159470.0" target="_blank">20159470.0</a></td>
<td><a href="https://doi.org/10.1016/j.str.2009.12.007" target="_blank">10.1016/j.str.2009.12.007</a></td>
<td>bddiy1ea</td>
<td>0.512293</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="pxf8piqm";>355</th>
<td>Saberi_2018</td>
<td>A planarian nidovirus expands the limits of RNA genome size</td>
<td>Saberi, Amir; Gulyaeva, Anastasia A.; Brubacher, John L.; Newmark, Phillip A.; Gorbalenya, Alexander E.</td>
<td>2018</td>
<td>2018-11-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6211748" target="_blank">PMC6211748</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30383829.0" target="_blank">30383829.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1007314" target="_blank">10.1371/journal.ppat.1007314</a></td>
<td>pxf8piqm</td>
<td>0.512119</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#gwgflckq">Saberi_2018</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_19.html#d6vud7xg">Ogando_2019</a></td>
</tr>
<tr>
<th id="g4rohhtt";>356</th>
<td>Bautista_2002</td>
<td>Functional Properties of the Predicted Helicase of Porcine Reproductive and Respiratory Syndrome Virus</td>
<td>Bautista, Elida M.; Faaberg, Kay S.; Mickelson, Dan; McGruder, Edward D.</td>
<td>2002</td>
<td>2002-07-05</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12127789.0" target="_blank">12127789.0</a></td>
<td><a href="https://doi.org/10.1006/viro.2002.1495" target="_blank">10.1006/viro.2002.1495</a></td>
<td>g4rohhtt</td>
<td>0.511246</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td></td>
</tr>
<tr>
<th id="tqeo15ar";>357</th>
<td>Banner_1990</td>
<td>A clustering of rna recombination sites adjacent to a hypervariable region of the peplomer gene of murine coronavirus</td>
<td>Banner, Lisa R.; Keck, James G.; Lai, Michael M.C.</td>
<td>1990</td>
<td>1990-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130556" target="_blank">PMC7130556</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2158184.0" target="_blank">2158184.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(90)90439-x" target="_blank">10.1016/0042-6822(90)90439-x</a></td>
<td>tqeo15ar</td>
<td>0.510787</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="y6mp3rk9";>358</th>
<td>Freistadt_2007</td>
<td>Conserved aspartic acid 233 and alanine 231 are not required for poliovirus polymerase function in replicons</td>
<td>Freistadt, Marion S; Eberle, Karen E</td>
<td>2007</td>
<td>2007-03-12</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1839082" target="_blank">PMC1839082</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17352827.0" target="_blank">17352827.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-4-28" target="_blank">10.1186/1743-422x-4-28</a></td>
<td>y6mp3rk9</td>
<td>0.509773</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_55.html#hiy7f4wh">Someya_2008</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="wi2hhsmh";>359</th>
<td>Hiscox_1995</td>
<td>Quantification of individual subgenomic mRNA species during replication of the coronavirus transmissible gastroenteritis virus</td>
<td>Hiscox, Julian A.; Cavanagh, David; Britton, Paul</td>
<td>1995</td>
<td>1995-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134076" target="_blank">PMC7134076</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7653093.0" target="_blank">7653093.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(94)00108-o" target="_blank">10.1016/0168-1702(94)00108-o</a></td>
<td>wi2hhsmh</td>
<td>0.509112</td>
<td><a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#85zntq7i">An_S_1998</a></td>
<td><a href="Topic_19.html#il9vbbgk">DEN_BOON_1995</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ywkxxye5";>360</th>
<td>Fajardo_2012</td>
<td>Exploring IRES Region Accessibility by Interference of Foot-and-Mouth Disease Virus Infectivity</td>
<td>Fajardo, Teodoro; Rosas, Maria Flora; Sobrino, Francisco; Martinez-Salas, Encarnacion</td>
<td>2012</td>
<td>2012-07-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3399821" target="_blank">PMC3399821</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22815996.0" target="_blank">22815996.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0041382" target="_blank">10.1371/journal.pone.0041382</a></td>
<td>ywkxxye5</td>
<td>0.509000</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="o5jo69um";>361</th>
<td>Firth_2012</td>
<td>Non-canonical translation in RNA viruses</td>
<td>Firth, Andrew E.; Brierley, Ian</td>
<td>2012</td>
<td>2012-07-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3542737" target="_blank">PMC3542737</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22535777.0" target="_blank">22535777.0</a></td>
<td><a href="https://doi.org/10.1099/vir.0.042499-0" target="_blank">10.1099/vir.0.042499-0</a></td>
<td>o5jo69um</td>
<td>0.508958</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="1oqxmzze";>362</th>
<td>Hyde_2015</td>
<td>The 5′ and 3′ ends of alphavirus RNAs – Non-coding is not non-functional</td>
<td>Hyde, Jennifer L.; Chen, Rubing; Trobaugh, Derek W.; Diamond, Michael S.; Weaver, Scott C.; Klimstra, William B.; Wilusz, Jeffrey</td>
<td>2015</td>
<td>2015-08-03</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654126" target="_blank">PMC4654126</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25630058.0" target="_blank">25630058.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2015.01.016" target="_blank">10.1016/j.virusres.2015.01.016</a></td>
<td>1oqxmzze</td>
<td>0.508524</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a></td>
</tr>
<tr>
<th id="yilv9z2m";>363</th>
<td>UNKNOWN_2012</td>
<td>Family Coronaviridae</td>
<td>None</td>
<td>2012</td>
<td>2012-12-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149967" target="_blank">PMC7149967</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-384684-6.00068-9" target="_blank">10.1016/b978-0-12-384684-6.00068-9</a></td>
<td>yilv9z2m</td>
<td>0.508257</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#gqvwiy5h">Modrow_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_55.html#xocmve3x">Mielech_2014</a>, <a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a></td>
</tr>
<tr>
<th id="y3hgnb6u";>364</th>
<td>Kapke_1986</td>
<td>Sequence analysis of the porcine transmissible gastroenteritis coronavirus nucleocapsid protein gene</td>
<td>Kapke, Paul A.; Brian, David A.</td>
<td>1986</td>
<td>1986-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131278" target="_blank">PMC7131278</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3008432.0" target="_blank">3008432.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(86)90102-9" target="_blank">10.1016/0042-6822(86)90102-9</a></td>
<td>y3hgnb6u</td>
<td>0.508007</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#vvnhktca">Toshio_1989</a></td>
<td><a href="Topic_62.html#mj9ea464">Lapps_1987</a>, <a href="Topic_62.html#yaw92db7">O'Connor_1999</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="t6f3jiri";>365</th>
<td>Plagemann_1992</td>
<td>Lactate Dehydrogenase-Elevating Virus, Equine Arteritis Virus, and Simian Hemorrhagic Fever Virus: A New Group of Positive-Strand RNA Viruses</td>
<td>Plagemann, Peter G.W.; Moennig, Volker</td>
<td>1992</td>
<td>1992-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1315480.0" target="_blank">1315480.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60036-6" target="_blank">10.1016/s0065-3527(08)60036-6</a></td>
<td>t6f3jiri</td>
<td>0.507239</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a></td>
</tr>
<tr>
<th id="fhvstenq";>366</th>
<td>Perlman_1986</td>
<td>MHV nucleocapsid synthesis in the presence of cycloheximide and accumulation of negative strand MHV RNA</td>
<td>Perlman, Stanley; Ries, Dana; Bolger, Eric; Lung-Ji, Chang; Stoltzfus, C.Martin</td>
<td>1986</td>
<td>1986-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133998" target="_blank">PMC7133998</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3033933.0" target="_blank">3033933.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(86)90074-2" target="_blank">10.1016/0168-1702(86)90074-2</a></td>
<td>fhvstenq</td>
<td>0.506689</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_12.html#pmdera3v">Masaki_2015</a>, <a href="Topic_12.html#h2asxv4j">Liu_H_2009</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="i738t9lf";>367</th>
<td>Xu_J_2016</td>
<td>Genome Organization of the SARS-CoV</td>
<td>Xu, Jing; Hu, Jianfei; Wang, Jing; Han, Yujun; Hu, Yongwu; Wen, Jie; Li, Yan; Ji, Jia; Ye, Jia; Zhang, Zizhang; Wei, Wei; Li, Songgang; Wang, Jun; Wang, Jian; Yu, Jun; Yang, Huanming</td>
<td>2016</td>
<td>2016-11-28</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5172239" target="_blank">PMC5172239</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15629035.0" target="_blank">15629035.0</a></td>
<td><a href="https://doi.org/10.1016/s1672-0229(03)01028-3" target="_blank">10.1016/s1672-0229(03)01028-3</a></td>
<td>i738t9lf</td>
<td>0.505624</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a>, <a href="Topic_12.html#itsr18vb">Kumar_2007</a></td>
</tr>
<tr>
<th id="65hqvwg9";>368</th>
<td>Samuel_1989</td>
<td>Polycistronic Animal Virus mRNAs</td>
<td>Samuel, Charles E.</td>
<td>1989</td>
<td>1989-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2505328.0" target="_blank">2505328.0</a></td>
<td><a href="https://doi.org/10.1016/s0079-6603(08)60697-2" target="_blank">10.1016/s0079-6603(08)60697-2</a></td>
<td>65hqvwg9</td>
<td>0.504841</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="ov92qh6h";>369</th>
<td>Nowak_1984</td>
<td>Physical mapping of human cytomegalovirus genes: Identification of DNA sequences coding for a virion phosphoprotein of 71 kDa and a viral 65-kDa polypeptide</td>
<td>Nowak, Barbara; Gmeiner, Agnes; Sarnow, Peter; Levine, Arnold J.; Fleckenstein, Bernhard</td>
<td>1984</td>
<td>1984-04-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131772" target="_blank">PMC7131772</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6324477.0" target="_blank">6324477.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(84)90275-7" target="_blank">10.1016/0042-6822(84)90275-7</a></td>
<td>ov92qh6h</td>
<td>0.504526</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td></td>
</tr>
<tr>
<th id="6o70ybpf";>370</th>
<td>Woodman_2016</td>
<td>Biochemical and genetic analysis of the role of the viral polymerase in enterovirus recombination</td>
<td>Woodman, Andrew; Arnold, Jamie J.; Cameron, Craig E.; Evans, David J.</td>
<td>2016</td>
<td>2016-08-19</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5001610" target="_blank">PMC5001610</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27317698.0" target="_blank">27317698.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkw567" target="_blank">10.1093/nar/gkw567</a></td>
<td>6o70ybpf</td>
<td>0.504185</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="pzbhq26m";>371</th>
<td>Widjaja_2012</td>
<td>Competition between Influenza A Virus Genome Segments</td>
<td>Widjaja, Ivy; de Vries, Erik; Rottier, Peter J. M.; de Haan, Cornelis A. M.</td>
<td>2012</td>
<td>2012-10-11</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3469491" target="_blank">PMC3469491</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23071819.0" target="_blank">23071819.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0047529" target="_blank">10.1371/journal.pone.0047529</a></td>
<td>pzbhq26m</td>
<td>0.503255</td>
<td><a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_35.html#dkn3z77f">Brake_2008</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="j3q4k5ol";>372</th>
<td>Trifonov_1992</td>
<td>Recognition of correct reading frame by the ribosome</td>
<td>Trifonov, E.N.</td>
<td>1992</td>
<td>1992-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131330" target="_blank">PMC7131330</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1637861.0" target="_blank">1637861.0</a></td>
<td><a href="https://doi.org/10.1016/0300-9084(92)90113-s" target="_blank">10.1016/0300-9084(92)90113-s</a></td>
<td>j3q4k5ol</td>
<td>0.501661</td>
<td><a href="Topic_01.html#qo74f00i">Valle_1988</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#y1vr1db0">Kozak_1994</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td><a href="Topic_19.html#siscssho">Oh_S_1993</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#kzshcrwx">Caliskan_2014</a></td>
</tr>
<tr>
<th id="nwm6hmvv";>373</th>
<td>Edgil_2006</td>
<td>End-to-end communication in the modulation of translation by mammalian RNA viruses</td>
<td>Edgil, Dianna; Harris, Eva</td>
<td>2006</td>
<td>2006-07-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16307817.0" target="_blank">16307817.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2005.10.012" target="_blank">10.1016/j.virusres.2005.10.012</a></td>
<td>nwm6hmvv</td>
<td>0.500973</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td></td>
</tr>
<tr>
<th id="g410mavp";>374</th>
<td>Sztuba-Solińska_2011</td>
<td>Subgenomic messenger RNAs: Mastering regulation of (+)-strand RNA virus life cycle</td>
<td>Sztuba-Solińska, Joanna; Stollar, Victor; Bujarski, Jozef J.</td>
<td>2011</td>
<td>2011-04-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111999" target="_blank">PMC7111999</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21377709.0" target="_blank">21377709.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2011.02.007" target="_blank">10.1016/j.virol.2011.02.007</a></td>
<td>g410mavp</td>
<td>0.500672</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="bcmli6gj";>375</th>
<td>Wilson_1988</td>
<td>Crossover regions in foot-and-mouth disease virus (FMDV) recombinants correspond to regions of high local secondary structure</td>
<td>Wilson, Valerie; Taylor, P.; Desselberger, U.</td>
<td>1988</td>
<td>1988-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086634" target="_blank">PMC7086634</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2848475.0" target="_blank">2848475.0</a></td>
<td><a href="https://doi.org/10.1007/bf01315570" target="_blank">10.1007/bf01315570</a></td>
<td>bcmli6gj</td>
<td>0.500656</td>
<td><a href="Topic_64.html#vs12l0uv">Choudhury_2011</a>, <a href="Topic_64.html#7my2q928">Largo_2016</a>, <a href="Topic_54.html#xdihvg6k">David_2013</a>, <a href="Topic_25.html#tgyxiwuo">Abou-Hamdan_2018</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_14.html#ecvpmuz3">Brun_2014</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="o43cfrfh";>376</th>
<td>Liu_X_2015</td>
<td>Nucleobase but not Sugar Fidelity is Maintained in the Sabin I RNA-Dependent RNA Polymerase</td>
<td>Liu, Xinran; Musser, Derek M.; Lee, Cheri A.; Yang, Xiaorong; Arnold, Jamie J.; Cameron, Craig E.; Boehr, David D.</td>
<td>2015</td>
<td>2015-10-26</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4632402" target="_blank">PMC4632402</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26516899.0" target="_blank">26516899.0</a></td>
<td><a href="https://doi.org/10.3390/v7102894" target="_blank">10.3390/v7102894</a></td>
<td>o43cfrfh</td>
<td>0.500613</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td></td>
</tr>
<tr>
<th id="v425xitn";>377</th>
<td>Jiang_2014</td>
<td>Orsay virus utilizes ribosomal frameshifting to express a novel protein that is incorporated into virions()</td>
<td>Jiang, Hongbing; Franz, Carl J.; Wu, Guang; Renshaw, Hilary; Zhao, Guoyan; Firth, Andrew E.; Wang, David</td>
<td>2014</td>
<td>2014-02-23</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969245" target="_blank">PMC3969245</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24503084.0" target="_blank">24503084.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2013.12.016" target="_blank">10.1016/j.virol.2013.12.016</a></td>
<td>v425xitn</td>
<td>0.500600</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="1fdpvswz";>378</th>
<td>Green_2008</td>
<td>Characterization of the Mechanical Unfolding of RNA Pseudoknots</td>
<td>Green, Lisa; Kim, Chul-Hyun; Bustamante, Carlos; Tinoco, Ignacio</td>
<td>2008</td>
<td>2008-01-11</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7094456" target="_blank">PMC7094456</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18021801.0" target="_blank">18021801.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2007.05.058" target="_blank">10.1016/j.jmb.2007.05.058</a></td>
<td>1fdpvswz</td>
<td>0.500427</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a></td>
<td><a href="Topic_19.html#nr2xmcs0">Zhong_2016</a></td>
</tr>
<tr>
<th id="sneqefec";>379</th>
<td>Cavanagh_2008</td>
<td>Coronaviruses: General Features</td>
<td>Cavanagh, D.; Britton, P.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149783" target="_blank">PMC7149783</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00370-8" target="_blank">10.1016/b978-012374410-4.00370-8</a></td>
<td>sneqefec</td>
<td>0.500409</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a></td>
</tr>
<tr>
<th id="js9ek5me";>380</th>
<td>UNKNOWN_2012</td>
<td>Order Nidovirales</td>
<td>None</td>
<td>2012</td>
<td>2012-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150239" target="_blank">PMC7150239</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-384684-6.00066-5" target="_blank">10.1016/b978-0-12-384684-6.00066-5</a></td>
<td>js9ek5me</td>
<td>0.496807</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_37.html#i2ppvsh5">Dolja_2006</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#n46p8acw">Li_D_2019</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="k22fdsuk";>381</th>
<td>Liu_D_1991</td>
<td>A polycistronic mRNA specified by the coronavirus infectious bronchitis virus</td>
<td>Liu, D.X.; Cavanagh, D.; Green, P.; Inglis, S.C.</td>
<td>1991</td>
<td>1991-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131956" target="_blank">PMC7131956</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1653486.0" target="_blank">1653486.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90423-9" target="_blank">10.1016/0042-6822(91)90423-9</a></td>
<td>k22fdsuk</td>
<td>0.495851</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="j3u7yq3y";>382</th>
<td>Kieft_2019</td>
<td>Identification of a Novel Base J Binding Protein Complex Involved in RNA Polymerase II Transcription Termination in Trypanosomes</td>
<td>Rudo Kieft; Yang Zhang; Alexandre P. Marand; Jose Dagoberto Moran; Robert Bridger; Lance Wells; Robert J. Schmitz; Robert Sabatini</td>
<td>2019</td>
<td>2019-08-30</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/753004" target="_blank">10.1101/753004</a></td>
<td>j3u7yq3y</td>
<td>0.495557</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#rybce5bj">Abernathy_2015</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#h2xdkoyq">Kieft_2020</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="cljnoklc";>383</th>
<td>Britton_1989</td>
<td>Sequence of the coding regions from the 3.0 kb and 3.9 kb mRNA: Subgenomic species from a virulent isolate of transmissible gastroenteritis virus</td>
<td>Britton, P.; Otin, C. Lopez; Alonso, J. M. Martin; Parra, F.</td>
<td>1989</td>
<td>1989-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086989" target="_blank">PMC7086989</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2546515.0" target="_blank">2546515.0</a></td>
<td><a href="https://doi.org/10.1007/bf01311354" target="_blank">10.1007/bf01311354</a></td>
<td>cljnoklc</td>
<td>0.495121</td>
<td><a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_09.html#m8624fx4">Yin_J_2005</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_62.html#reotxckr">Tung_1992</a></td>
</tr>
<tr>
<th id="n7o7x9ta";>384</th>
<td>Cornish_2006</td>
<td>Pairwise coupling analysis of helical junction hydrogen bonding interactions in luteoviral RNA pseudoknots</td>
<td>Cornish, Peter V.; Giedroc, David P.</td>
<td>2006</td>
<td>2006-09-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2573051" target="_blank">PMC2573051</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16964977.0" target="_blank">16964977.0</a></td>
<td><a href="https://doi.org/10.1021/bi060430n" target="_blank">10.1021/bi060430n</a></td>
<td>n7o7x9ta</td>
<td>0.494313</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#3mtfvvfb">Vasquez-Del_Carpio_2006</a>, <a href="Topic_10.html#1ksfo0pr">Kanitz_2019</a>, <a href="Topic_55.html#plg5qx9m">Punekar_2012</a></td>
</tr>
<tr>
<th id="sex63uvb";>385</th>
<td>Abrahams_2017</td>
<td>Adenine Enrichment at the Fourth CDS Residue in Bacterial Genes Is Consistent with Error Proofing for +1 Frameshifts</td>
<td>Abrahams, Liam; Hurst, Laurence D</td>
<td>2017</td>
<td>2017-08-24</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850271" target="_blank">PMC5850271</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28961919.0" target="_blank">28961919.0</a></td>
<td><a href="https://doi.org/10.1093/molbev/msx223" target="_blank">10.1093/molbev/msx223</a></td>
<td>sex63uvb</td>
<td>0.493948</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_47.html#3mj670c2">Gu_W_2004</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#fwav40fv">Sekine_1992</a></td>
</tr>
<tr>
<th id="14nfqusv";>386</th>
<td>Molenkamp_1997</td>
<td>Identification of a Specific Interaction between the Coronavirus Mouse Hepatitis Virus A59 Nucleocapsid Protein and Packaging Signal</td>
<td>Molenkamp, Richard; Spaan, Willy J.M.</td>
<td>1997</td>
<td>1997-12-08</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130520" target="_blank">PMC7130520</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9426448.0" target="_blank">9426448.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1997.8867" target="_blank">10.1006/viro.1997.8867</a></td>
<td>14nfqusv</td>
<td>0.492954</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="zgqivufm";>387</th>
<td>Carter_1992</td>
<td>Identification and sequence determination of the capsid protein gene of feline calicivirus</td>
<td>Carter, M. J.; Milton, I. D.; Turner, P. C.; Meanger, J.; Bennett, M.; Gaskell, R. M.</td>
<td>1992</td>
<td>1992-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086951" target="_blank">PMC7086951</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1731695.0" target="_blank">1731695.0</a></td>
<td><a href="https://doi.org/10.1007/bf01317185" target="_blank">10.1007/bf01317185</a></td>
<td>zgqivufm</td>
<td>0.492951</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#vvnhktca">Toshio_1989</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="ftjnw3an";>388</th>
<td>Teoh_2009</td>
<td>Virus-Specific Read-Through Codon Preference Affects Infectivity of Chimeric Cucumber Green Mottle Mosaic Viruses Displaying a Dengue Virus Epitope</td>
<td>Teoh, Pak-Guan; Ooi, Aik-Seng; AbuBakar, Sazaly; Othman, Rofina Yasmin</td>
<td>2009</td>
<td>2009-03-22</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2659398" target="_blank">PMC2659398</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19325913.0" target="_blank">19325913.0</a></td>
<td><a href="https://doi.org/10.1155/2009/781712" target="_blank">10.1155/2009/781712</a></td>
<td>ftjnw3an</td>
<td>0.492386</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_09.html#77lqxgmh">Wu_H_2004</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a>, <a href="Topic_14.html#ecvpmuz3">Brun_2014</a></td>
</tr>
<tr>
<th id="v3sfww3e";>389</th>
<td>Lin_X_2015</td>
<td>Subgenomic promoter recognition by the norovirus RNA-dependent RNA polymerases</td>
<td>Lin, Xiaoyan; Thorne, Lucy; Jin, Zhinan; Hammad, Loubna A.; Li, Serena; Deval, Jerome; Goodfellow, Ian G.; Kao, C. Cheng</td>
<td>2015</td>
<td>2015-01-09</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4288183" target="_blank">PMC4288183</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25520198.0" target="_blank">25520198.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku1292" target="_blank">10.1093/nar/gku1292</a></td>
<td>v3sfww3e</td>
<td>0.491999</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="ft30zevv";>390</th>
<td>Conzelmann_1993</td>
<td>Molecular Characterization of Porcine Reproductive and Respiratory Syndrome Virus, a Member of the Arterivirus Group</td>
<td>Conzelmann, Karl-Klaus; Visser, Nico; Van Woensel, Peter; Thiel, Heinz-Jürgen</td>
<td>1993</td>
<td>1993-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131490" target="_blank">PMC7131490</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8438574.0" target="_blank">8438574.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1993.1129" target="_blank">10.1006/viro.1993.1129</a></td>
<td>ft30zevv</td>
<td>0.490682</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="mqvm9zn4";>391</th>
<td>Dinman_2004</td>
<td>Ribosomal frameshifting in yeast viruses</td>
<td>Dinman, Jonathan D.</td>
<td>2004</td>
<td>2004-01-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169727" target="_blank">PMC7169727</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8619310.0" target="_blank">8619310.0</a></td>
<td><a href="https://doi.org/10.1002/yea.320111202" target="_blank">10.1002/yea.320111202</a></td>
<td>mqvm9zn4</td>
<td>0.489736</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td></td>
</tr>
<tr>
<th id="hs37lb9t";>392</th>
<td>Walker_2008</td>
<td>Yellow Head Virus</td>
<td>Walker, P.J.; Sittidilokratna, N.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00779-2" target="_blank">10.1016/b978-012374410-4.00779-2</a></td>
<td>hs37lb9t</td>
<td>0.485268</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a></td>
<td></td>
</tr>
<tr>
<th id="7i14nsmg";>393</th>
<td>Raffo_1991</td>
<td>Construction of tobacco mosaic virus subgenomic replicons that are replicated and spread systemically in tobacco plants</td>
<td>Raffo, Anthony J.; Dawson, William O.</td>
<td>1991</td>
<td>1991-09-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1871972.0" target="_blank">1871972.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90844-2" target="_blank">10.1016/0042-6822(91)90844-2</a></td>
<td>7i14nsmg</td>
<td>0.484807</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="gwgflckq";>394</th>
<td>Saberi_2018</td>
<td>A planarian nidovirus expands the limits of RNA genome size</td>
<td>Amir Saberi; Anastasia A. Gulyaeva; John L. Brubacher; Phillip A. Newmark; Alexander E. Gorbalenya</td>
<td>2018</td>
<td>2018-04-11</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/299776" target="_blank">10.1101/299776</a></td>
<td>gwgflckq</td>
<td>0.484591</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a></td>
<td><a href="Topic_19.html#pxf8piqm">Saberi_2018</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_19.html#d6vud7xg">Ogando_2019</a></td>
</tr>
<tr>
<th id="mozfm5ds";>395</th>
<td>Stewart_2018</td>
<td>The transcriptional and translational landscape of equine torovirus</td>
<td>Hazel Stewart; Katherine Brown; Adam M. Dinan; Nerea Irigoyen; Eric J. Snijder; Andrew E. Firth</td>
<td>2018</td>
<td>2018-04-07</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/296996" target="_blank">10.1101/296996</a></td>
<td>mozfm5ds</td>
<td>0.483518</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#jlnv90vn">Stewart_2018</a>, <a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a></td>
</tr>
<tr>
<th id="xdouv8me";>396</th>
<td>Chetverin_2004</td>
<td>Replicable and recombinogenic RNAs</td>
<td>Chetverin, Alexander B.</td>
<td>2004</td>
<td>2004-06-01</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15165890.0" target="_blank">15165890.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2004.03.066" target="_blank">10.1016/j.febslet.2004.03.066</a></td>
<td>xdouv8me</td>
<td>0.483129</td>
<td><a href="Topic_19.html#y1vr1db0">Kozak_1994</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_01.html#qo74f00i">Valle_1988</a></td>
<td></td>
</tr>
<tr>
<th id="8z0xypmf";>397</th>
<td>Giegé_1993</td>
<td>The TYMV tRNA-like structure</td>
<td>Giegé, R; Florentz, C; Dreher, TW</td>
<td>1993</td>
<td>1993-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130797" target="_blank">PMC7130797</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8268257.0" target="_blank">8268257.0</a></td>
<td><a href="https://doi.org/10.1016/0300-9084(93)90063-x" target="_blank">10.1016/0300-9084(93)90063-x</a></td>
<td>8z0xypmf</td>
<td>0.482503</td>
<td><a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a></td>
</tr>
<tr>
<th id="ubm4au41";>398</th>
<td>Marczinke_2000</td>
<td>The Q-base of asparaginyl-tRNA is dispensable for efficient −1 ribosomal frameshifting in eukaryotes 1 1 Edited by J. Karn</td>
<td>Marczinke, Beate; Hagervall, Tord; Brierley, Ian</td>
<td>2000</td>
<td>2000-01-14</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126154" target="_blank">PMC7126154</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10623518.0" target="_blank">10623518.0</a></td>
<td><a href="https://doi.org/10.1006/jmbi.1999.3361" target="_blank">10.1006/jmbi.1999.3361</a></td>
<td>ubm4au41</td>
<td>0.482044</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#nnoni7qb">Huang_2018</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#kcskp2ux">Brierley_1997</a></td>
</tr>
<tr>
<th id="wwq0sd2r";>399</th>
<td>Liao_2010</td>
<td>The many paths to frameshifting: kinetic modelling and analysis of the effects of different elongation steps on programmed –1 ribosomal frameshifting</td>
<td>Liao, Pei-Yu; Choi, Yong Seok; Dinman, Jonathan D.; Lee, Kelvin H.</td>
<td>2010</td>
<td>2010-09-07</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017607" target="_blank">PMC3017607</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20823091.0" target="_blank">20823091.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkq761" target="_blank">10.1093/nar/gkq761</a></td>
<td>wwq0sd2r</td>
<td>0.481299</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#6z7rt5dd">Wang_2006</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="1znuxoj5";>400</th>
<td>Rowley_2016</td>
<td>XRN1 is a Species-Specific Virus Restriction Factor in Yeasts</td>
<td>Paul A. Rowley; Brandon Ho; Sarah Bushong; Arlen Johnson; Sara L. Sawyer</td>
<td>2016</td>
<td>2016-08-16</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/069799" target="_blank">10.1101/069799</a></td>
<td>1znuxoj5</td>
<td>0.480537</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#uvvstxf6">Rowley_2016</a></td>
<td><a href="Topic_19.html#uvvstxf6">Rowley_2016</a>, <a href="Topic_34.html#p3b4yk5d">Case_2017</a></td>
</tr>
<tr>
<th id="uoei747i";>401</th>
<td>Leibowitz_1988</td>
<td>Detection of a murine coronavirus nonstructural protein encoded in a downstream open reading frame</td>
<td>Leibowitz, Julian L.; Perlman, Stanley; Weinstock, George; Devries, James R.; Budzilowicz, Carol; Weissemann, Jane M.; Weiss, Susan R.</td>
<td>1988</td>
<td>1988-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131066" target="_blank">PMC7131066</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2834866.0" target="_blank">2834866.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(88)90631-9" target="_blank">10.1016/0042-6822(88)90631-9</a></td>
<td>uoei747i</td>
<td>0.480153</td>
<td><a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="wt4pxu08";>402</th>
<td>Kim_D_2020</td>
<td>The architecture of SARS-CoV-2 transcriptome</td>
<td>Dongwan Kim; Joo-Yeon Lee; Jeong-Sun Yang; Jun Won Kim; V. Narry Kim; Hyeshik Chang</td>
<td>2020</td>
<td>2020-03-14</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.03.12.988865" target="_blank">10.1101/2020.03.12.988865</a></td>
<td>wt4pxu08</td>
<td>0.479829</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#2fcl6f4i">Price_2019</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_35.html#1zoizzdp">Wang_2009</a></td>
</tr>
<tr>
<th id="3tfwy8km";>403</th>
<td>Sawicki_2008</td>
<td>Coronavirus Genome Replication</td>
<td>Sawicki, Stanley G.</td>
<td>2008</td>
<td>2008-11-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122471" target="_blank">PMC7122471</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/b135974_2" target="_blank">10.1007/b135974_2</a></td>
<td>3tfwy8km</td>
<td>0.478021</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_30.html#fcrd7lrw">Xu_L_2018</a></td>
<td><a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="po4p1466";>404</th>
<td>Wang_2008</td>
<td>Brome Mosaic Virus</td>
<td>Wang, X.; Ahlquist, P.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00560-4" target="_blank">10.1016/b978-012374410-4.00560-4</a></td>
<td>po4p1466</td>
<td>0.478021</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td></td>
</tr>
<tr>
<th id="93qae2al";>405</th>
<td>Su_L_1999</td>
<td>Minor groove RNA triplex in the crystal structure of a ribosomal frameshifting viral pseudoknot</td>
<td>Su, Li; Chen, Liqing; Egli, Martin; Berger, James M.; Rich, Alexander</td>
<td>1999</td>
<td>1999-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097825" target="_blank">PMC7097825</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10074948.0" target="_blank">10074948.0</a></td>
<td><a href="https://doi.org/10.1038/6722" target="_blank">10.1038/6722</a></td>
<td>93qae2al</td>
<td>0.475684</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_19.html#15s6otuz">Marcheschi_2007</a></td>
</tr>
<tr>
<th id="tltdzujk";>406</th>
<td>Redondo_2013</td>
<td>Translation of viral mRNAs that do not require eIF4E is blocked by the inhibitor 4EGI-1</td>
<td>Redondo, Natalia; García-Moreno, Manuel; Sanz, Miguel Angel; Carrasco, Luis</td>
<td>2013</td>
<td>2013-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111898" target="_blank">PMC7111898</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23870416.0" target="_blank">23870416.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2013.06.008" target="_blank">10.1016/j.virol.2013.06.008</a></td>
<td>tltdzujk</td>
<td>0.474259</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#pmdera3v">Masaki_2015</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="y6qcig5u";>407</th>
<td>Low_J_2014</td>
<td>Structure and Dynamics of the HIV-1 Frameshift Element RNA</td>
<td>Low, Justin\nT.; Garcia-Miranda, Pablo; Mouzakis, Kathryn D.; Gorelick, Robert J.; Butcher, Samuel E.; Weeks, Kevin M.</td>
<td>2014</td>
<td>2014-06-13</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4089884" target="_blank">PMC4089884</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24926888.0" target="_blank">24926888.0</a></td>
<td><a href="https://doi.org/10.1021/bi5004926" target="_blank">10.1021/bi5004926</a></td>
<td>y6qcig5u</td>
<td>0.473702</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_10.html#ov1f1uyt">Ivarsson_2012</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="bd2bkz5t";>408</th>
<td>Ghorai_2010</td>
<td>Molecular characterization of genome segment 2 encoding RNA dependent RNA polymerase of Antheraea mylitta cytoplasmic polyhedrosis virus</td>
<td>Ghorai, Suvankar; Chakrabarti, Mrinmay; Roy, Sobhan; Chavali, Venkata Ramana Murthy; Bagchi, Abhisek; Ghosh, Ananta Kumar</td>
<td>2010</td>
<td>2010-08-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111928" target="_blank">PMC7111928</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20488502.0" target="_blank">20488502.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.04.019" target="_blank">10.1016/j.virol.2010.04.019</a></td>
<td>bd2bkz5t</td>
<td>0.472727</td>
<td><a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_55.html#ums99z8p">Yang_2010</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="66kw1ubk";>409</th>
<td>Ferron_2012</td>
<td>The viral RNA capping machinery as a target for antiviral drugs</td>
<td>Ferron, François; Decroly, Etienne; Selisko, Barbara; Canard, Bruno</td>
<td>2012</td>
<td>2012-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114304" target="_blank">PMC7114304</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22841701.0" target="_blank">22841701.0</a></td>
<td><a href="https://doi.org/10.1016/j.antiviral.2012.07.007" target="_blank">10.1016/j.antiviral.2012.07.007</a></td>
<td>66kw1ubk</td>
<td>0.472207</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#eljk918r">Chen_2016</a>, <a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_19.html#a08rw6bp">Decroly_2011</a></td>
</tr>
<tr>
<th id="s0lcyjgh";>410</th>
<td>Yu_F_2007</td>
<td>Identification and characterization of RNA-dependent RNA polymerase activity in recombinant Japanese encephalitis virus NS5 protein</td>
<td>Yu, F.; Hasebe, F.; Inoue, S.; Mathenge, E. G. M.; Morita, K.</td>
<td>2007</td>
<td>2007-06-18</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086876" target="_blank">PMC7086876</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17577613.0" target="_blank">17577613.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-007-1007-0" target="_blank">10.1007/s00705-007-1007-0</a></td>
<td>s0lcyjgh</td>
<td>0.470944</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_23.html#xd8smt28">Loa_C_2004</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="a3y1rfas";>411</th>
<td>Sharma_2014</td>
<td>Analysis of tetra- and hepta-nucleotides motifs promoting -1 ribosomal frameshifting in Escherichia coli</td>
<td>Sharma, Virag; Prère, Marie-Françoise; Canal, Isabelle; Firth, Andrew E.; Atkins, John F.; Baranov, Pavel V.; Fayet, Olivier</td>
<td>2014</td>
<td>2014-07-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4066793" target="_blank">PMC4066793</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24875478.0" target="_blank">24875478.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku386" target="_blank">10.1093/nar/gku386</a></td>
<td>a3y1rfas</td>
<td>0.470550</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#ixslsd5s">Li_L_2001</a>, <a href="Topic_19.html#6z7rt5dd">Wang_2006</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a></td>
</tr>
<tr>
<th id="l6awxamv";>412</th>
<td>Ziebuhr_2005</td>
<td>The Coronavirus Replicase</td>
<td>Ziebuhr, J.</td>
<td>2005</td>
<td>2005-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121973" target="_blank">PMC7121973</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15609509.0" target="_blank">15609509.0</a></td>
<td><a href="https://doi.org/10.1007/3-540-26765-4_3" target="_blank">10.1007/3-540-26765-4_3</a></td>
<td>l6awxamv</td>
<td>0.470207</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#10jlzjf0">Shi_S_2005</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="baqph4le";>413</th>
<td>Nair_2010</td>
<td>Natively unfolded nucleic acid binding P8 domain of SeMV polyprotein 2a affects the novel ATPase activity of the preceding P10 domain</td>
<td>Nair, Smita; Savithri, H.S.</td>
<td>2010</td>
<td>2010-02-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125719" target="_blank">PMC7125719</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19995563.0" target="_blank">19995563.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2009.12.003" target="_blank">10.1016/j.febslet.2009.12.003</a></td>
<td>baqph4le</td>
<td>0.469041</td>
<td><a href="Topic_55.html#ums99z8p">Yang_2010</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_73.html#377v2ufn">UNKNOWN_1993</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_10.html#c8qcjve9">Faaberg_1996</a>, <a href="Topic_55.html#bv42mbnp">Piñón_1997</a>, <a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a></td>
</tr>
<tr>
<th id="gmgbus9i";>414</th>
<td>Kolla_2000</td>
<td>Synthesis of a bacteriophage MB78 late protein by novel ribosomal frameshifting</td>
<td>Kolla, Venkatadri; Chakravorty, Maharani; Pandey, Bindu; Srinivasula, Srinivasa M; Mukherjee, Annapurna; Litwack, Gerald</td>
<td>2000</td>
<td>2000-08-22</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10974552.0" target="_blank">10974552.0</a></td>
<td><a href="https://doi.org/10.1016/s0378-1119(00)00264-x" target="_blank">10.1016/s0378-1119(00)00264-x</a></td>
<td>gmgbus9i</td>
<td>0.468387</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td></td>
</tr>
<tr>
<th id="l1r416w7";>415</th>
<td>Hou_L_2014</td>
<td>Archaeal DnaG contains a conserved N-terminal RNA-binding domain and enables tailing of rRNA by the exosome</td>
<td>Hou, Linlin; Klug, Gabriele; Evguenieva-Hackenberg, Elena</td>
<td>2014</td>
<td>2014-11-10</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4227792" target="_blank">PMC4227792</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25326320.0" target="_blank">25326320.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku969" target="_blank">10.1093/nar/gku969</a></td>
<td>l1r416w7</td>
<td>0.467118</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a></td>
<td><a href="Topic_55.html#ovy03sfy">Scrima_2004</a>, <a href="Topic_19.html#3mtfvvfb">Vasquez-Del_Carpio_2006</a></td>
</tr>
<tr>
<th id="7obfhwey";>416</th>
<td>Ryabova_2002</td>
<td>Viral strategies of translation initiation: Ribosomal shunt and reinitiation</td>
<td>Ryabova, Lyubov A; Pooggin, Mikhail M; Hohn, Thomas</td>
<td>2002</td>
<td>2002-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133299" target="_blank">PMC7133299</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12206450.0" target="_blank">12206450.0</a></td>
<td><a href="https://doi.org/10.1016/s0079-6603(02)72066-7" target="_blank">10.1016/s0079-6603(02)72066-7</a></td>
<td>7obfhwey</td>
<td>0.466582</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#nmn41dh5">Cattaneo_1989</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="il9mz5na";>417</th>
<td>Rodnina_2020</td>
<td>Translational recoding: canonical translation mechanisms reinterpreted</td>
<td>Rodnina, Marina V; Korniy, Natalia; Klimova, Mariia; Karki, Prajwal; Peng, Bee-Zen; Senyushkina, Tamara; Belardinelli, Riccardo; Maracci, Cristina; Wohlgemuth, Ingo; Samatova, Ekaterina; Peske, Frank</td>
<td>2020</td>
<td>2020-02-20</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7026636" target="_blank">PMC7026636</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31511883.0" target="_blank">31511883.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz783" target="_blank">10.1093/nar/gkz783</a></td>
<td>il9mz5na</td>
<td>0.466494</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#y1vr1db0">Kozak_1994</a></td>
<td><a href="Topic_19.html#58cat4xj">Caliskan_2015</a>, <a href="Topic_19.html#kzshcrwx">Caliskan_2014</a></td>
</tr>
<tr>
<th id="42saxb98";>418</th>
<td>Kamitani_2009</td>
<td>A novel two-pronged strategy to suppress host protein synthesis by SARS coronavirus Nsp1 protein</td>
<td>Kamitani, Wataru; Huang, Cheng; Narayanan, Krishna; Lokugamage, Kumari G.; Makino, Shinji</td>
<td>2009</td>
<td>2009-10-18</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2784181" target="_blank">PMC2784181</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19838190.0" target="_blank">19838190.0</a></td>
<td><a href="https://doi.org/10.1038/nsmb.1680" target="_blank">10.1038/nsmb.1680</a></td>
<td>42saxb98</td>
<td>0.465882</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="zwgnkegf";>419</th>
<td>Liu_B_2009</td>
<td>Fluorescence Competition Assay Measurements of Free Energy Changes for RNA Pseudoknots</td>
<td>Liu, Biao; Shankar, Neelaabh; Turner, Douglas H.</td>
<td>2009</td>
<td>2009-11-18</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2808147" target="_blank">PMC2808147</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19921809.0" target="_blank">19921809.0</a></td>
<td><a href="https://doi.org/10.1021/bi901541j" target="_blank">10.1021/bi901541j</a></td>
<td>zwgnkegf</td>
<td>0.463853</td>
<td><a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_25.html#9zm4per4">Dawson_2007</a>, <a href="Topic_19.html#sztzrx1l">Kierzek_2006</a>, <a href="Topic_01.html#h6r6qdna">Polverino_2017</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_19.html#x28cxlm3">Hori_2016</a>, <a href="Topic_19.html#8jzoymfy">Theimer_1999</a></td>
</tr>
<tr>
<th id="x48huy5f";>420</th>
<td>Ji_F_2004</td>
<td>Prediction for Target Sites of Small Interfering RNA Duplexes in SARS Coronavirus</td>
<td>Ji, Fengmin; Luo, Liaofu</td>
<td>2004</td>
<td>2004-01-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097402" target="_blank">PMC7097402</a></td>
<td></td>
<td><a href="https://doi.org/10.1186/gb-2004-5-2-p6" target="_blank">10.1186/gb-2004-5-2-p6</a></td>
<td>x48huy5f</td>
<td>0.463611</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a></td>
<td><a href="Topic_25.html#s5widgc3">Kang_2006</a>, <a href="Topic_19.html#eljk918r">Chen_2016</a></td>
</tr>
<tr>
<th id="h2xdkoyq";>421</th>
<td>Kieft_2020</td>
<td>Identification of a novel base J binding protein complex involved in RNA polymerase II transcription termination in trypanosomes</td>
<td>Kieft, Rudo; Zhang, Yang; Marand, Alexandre P.; Moran, Jose Dagoberto; Bridger, Robert; Wells, Lance; Schmitz, Robert J.; Sabatini, Robert</td>
<td>2020</td>
<td>2020-02-21</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7055916" target="_blank">PMC7055916</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/32084124.0" target="_blank">32084124.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pgen.1008390" target="_blank">10.1371/journal.pgen.1008390</a></td>
<td>h2xdkoyq</td>
<td>0.461400</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#rybce5bj">Abernathy_2015</a></td>
<td><a href="Topic_19.html#j3u7yq3y">Kieft_2019</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="xnillpzd";>422</th>
<td>Zhang_2007</td>
<td>Helper virus-independent trans-replication of hepatitis C virus-derived minigenome</td>
<td>Zhang, Jing; Yamada, Osamu; Yoshida, Hiroshi; Sakamoto, Takashi; Araki, Hiromasa; Shimotohno, Kunitada</td>
<td>2007</td>
<td>2007-01-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117360" target="_blank">PMC7117360</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17112469.0" target="_blank">17112469.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2006.10.188" target="_blank">10.1016/j.bbrc.2006.10.188</a></td>
<td>xnillpzd</td>
<td>0.461357</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="r70iuoq0";>423</th>
<td>Weiss-Brummer_1995</td>
<td>Mutation of a highly conserved base in the yeast mitochondrial 21S rRNA restricts ribosomal frameshifting</td>
<td>Weiss-Brummer, Brigitte; Zollner, Alfred; Haid, Albert; Thomnson, Shahla</td>
<td>1995</td>
<td>1995-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087996" target="_blank">PMC7087996</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7544431.0" target="_blank">7544431.0</a></td>
<td><a href="https://doi.org/10.1007/bf02190802" target="_blank">10.1007/bf02190802</a></td>
<td>r70iuoq0</td>
<td>0.461311</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#kkkjl0le">Jacks_1988</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a></td>
<td><a href="Topic_19.html#p4mhvogk">Sakai_1991</a>, <a href="Topic_19.html#ubm4au41">Marczinke_2000</a>, <a href="Topic_19.html#ee7q7jhv">Powell_2011</a></td>
</tr>
<tr>
<th id="i6os0p47";>424</th>
<td>Landeo-Ríos_2016</td>
<td>The p22 RNA silencing suppressor of the crinivirus Tomato chlorosis virus preferentially binds long dsRNAs preventing them from cleavage</td>
<td>Landeo-Ríos, Yazmín; Navas-Castillo, Jesús; Moriones, Enrique; Cañizares, M. Carmen</td>
<td>2016</td>
<td>2016-01-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111720" target="_blank">PMC7111720</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26629953.0" target="_blank">26629953.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2015.11.008" target="_blank">10.1016/j.virol.2015.11.008</a></td>
<td>i6os0p47</td>
<td>0.461311</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a></td>
<td><a href="Topic_12.html#bulxer8k">Valli_2012</a>, <a href="Topic_35.html#d1lm5w4s">Rawlings_2011</a></td>
</tr>
<tr>
<th id="a0r9q8ms";>425</th>
<td>Park_2008</td>
<td>Identification of novel ligands for the RNA pseudoknot that regulate −1 ribosomal frameshifting</td>
<td>Park, So-Jung; Jung, Young Hoon; Kim, Yang-Gyun; Park, Hyun-Ju</td>
<td>2008</td>
<td>2008-04-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125880" target="_blank">PMC7125880</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18321712.0" target="_blank">18321712.0</a></td>
<td><a href="https://doi.org/10.1016/j.bmc.2008.02.025" target="_blank">10.1016/j.bmc.2008.02.025</a></td>
<td>a0r9q8ms</td>
<td>0.460537</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="69j32pl9";>426</th>
<td>Carrion_2008</td>
<td>Leishmaniaviruses</td>
<td>Carrion, R.; Ro, Y.-T.; Patterson, J.L.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00566-5" target="_blank">10.1016/b978-012374410-4.00566-5</a></td>
<td>69j32pl9</td>
<td>0.459454</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td></td>
</tr>
<tr>
<th id="vcfvpxhq";>427</th>
<td>Tuteja_2006</td>
<td>Helicases as molecular motors: An insight</td>
<td>Tuteja, Narendra; Tuteja, Renu</td>
<td>2006</td>
<td>2006-12-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127012" target="_blank">PMC7127012</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.physa.2006.05.014" target="_blank">10.1016/j.physa.2006.05.014</a></td>
<td>vcfvpxhq</td>
<td>0.459271</td>
<td><a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_55.html#0a3okta0">Myllykoski_2017</a>, <a href="Topic_19.html#av4mt6rg">Lehmann_2015</a></td>
</tr>
<tr>
<th id="wuzucvvb";>428</th>
<td>Cho_K_2014</td>
<td>Toroviruses (Coronaviridae)</td>
<td>Cho, K.-O.; Hoet, A.E.</td>
<td>2014</td>
<td>2014-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7157456" target="_blank">PMC7157456</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-801238-3.02674-x" target="_blank">10.1016/b978-0-12-801238-3.02674-x</a></td>
<td>wuzucvvb</td>
<td>0.459077</td>
<td><a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_56.html#y3d9ghel">Hewson_2007</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a>, <a href="Topic_56.html#2qj2rrgd">Lvov_2015</a></td>
<td><a href="Topic_19.html#jlnv90vn">Stewart_2018</a>, <a href="Topic_34.html#p3b4yk5d">Case_2017</a>, <a href="Topic_19.html#mozfm5ds">Stewart_2018</a></td>
</tr>
<tr>
<th id="ag5y781z";>429</th>
<td>Cowley_2016</td>
<td>Chapter 32 Nidoviruses of Fish and Crustaceans</td>
<td>Cowley, J.A.</td>
<td>2016</td>
<td>2016-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150020" target="_blank">PMC7150020</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-801573-5.00032-2" target="_blank">10.1016/b978-0-12-801573-5.00032-2</a></td>
<td>ag5y781z</td>
<td>0.458940</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a>, <a href="Topic_30.html#fcrd7lrw">Xu_L_2018</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_19.html#g64fmvxs">Wijegoonawardane_2008</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a></td>
</tr>
<tr>
<th id="jhetyd9t";>430</th>
<td>Kovalev_2012</td>
<td>A Co-Opted DEAD-Box RNA Helicase Enhances Tombusvirus Plus-Strand Synthesis</td>
<td>Kovalev, Nikolay; Pogany, Judit; Nagy, Peter D.</td>
<td>2012</td>
<td>2012-02-16</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280988" target="_blank">PMC3280988</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22359508.0" target="_blank">22359508.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1002537" target="_blank">10.1371/journal.ppat.1002537</a></td>
<td>jhetyd9t</td>
<td>0.458652</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#06qfbvlr">Li_Z_2009</a></td>
</tr>
<tr>
<th id="fm44fqqb";>431</th>
<td>Cameron_2009</td>
<td>Dynamics: the missing link between structure and function of the viral RNA-dependent RNA polymerase?</td>
<td>Cameron, Craig E; Moustafa, Ibrahim M; Arnold, Jamie J</td>
<td>2009</td>
<td>2009-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19910183.0" target="_blank">19910183.0</a></td>
<td><a href="https://doi.org/10.1016/j.sbi.2009.10.012" target="_blank">10.1016/j.sbi.2009.10.012</a></td>
<td>fm44fqqb</td>
<td>0.458534</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a></td>
<td></td>
</tr>
<tr>
<th id="vx0nc8io";>432</th>
<td>Wu_B_2013</td>
<td>Global Organization of a Positive-strand RNA Virus Genome</td>
<td>Wu, Baodong; Grigull, Jörg; Ore, Moriam O.; Morin, Sylvie; White, K. Andrew</td>
<td>2013</td>
<td>2013-05-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3662671" target="_blank">PMC3662671</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23717202.0" target="_blank">23717202.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1003363" target="_blank">10.1371/journal.ppat.1003363</a></td>
<td>vx0nc8io</td>
<td>0.457929</td>
<td><a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="7fbzbxa2";>433</th>
<td>Limanskaya_2013</td>
<td>Potential thermosensitive riboswitches in the genome of Salmonella</td>
<td>Limanskaya, O. Yu.; Murtazaeva, L. A.; Limanskii, A. P.</td>
<td>2013</td>
<td>2013-10-11</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089174" target="_blank">PMC7089174</a></td>
<td></td>
<td><a href="https://doi.org/10.3103/s009545271305006x" target="_blank">10.3103/s009545271305006x</a></td>
<td>7fbzbxa2</td>
<td>0.457114</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#gpz7giuv">Limanskaya_2013</a>, <a href="Topic_19.html#9pkvj14m">Singleton_2018</a>, <a href="Topic_55.html#zbm8uy0z">Michalska_2018</a></td>
</tr>
<tr>
<th id="5exkly0l";>434</th>
<td>Moran_2008</td>
<td>The Mechanics of Translocation: A Molecular “Spring-and-Ratchet” System</td>
<td>Moran, Stephen J.; Flanagan, John F.; Namy, Olivier; Stuart, David I.; Brierley, Ian; Gilbert, Robert J.C.</td>
<td>2008</td>
<td>2008-05-07</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7119126" target="_blank">PMC7119126</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18462671.0" target="_blank">18462671.0</a></td>
<td><a href="https://doi.org/10.1016/j.str.2008.04.001" target="_blank">10.1016/j.str.2008.04.001</a></td>
<td>5exkly0l</td>
<td>0.456372</td>
<td><a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_10.html#4ef635rc">Chan_2016</a></td>
<td><a href="Topic_19.html#o2zjszj1">Olia_2008</a>, <a href="Topic_19.html#bddiy1ea">Flanagan_2010</a>, <a href="Topic_19.html#kzshcrwx">Caliskan_2014</a></td>
</tr>
<tr>
<th id="p3gswh23";>435</th>
<td>Mousavizadeh_2020</td>
<td>Genotype and phenotype of COVID-19: Their roles in pathogenesis</td>
<td>Mousavizadeh, Leila; Ghasemi, Sorayya</td>
<td>2020</td>
<td>2020-03-31</td>
<td>PMC</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.jmii.2020.03.022" target="_blank">10.1016/j.jmii.2020.03.022</a></td>
<td>p3gswh23</td>
<td>0.456372</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_39.html#zrbesm5b">Rockx_2020</a>, <a href="Topic_34.html#pdfs6ojs">Narayanan_2015</a>, <a href="Topic_10.html#h5ire02h">Tan_Y_2020</a></td>
</tr>
<tr>
<th id="1ssh296a";>436</th>
<td>Adedeji_2012</td>
<td>Mechanism of Nucleic Acid Unwinding by SARS-CoV Helicase</td>
<td>Adedeji, Adeyemi O.; Marchand, Bruno; te Velthuis, Aartjan J. W.; Snijder, Eric J.; Weiss, Susan; Eoff, Robert L.; Singh, Kamalendra; Sarafianos, Stefan G.</td>
<td>2012</td>
<td>2012-05-15</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3352918" target="_blank">PMC3352918</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22615777.0" target="_blank">22615777.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0036521" target="_blank">10.1371/journal.pone.0036521</a></td>
<td>1ssh296a</td>
<td>0.456275</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_19.html#mr1orklo">Adedeji_2016</a></td>
</tr>
<tr>
<th id="p1qyxmes";>437</th>
<td>Chetverin_1999</td>
<td>The puzzle of RNA recombination</td>
<td>Chetverin, Alexander B</td>
<td>1999</td>
<td>1999-10-22</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10571050.0" target="_blank">10571050.0</a></td>
<td><a href="https://doi.org/10.1016/s0014-5793(99)01282-x" target="_blank">10.1016/s0014-5793(99)01282-x</a></td>
<td>p1qyxmes</td>
<td>0.455515</td>
<td><a href="Topic_19.html#5t5xthk6">Gmyl_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a></td>
<td></td>
</tr>
<tr>
<th id="pujlr8uf";>438</th>
<td>Kuo_L_2016</td>
<td>A key role for the carboxy-terminal tail of the murine coronavirus nucleocapsid protein in coordination of genome packaging</td>
<td>Kuo, Lili; Koetzner, Cheri A.; Masters, Paul S.</td>
<td>2016</td>
<td>2016-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4884538" target="_blank">PMC4884538</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27105451.0" target="_blank">27105451.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2016.04.009" target="_blank">10.1016/j.virol.2016.04.009</a></td>
<td>pujlr8uf</td>
<td>0.454107</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#67uqildl">Narayanan_2003</a></td>
<td><a href="Topic_10.html#kyavg4vu">Masters_1992</a></td>
</tr>
<tr>
<th id="213ly4xo";>439</th>
<td>Fricke_2019</td>
<td>Global importance of RNA secondary structures in protein-coding sequences</td>
<td>Fricke, Markus; Gerst, Ruman; Ibrahim, Bashar; Niepmann, Michael; Marz, Manja</td>
<td>2019</td>
<td>2019-02-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7109657" target="_blank">PMC7109657</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30101307.0" target="_blank">30101307.0</a></td>
<td><a href="https://doi.org/10.1093/bioinformatics/bty678" target="_blank">10.1093/bioinformatics/bty678</a></td>
<td>213ly4xo</td>
<td>0.453191</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#dg94h2ko">Samal_2013</a></td>
</tr>
<tr>
<th id="wzj2glte";>440</th>
<td>Xu_Z_2001</td>
<td>Synthesis of a novel hepatitis C virus protein by ribosomal frameshift</td>
<td>Xu, Zhenming; Choi, Jinah; Yen, T.S.Benedict; Lu, Wen; Strohecker, Anne; Govindarajan, Sugantha; Chien, David; Selby, Mark J.; Ou, Jing‐hsiung</td>
<td>2001</td>
<td>2001-07-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC125543" target="_blank">PMC125543</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11447125.0" target="_blank">11447125.0</a></td>
<td><a href="https://doi.org/10.1093/emboj/20.14.3840" target="_blank">10.1093/emboj/20.14.3840</a></td>
<td>wzj2glte</td>
<td>0.453191</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td></td>
</tr>
<tr>
<th id="n25wnmq5";>441</th>
<td>Nibert_2018</td>
<td>A barnavirus sequence mined from a transcriptome of the Antarctic pearlwort Colobanthus quitensis</td>
<td>Nibert, Max L.; Manny, Austin R.; Debat, Humberto J.; Firth, Andrew E.; Bertini, Laura; Caruso, Carla</td>
<td>2018</td>
<td>2018-03-07</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5999160" target="_blank">PMC5999160</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29516246.0" target="_blank">29516246.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-018-3794-x" target="_blank">10.1007/s00705-018-3794-x</a></td>
<td>n25wnmq5</td>
<td>0.453014</td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_10.html#waho38j5">Bhat_2011</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_35.html#61659cfq">Carmo_2012</a></td>
</tr>
<tr>
<th id="4t8ra5oa";>442</th>
<td>Chen_1995</td>
<td>Detection of related positive-strand RNA virus genomes by reverse transcription/polymerase chain reaction using degenerate primers for common replicase sequences</td>
<td>Chen, Zongyu; Plagemann, Peter G.W.</td>
<td>1995</td>
<td>1995-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134001" target="_blank">PMC7134001</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8837898.0" target="_blank">8837898.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(95)00093-3" target="_blank">10.1016/0168-1702(95)00093-3</a></td>
<td>4t8ra5oa</td>
<td>0.452419</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="ymxapsv6";>443</th>
<td>UNKNOWN_2012</td>
<td>Family Closteroviridae</td>
<td>None</td>
<td>2012</td>
<td>2012-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-384684-6.00085-9" target="_blank">10.1016/b978-0-12-384684-6.00085-9</a></td>
<td>ymxapsv6</td>
<td>0.450682</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#gqvwiy5h">Modrow_2013</a>, <a href="Topic_37.html#i2ppvsh5">Dolja_2006</a></td>
<td></td>
</tr>
<tr>
<th id="48rw5arp";>444</th>
<td>Binns_1985</td>
<td>The use of a random priming procedure to generate cDNA libraries of infectious bronchitis virus, a large RNA virus</td>
<td>Binns, M.M.; Boursnell, M.E.G.; Foulds, I.J.; Brown, T.D.K.</td>
<td>1985</td>
<td>1985-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7119584" target="_blank">PMC7119584</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2993338.0" target="_blank">2993338.0</a></td>
<td><a href="https://doi.org/10.1016/0166-0934(85)90116-8" target="_blank">10.1016/0166-0934(85)90116-8</a></td>
<td>48rw5arp</td>
<td>0.450102</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_14.html#zqe5nnu3">Usme-Ciro_2014</a></td>
</tr>
<tr>
<th id="y6rye3bp";>445</th>
<td>Bidou_2010</td>
<td>Translational errors: from yeast to new therapeutic targets</td>
<td>Bidou, Laure; Rousset, Jean-Pierre; Namy, Olivier</td>
<td>2010</td>
<td>2010-12-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7110152" target="_blank">PMC7110152</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20955199.0" target="_blank">20955199.0</a></td>
<td><a href="https://doi.org/10.1111/j.1567-1364.2010.00684.x" target="_blank">10.1111/j.1567-1364.2010.00684.x</a></td>
<td>y6rye3bp</td>
<td>0.449601</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#dkwcheu0">Abernathy_2015</a></td>
<td><a href="Topic_19.html#7elri6u3">Cassan_1990</a>, <a href="Topic_12.html#zz4w4jp3">de_Breyne_2018</a></td>
</tr>
<tr>
<th id="crolji1q";>446</th>
<td>Cotelesage_2011</td>
<td>Hepatitis B Virus Genotype G forms core-like particles with unique structural properties</td>
<td>Cotelesage, J J H; Osiowy, C; Lawrence, C; deVarennes, S L; Teow, S; Beniac, D R; Booth, T F</td>
<td>2011</td>
<td>2011-06-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3116152" target="_blank">PMC3116152</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20546498.0" target="_blank">20546498.0</a></td>
<td><a href="https://doi.org/10.1111/j.1365-2893.2010.01330.x" target="_blank">10.1111/j.1365-2893.2010.01330.x</a></td>
<td>crolji1q</td>
<td>0.445821</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_12.html#cz42gvhy">Popescu_2011</a>, <a href="Topic_10.html#anp238gu">Effantin_2016</a></td>
</tr>
<tr>
<th id="ag7b9b00";>447</th>
<td>Brierley_2007</td>
<td>Viral RNA pseudoknots: versatile motifs in gene expression and replication</td>
<td>Brierley, Ian; Pennell, Simon; Gilbert, Robert J. C.</td>
<td>2007</td>
<td>2007-01-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7096944" target="_blank">PMC7096944</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17632571.0" target="_blank">17632571.0</a></td>
<td><a href="https://doi.org/10.1038/nrmicro1704" target="_blank">10.1038/nrmicro1704</a></td>
<td>ag7b9b00</td>
<td>0.445175</td>
<td><a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_12.html#f32rcce3">Diaz_2012</a></td>
</tr>
<tr>
<th id="4fm1skgh";>448</th>
<td>Lyon_2018</td>
<td>Live-cell single RNA imaging reveals bursts of translational frameshifting</td>
<td>Kenneth Lyon; Luis U. Aguilera; Tatsuya Morisaki; Brian Munsky; Timothy J. Stasevich</td>
<td>2018</td>
<td>2018-11-24</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/478040" target="_blank">10.1101/478040</a></td>
<td>4fm1skgh</td>
<td>0.444931</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td></td>
</tr>
<tr>
<th id="47okncdw";>449</th>
<td>Marr_2003</td>
<td>Mismatch Extension During Strong Stop Strand Transfer and Minimal Homology Requirements for Replicative Template Switching During Moloney Murine Leukemia Virus Replication</td>
<td>Marr, Sharon Fodor; Telesnitsky, Alice</td>
<td>2003</td>
<td>2003-07-18</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12850138.0" target="_blank">12850138.0</a></td>
<td><a href="https://doi.org/10.1016/s0022-2836(03)00597-7" target="_blank">10.1016/s0022-2836(03)00597-7</a></td>
<td>47okncdw</td>
<td>0.444004</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td></td>
</tr>
<tr>
<th id="dvnkhgov";>450</th>
<td>de Messieres_2014</td>
<td>Single-Molecule Measurements of the CCR5 mRNA Unfolding Pathways</td>
<td>de Messieres, Michel; Chang, Jen-Chien; Belew, Ashton Trey; Meskauskas, Arturas; Dinman, Jonathan D.; La Porta, Arthur</td>
<td>2014</td>
<td>2014-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907219" target="_blank">PMC3907219</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24411256.0" target="_blank">24411256.0</a></td>
<td><a href="https://doi.org/10.1016/j.bpj.2013.09.036" target="_blank">10.1016/j.bpj.2013.09.036</a></td>
<td>dvnkhgov</td>
<td>0.443935</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#5i3g2zb7">Brierley_1989</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td><a href="Topic_10.html#lds6a5h0">Bénard_1996</a></td>
</tr>
<tr>
<th id="b4zcvd04";>451</th>
<td>Crescenzo-Chaigne_2014</td>
<td>Chimeric NP Non Coding Regions between Type A and C Influenza Viruses Reveal Their Role in Translation Regulation</td>
<td>Crescenzo-Chaigne, Bernadette; Barbezange, Cyril; Frigard, Vianney; Poulain, Damien; van der Werf, Sylvie</td>
<td>2014</td>
<td>2014-09-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182659" target="_blank">PMC4182659</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25268971.0" target="_blank">25268971.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0109046" target="_blank">10.1371/journal.pone.0109046</a></td>
<td>b4zcvd04</td>
<td>0.443483</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="s63clavw";>452</th>
<td>Gao_F_2013</td>
<td>Replacement of the heterologous 5′ untranslated region allows preservation of the fully functional activities of type 2 porcine reproductive and respiratory syndrome virus</td>
<td>Gao, Fei; Yao, Huochun; Lu, Jiaqi; Wei, Zuzhang; Zheng, Haihong; Zhuang, Jinshan; Tong, Guangzhi; Yuan, Shishan</td>
<td>2013</td>
<td>2013-04-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111940" target="_blank">PMC7111940</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23453581.0" target="_blank">23453581.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2012.12.013" target="_blank">10.1016/j.virol.2012.12.013</a></td>
<td>s63clavw</td>
<td>0.442657</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="dtnysugh";>453</th>
<td>Somers_2013</td>
<td>A perspective on mammalian upstream open reading frame function</td>
<td>Somers, Joanna; Pöyry, Tuija; Willis, Anne E.</td>
<td>2013</td>
<td>2013-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.biocel.2013.04.020" target="_blank">10.1016/j.biocel.2013.04.020</a></td>
<td>dtnysugh</td>
<td>0.441423</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td></td>
</tr>
<tr>
<th id="0kcujnfa";>454</th>
<td>Agranovsky_1996</td>
<td>Principles of Molecular Organization, Expression, and Evolution of Closteroviruses: Over The Barriers</td>
<td>Agranovsky, A.A.</td>
<td>1996</td>
<td>1996-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8895832.0" target="_blank">8895832.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60735-6" target="_blank">10.1016/s0065-3527(08)60735-6</a></td>
<td>0kcujnfa</td>
<td>0.440523</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a></td>
<td><a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="s90geszi";>455</th>
<td>Lang_2012</td>
<td>Highly similar structural frames link the template tunnel and NTP entry tunnel to the exterior surface in RNA-dependent RNA polymerases</td>
<td>Lang, Dorothy M.; Zemla, A. T.; Zhou, C. L. Ecale</td>
<td>2012</td>
<td>2012-12-25</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561941" target="_blank">PMC3561941</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23275546.0" target="_blank">23275546.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gks1251" target="_blank">10.1093/nar/gks1251</a></td>
<td>s90geszi</td>
<td>0.439054</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td></td>
</tr>
<tr>
<th id="kstt07y1";>456</th>
<td>Snijder_2003</td>
<td>Unique and Conserved Features of Genome and Proteome of SARS-coronavirus, an Early Split-off From the Coronavirus Group 2 Lineage</td>
<td>Snijder, Eric J.; Bredenbeek, Peter J.; Dobbe, Jessika C.; Thiel, Volker; Ziebuhr, John; Poon, Leo L.M.; Guan, Yi; Rozanov, Mikhail; Spaan, Willy J.M.; Gorbalenya, Alexander E.</td>
<td>2003</td>
<td>2003-08-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7159028" target="_blank">PMC7159028</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12927536.0" target="_blank">12927536.0</a></td>
<td><a href="https://doi.org/10.1016/s0022-2836(03)00865-9" target="_blank">10.1016/s0022-2836(03)00865-9</a></td>
<td>kstt07y1</td>
<td>0.437907</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a>, <a href="Topic_03.html#c7khkkcj">Subissi_2014</a></td>
</tr>
<tr>
<th id="p9dl7whd";>457</th>
<td>YU_W_1995</td>
<td>A Conserved Motif at the 3′ End of Mouse Hepatitis Virus Genomic RNA Required for Host Protein Binding and Viral RNA Replication</td>
<td>YU, WEI; LEIBOWITZ, JULIAN L.</td>
<td>1995</td>
<td>1995-12-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130855" target="_blank">PMC7130855</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8525608.0" target="_blank">8525608.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1995.9947" target="_blank">10.1006/viro.1995.9947</a></td>
<td>p9dl7whd</td>
<td>0.436679</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="tx5ff5gk";>458</th>
<td>Wu_B_2009</td>
<td>A Discontinuous RNA Platform Mediates RNA Virus Replication: Building an Integrated Model for RNA–based Regulation of Viral Processes</td>
<td>Wu, Baodong; Pogany, Judit; Na, Hong; Nicholson, Beth L.; Nagy, Peter D.; White, K. Andrew</td>
<td>2009</td>
<td>2009-03-06</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2648310" target="_blank">PMC2648310</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19266082.0" target="_blank">19266082.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1000323" target="_blank">10.1371/journal.ppat.1000323</a></td>
<td>tx5ff5gk</td>
<td>0.436342</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="468kk47s";>459</th>
<td>Gorbalenya_2002</td>
<td>The Palm Subdomain-based Active Site is Internally Permuted in Viral RNA-dependent RNA Polymerases of an Ancient Lineage</td>
<td>Gorbalenya, Alexander E; Pringle, Fiona M; Zeddam, Jean-Louis; Luke, Brian T; Cameron, Craig E; Kalmakoff, James; Hanzlik, Terry N; Gordon, Karl H.J; Ward, Vernon K</td>
<td>2002</td>
<td>2002-11-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127740" target="_blank">PMC7127740</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12421558.0" target="_blank">12421558.0</a></td>
<td><a href="https://doi.org/10.1016/s0022-2836(02)01033-1" target="_blank">10.1016/s0022-2836(02)01033-1</a></td>
<td>468kk47s</td>
<td>0.435901</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#31by8zse">Imbert_2006</a></td>
<td><a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="d9urjb9e";>460</th>
<td>Masante_2015</td>
<td>Mutations of the SL2 dimerization sequence of the hepatitis C genome abrogate viral replication</td>
<td>Masante, Cyril; Jaubert, Chloé; Palau, William; Plissonneau, Jacqueline; Besnard, Lucie; Ventura, Michel; Di Primo, Carmelo</td>
<td>2015</td>
<td>2015-03-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7079775" target="_blank">PMC7079775</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25822205.0" target="_blank">25822205.0</a></td>
<td><a href="https://doi.org/10.1007/s00018-015-1893-3" target="_blank">10.1007/s00018-015-1893-3</a></td>
<td>d9urjb9e</td>
<td>0.435402</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="sz2531mv";>461</th>
<td>Byszewska_2015</td>
<td>RNA methyltransferases involved in 5′ cap biosynthesis</td>
<td>Byszewska, Magdalena; Śmietański, Mirosław; Purta, Elżbieta; Bujnicki, Janusz M</td>
<td>2015</td>
<td>2015-01-27</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4615557" target="_blank">PMC4615557</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25626080.0" target="_blank">25626080.0</a></td>
<td><a href="https://doi.org/10.1080/15476286.2015.1004955" target="_blank">10.1080/15476286.2015.1004955</a></td>
<td>sz2531mv</td>
<td>0.434833</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#eljk918r">Chen_2016</a></td>
</tr>
<tr>
<th id="cq7g8azh";>462</th>
<td>Krause_2019</td>
<td>tailfindr: Alignment-free poly(A) length measurement for Oxford Nanopore RNA and DNA sequencing</td>
<td>Maximilian Krause; Adnan M. Niazi; Kornel Labun; Yamila N. Torres Cleuren; Florian S. Müller; Eivind Valen</td>
<td>2019</td>
<td>2019-03-25</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/588343" target="_blank">10.1101/588343</a></td>
<td>cq7g8azh</td>
<td>0.434452</td>
<td><a href="Topic_37.html#g2f151oc">Whiteford_2005</a>, <a href="Topic_19.html#2fcl6f4i">Price_2019</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#4s71mh8j">van_Ooij_2006</a></td>
</tr>
<tr>
<th id="dktugixk";>463</th>
<td>Masters_1999</td>
<td>Reverse Genetics of The Largest RNA Viruses</td>
<td>Masters, Paul S.</td>
<td>1999</td>
<td>1999-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131607" target="_blank">PMC7131607</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10582102.0" target="_blank">10582102.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60351-6" target="_blank">10.1016/s0065-3527(08)60351-6</a></td>
<td>dktugixk</td>
<td>0.432642</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="g55d5ijx";>464</th>
<td>Liu_C_2017</td>
<td>Complemented palindrome small RNAs first discovered from SARS coronavirus</td>
<td>Chang Liu; Ze Chen; Wenyuan Shen; Deshui Yu; Siyu Li; Yue Hu; Haishuo Ji; Wenjun Bu; Qingsong Wang; Shan Gao</td>
<td>2017</td>
<td>2017-09-07</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/185876" target="_blank">10.1101/185876</a></td>
<td>g55d5ijx</td>
<td>0.432406</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_19.html#9z8kdpp1">Liu_C_2018</a>, <a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_12.html#itsr18vb">Kumar_2007</a></td>
</tr>
<tr>
<th id="l761o6n3";>465</th>
<td>Tohya_1991</td>
<td>Sequence analysis of the 3′-end of feline calicivirus genome</td>
<td>Tohya, Yukinobu; Taniguchi, Yasuko; Takahashi, Eiji; Utagawa, Etsuko; Takeda, Naokazu; Miyamura, Kikuko; Yamazaki, Shudo; Mikami, Takeshi</td>
<td>1991</td>
<td>1991-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1853578.0" target="_blank">1853578.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)91016-a" target="_blank">10.1016/0042-6822(91)91016-a</a></td>
<td>l761o6n3</td>
<td>0.432406</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#vvnhktca">Toshio_1989</a></td>
<td></td>
</tr>
<tr>
<th id="667urmpq";>466</th>
<td>Masters_2019</td>
<td>Coronavirus genomic RNA packaging</td>
<td>Masters, Paul S.</td>
<td>2019</td>
<td>2019-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112113" target="_blank">PMC7112113</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31505321.0" target="_blank">31505321.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2019.08.031" target="_blank">10.1016/j.virol.2019.08.031</a></td>
<td>667urmpq</td>
<td>0.432123</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#44ecr3re">Rivas_2016</a></td>
<td><a href="Topic_19.html#geesc6xx">Athmer_2018</a></td>
</tr>
<tr>
<th id="h9ppa064";>467</th>
<td>Plagemann_1991</td>
<td>Hepatitis C virus</td>
<td>Plagemann, P. G. W.</td>
<td>1991</td>
<td>1991-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087296" target="_blank">PMC7087296</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1659796.0" target="_blank">1659796.0</a></td>
<td><a href="https://doi.org/10.1007/bf01310473" target="_blank">10.1007/bf01310473</a></td>
<td>h9ppa064</td>
<td>0.431576</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="g64fmvxs";>468</th>
<td>Wijegoonawardane_2008</td>
<td>Genetic diversity in the yellow head nidovirus complex</td>
<td>Wijegoonawardane, Priyanjalie K.M.; Cowley, Jeff A.; Phan, Thuy; Hodgson, Richard A.J.; Nielsen, Linda; Kiatpathomchai, Wansika; Walker, Peter J.</td>
<td>2008</td>
<td>2008-10-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7103379" target="_blank">PMC7103379</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18768192.0" target="_blank">18768192.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2008.07.005" target="_blank">10.1016/j.virol.2008.07.005</a></td>
<td>g64fmvxs</td>
<td>0.429876</td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_09.html#y3ywrpox">Wijegoonawardane_2009</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#44h6rdwg">Zhou_2017</a></td>
</tr>
<tr>
<th id="2qompc3u";>469</th>
<td>He_G_2020</td>
<td>Brome Mosaic Virus (Bromoviridae) ☆</td>
<td>He, Guijuan; Zhang, Zhenlu; Sathanantham, Preethi; Diaz, Arturo; Wang, Xiaofeng</td>
<td>2020</td>
<td>2020-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-809633-8.21294-6" target="_blank">10.1016/b978-0-12-809633-8.21294-6</a></td>
<td>2qompc3u</td>
<td>0.429389</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a></td>
<td></td>
</tr>
<tr>
<th id="y5ynb738";>470</th>
<td>Priet_2015</td>
<td>mRNA maturation in giant viruses: variation on a theme</td>
<td>Priet, Stéphane; Lartigue, Audrey; Debart, Françoise; Claverie, Jean-Michel; Abergel, Chantal</td>
<td>2015</td>
<td>2015-04-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4402537" target="_blank">PMC4402537</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25779049.0" target="_blank">25779049.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv224" target="_blank">10.1093/nar/gkv224</a></td>
<td>y5ynb738</td>
<td>0.429137</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="xge6mah1";>471</th>
<td>Tsai_2018</td>
<td>Gene Variations in Cis-Acting Elements between the Taiwan and Prototype Strains of Porcine Epidemic Diarrhea Virus Alter Viral Gene Expression</td>
<td>Tsai, Tsung-Lin; Su, Chen-Chang; Hsieh, Ching-Chi; Lin, Chao-Nan; Chang, Hui-Wen; Lo, Chen-Yu; Lin, Ching-Houng; Wu, Hung-Yi</td>
<td>2018</td>
<td>2018-11-29</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316102" target="_blank">PMC6316102</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30501108.0" target="_blank">30501108.0</a></td>
<td><a href="https://doi.org/10.3390/genes9120591" target="_blank">10.3390/genes9120591</a></td>
<td>xge6mah1</td>
<td>0.427873</td>
<td><a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a>, <a href="Topic_09.html#xnwk1jqb">Jang_2019</a>, <a href="Topic_09.html#62xdl82e">Wang_2010</a></td>
</tr>
<tr>
<th id="jcb9w8y9";>472</th>
<td>Meulenberg_1997</td>
<td>Molecular characterization of Lelystad virus</td>
<td>Meulenberg, J.J.M.; Petersen den Besten, A.; de Kluyver, E.; van Nieuwstadt, A.; Wensvoort, G.; Moormann, R.J.M.</td>
<td>1997</td>
<td>1997-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117323" target="_blank">PMC7117323</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9220614.0" target="_blank">9220614.0</a></td>
<td><a href="https://doi.org/10.1016/s0378-1135(96)01335-1" target="_blank">10.1016/s0378-1135(96)01335-1</a></td>
<td>jcb9w8y9</td>
<td>0.427305</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#27fd59qe">Meulenberg_1995</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="7pdh7alh";>473</th>
<td>Hong_2013</td>
<td>Viral IRES Prediction System - a Web Server for Prediction of the IRES Secondary Structure In Silico</td>
<td>Hong, Jun-Jie; Wu, Tzong-Yuan; Chang, Tsair-Yuan; Chen, Chung-Yung</td>
<td>2013</td>
<td>2013-11-05</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3818432" target="_blank">PMC3818432</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24223923.0" target="_blank">24223923.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0079288" target="_blank">10.1371/journal.pone.0079288</a></td>
<td>7pdh7alh</td>
<td>0.426933</td>
<td><a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_25.html#wt0lvhfl">Wu_T_2009</a>, <a href="Topic_19.html#ug4gjst2">Landry_2009</a></td>
<td><a href="Topic_25.html#wt0lvhfl">Wu_T_2009</a>, <a href="Topic_19.html#ywkxxye5">Fajardo_2012</a></td>
</tr>
<tr>
<th id="f2jf7byg";>474</th>
<td>Willcocks_1993</td>
<td>Identification and sequence determination of the capsid protein gene of human astrovirus serotype 1</td>
<td>Willcocks, Margaret M.; Carter, Michael J.</td>
<td>1993</td>
<td>1993-11-15</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8293952.0" target="_blank">8293952.0</a></td>
<td></td>
<td>f2jf7byg</td>
<td>0.426877</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#uoei747i">Leibowitz_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#zgqivufm">Carter_1992</a></td>
</tr>
<tr>
<th id="88mgoxz6";>475</th>
<td>Luytjes_1988</td>
<td>Sequence of mouse hepatitis virus A59 mRNA 2: Indications for RNA recombination between coronaviruses and influenza C virus</td>
<td>Luytjes, Willem; Bredenbeek, Peter J.; Noten, Ans F.H.; Horzinek, Marian C.; Spaan, Willy J.M.</td>
<td>1988</td>
<td>1988-10-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7118983" target="_blank">PMC7118983</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2845655.0" target="_blank">2845655.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(88)90512-0" target="_blank">10.1016/0042-6822(88)90512-0</a></td>
<td>88mgoxz6</td>
<td>0.426078</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#vvnhktca">Toshio_1989</a></td>
<td><a href="Topic_62.html#wdi66k53">Jouvenne_1992</a></td>
</tr>
<tr>
<th id="pda9knvv";>476</th>
<td>Lehmann_2015</td>
<td>Discovery of an essential nucleotidylating activity associated with a newly delineated conserved domain in the RNA polymerase-containing protein of all nidoviruses</td>
<td>Lehmann, Kathleen C.; Gulyaeva, Anastasia; Zevenhoven-Dobbe, Jessika C.; Janssen, George M. C.; Ruben, Mark; Overkleeft, Hermen S.; van Veelen, Peter A.; Samborskiy, Dmitry V.; Kravchenko, Alexander A.; Leontovich, Andrey M.; Sidorov, Igor A.; Snijder, Eric J.; Posthuma, Clara C.; Gorbalenya, Alexander E.</td>
<td>2015</td>
<td>2015-09-30</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4787807" target="_blank">PMC4787807</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26304538.0" target="_blank">26304538.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv838" target="_blank">10.1093/nar/gkv838</a></td>
<td>pda9knvv</td>
<td>0.425756</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_10.html#kyavg4vu">Masters_1992</a></td>
</tr>
<tr>
<th id="sykkypar";>477</th>
<td>Shukla_2014</td>
<td>Acquisition of new protein domains by coronaviruses: analysis of overlapping genes coding for proteins N and 9b in SARS coronavirus</td>
<td>Shukla, Aditi; Hilgenfeld, Rolf</td>
<td>2014</td>
<td>2014-11-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089080" target="_blank">PMC7089080</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25410051.0" target="_blank">25410051.0</a></td>
<td><a href="https://doi.org/10.1007/s11262-014-1139-8" target="_blank">10.1007/s11262-014-1139-8</a></td>
<td>sykkypar</td>
<td>0.425600</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a></td>
</tr>
<tr>
<th id="qg0fsliy";>478</th>
<td>Pyrc_2004</td>
<td>Genome structure and transcriptional regulation of human coronavirus NL63</td>
<td>Pyrc, Krzysztof; Jebbink, Maarten F; Berkhout, Ben; van der Hoek, Lia</td>
<td>2004</td>
<td>2004-11-17</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC538260" target="_blank">PMC538260</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15548333.0" target="_blank">15548333.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-1-7" target="_blank">10.1186/1743-422x-1-7</a></td>
<td>qg0fsliy</td>
<td>0.425320</td>
<td><a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#vvnhktca">Toshio_1989</a>, <a href="Topic_19.html#7jszm1nd">Salim_2008</a>, <a href="Topic_35.html#1zoizzdp">Wang_2009</a></td>
</tr>
<tr>
<th id="8yvpr8fc";>479</th>
<td>Lomonossoff_2008</td>
<td>Cowpea Mosaic Virus</td>
<td>Lomonossoff, G.P.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149649" target="_blank">PMC7149649</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00562-8" target="_blank">10.1016/b978-012374410-4.00562-8</a></td>
<td>8yvpr8fc</td>
<td>0.425019</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#gqvwiy5h">Modrow_2013</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_12.html#goidlh08">Walker_2011</a></td>
</tr>
<tr>
<th id="wgu5cd0y";>480</th>
<td>Lu_H_2009</td>
<td>Cymbidium mosaic potexvirus isolate-dependent host movement systems reveal two movement control determinants and the coat protein is the dominant</td>
<td>Lu, Hsiang-Chia; Chen, Cheng-En; Tsai, Meng-Hsiun; Wang, Hsiang-iu; Su, Hong-Ji; Yeh, Hsin-Hung</td>
<td>2009</td>
<td>2009-05-25</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7103407" target="_blank">PMC7103407</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19345971.0" target="_blank">19345971.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2009.02.049" target="_blank">10.1016/j.virol.2009.02.049</a></td>
<td>wgu5cd0y</td>
<td>0.424716</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#06qfbvlr">Li_Z_2009</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_09.html#77lqxgmh">Wu_H_2004</a>, <a href="Topic_62.html#t4mwgj8s">Tamborindeguy_2013</a></td>
</tr>
<tr>
<th id="1jgqofbr";>481</th>
<td>Kocherhans_2001</td>
<td>Completion of the Porcine Epidemic Diarrhoea Coronavirus (PEDV) Genome Sequence</td>
<td>Kocherhans, Rolf; Bridgen, Anne; Ackermann, Mathias; Tobler, Kurt</td>
<td>2001</td>
<td>2001-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089135" target="_blank">PMC7089135</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11724265.0" target="_blank">11724265.0</a></td>
<td><a href="https://doi.org/10.1023/a:1011831902219" target="_blank">10.1023/a:1011831902219</a></td>
<td>1jgqofbr</td>
<td>0.424553</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#rqfxe0x1">Zhang_2007</a></td>
</tr>
<tr>
<th id="z04xb7uv";>482</th>
<td>Csibra_2014</td>
<td>Modulation of Stop Codon Read-Through Efficiency and Its Effect on the Replication of Murine Leukemia Virus</td>
<td>Csibra, Eszter; Brierley, Ian; Irigoyen, Nerea</td>
<td>2014</td>
<td>2014-09-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178896" target="_blank">PMC4178896</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24991001.0" target="_blank">24991001.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00898-14" target="_blank">10.1128/jvi.00898-14</a></td>
<td>z04xb7uv</td>
<td>0.424464</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_29.html#pgxzeu2x">Lee_W_2018</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="wt0lvhfl";>483</th>
<td>Wu_T_2009</td>
<td>IRSS: a web-based tool for automatic layout and analysis of IRES secondary structure prediction and searching system in silico</td>
<td>Wu, Tzong-Yuan; Hsieh, Chi-Chun; Hong, Jun-Jie; Chen, Chung-Yung; Tsai, Yuh-Show</td>
<td>2009</td>
<td>2009-05-27</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2698906" target="_blank">PMC2698906</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19473520.0" target="_blank">19473520.0</a></td>
<td><a href="https://doi.org/10.1186/1471-2105-10-160" target="_blank">10.1186/1471-2105-10-160</a></td>
<td>wt0lvhfl</td>
<td>0.424409</td>
<td><a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_37.html#tg06vxza">Cheng_2013</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a></td>
<td><a href="Topic_25.html#7pdh7alh">Hong_2013</a>, <a href="Topic_19.html#ywkxxye5">Fajardo_2012</a>, <a href="Topic_19.html#cciyb05w">Yang_2015</a></td>
</tr>
<tr>
<th id="c1lykari";>484</th>
<td>Irigoyen_2016</td>
<td>High-Resolution Analysis of Coronavirus Gene Expression by RNA Sequencing and Ribosome Profiling</td>
<td>Irigoyen, Nerea; Firth, Andrew E.; Jones, Joshua D.; Chung, Betty Y.-W.; Siddell, Stuart G.; Brierley, Ian</td>
<td>2016</td>
<td>2016-02-26</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4769073" target="_blank">PMC4769073</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26919232.0" target="_blank">26919232.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1005473" target="_blank">10.1371/journal.ppat.1005473</a></td>
<td>c1lykari</td>
<td>0.422578</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_27.html#hxugy10i">Cook_2018</a></td>
</tr>
<tr>
<th id="0dab3c2u";>485</th>
<td>Königs_2020</td>
<td>SRSF7 maintains its homeostasis through the expression of Split-ORFs and nuclear body assembly</td>
<td>Königs, Vanessa; de Oliveira Freitas Machado, Camila; Arnold, Benjamin; Blümel, Nicole; Solovyeva, Anfisa; Löbbert, Sinah; Schafranek, Michal; Ruiz De Los Mozos, Igor; Wittig, Ilka; McNicoll, Francois; Schulz, Marcel H.; Müller-McNicoll, Michaela</td>
<td>2020</td>
<td>2020-03-02</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7096898" target="_blank">PMC7096898</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/32123389.0" target="_blank">32123389.0</a></td>
<td><a href="https://doi.org/10.1038/s41594-020-0385-9" target="_blank">10.1038/s41594-020-0385-9</a></td>
<td>0dab3c2u</td>
<td>0.422487</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#rybce5bj">Abernathy_2015</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_34.html#zcok8ahi">Choudhury_2017</a></td>
</tr>
<tr>
<th id="smmrl5i6";>486</th>
<td>FENNER_1987</td>
<td>CHAPTER 28 Coronaviridae</td>
<td>FENNER, FRANK; BACHMANN, PETER A.; GIBBS, E. PAUL J.; MURPHY, FREDERICK A.; STUDDERT, MICHAEL J.; WHITE, DAVID O.</td>
<td>1987</td>
<td>1987-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149976" target="_blank">PMC7149976</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-253055-5.50032-3" target="_blank">10.1016/b978-0-12-253055-5.50032-3</a></td>
<td>smmrl5i6</td>
<td>0.422116</td>
<td><a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a></td>
<td><a href="Topic_39.html#pa0aecwr">Park_2007</a>, <a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a>, <a href="Topic_06.html#txaoz7oh">Jordan_2018</a></td>
</tr>
<tr>
<th id="13h5aigg";>487</th>
<td>Zhang_2005</td>
<td>De novo RNA synthesis and homology modeling of the classical swine fever virus RNA polymerase</td>
<td>Zhang, Pengwei; Xie, Jian; Yi, Guanghui; Zhang, Chuyu; Zhou, Rong</td>
<td>2005</td>
<td>2005-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126667" target="_blank">PMC7126667</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16022897.0" target="_blank">16022897.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2005.03.003" target="_blank">10.1016/j.virusres.2005.03.003</a></td>
<td>13h5aigg</td>
<td>0.421909</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#yo9libo0">Zhou_2011</a>, <a href="Topic_19.html#jhn81kon">Potisopon_2014</a></td>
</tr>
<tr>
<th id="a0df1fhw";>488</th>
<td>Sasvari_2009</td>
<td>Inhibition of RNA Recruitment and Replication of an RNA Virus by Acridine Derivatives with Known Anti-Prion Activities</td>
<td>Sasvari, Zsuzsanna; Bach, Stéphane; Blondel, Marc; Nagy, Peter D.</td>
<td>2009</td>
<td>2009-10-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2757906" target="_blank">PMC2757906</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19823675.0" target="_blank">19823675.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0007376" target="_blank">10.1371/journal.pone.0007376</a></td>
<td>a0df1fhw</td>
<td>0.421704</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#l5n30kbm">Wilde_2019</a></td>
</tr>
<tr>
<th id="h0bwyerl";>489</th>
<td>Pantopoulos_1994</td>
<td>The Role of the 5′ Untranslated Region of Eukaryotic Messenger RNAs in Translation and Its Investigation Using Antisense Technologies</td>
<td>Pantopoulos, Kostas; Johansson, Hans E.; Hentze, Matthias W.</td>
<td>1994</td>
<td>1994-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7938549.0" target="_blank">7938549.0</a></td>
<td><a href="https://doi.org/10.1016/s0079-6603(08)60856-9" target="_blank">10.1016/s0079-6603(08)60856-9</a></td>
<td>h0bwyerl</td>
<td>0.421037</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#dtnysugh">Somers_2013</a></td>
<td><a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a></td>
</tr>
<tr>
<th id="zojb3cew";>490</th>
<td>Huggett_2007</td>
<td>Influenza A</td>
<td>Huggett, Kathryn D.; Knoop, Floyd C.</td>
<td>2007</td>
<td>2007-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7152446" target="_blank">PMC7152446</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-008055232-3.60922-5" target="_blank">10.1016/b978-008055232-3.60922-5</a></td>
<td>zojb3cew</td>
<td>0.420912</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_40.html#g23yzpkc">Belshan_2014</a>, <a href="Topic_40.html#u8nk63i5">Belshan_2014</a></td>
<td><a href="Topic_40.html#u8nk63i5">Belshan_2014</a></td>
</tr>
<tr>
<th id="u99o8mde";>491</th>
<td>Garcia_2018</td>
<td>Accounting for Programmed Ribosomal Frameshifting in the Computation of Codon Usage Bias Indices</td>
<td>Garcia, Victor; Zoller, Stefan; Anisimova, Maria</td>
<td>2018</td>
<td>2018-08-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6169388" target="_blank">PMC6169388</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30111621.0" target="_blank">30111621.0</a></td>
<td><a href="https://doi.org/10.1534/g3.118.200185" target="_blank">10.1534/g3.118.200185</a></td>
<td>u99o8mde</td>
<td>0.420339</td>
<td><a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_47.html#3mj670c2">Gu_W_2004</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#zwl0safn">Plant_2013</a></td>
<td><a href="Topic_47.html#dabu4ohl">Goz_E_2017</a>, <a href="Topic_47.html#mpb4fy16">Leuven_2020</a>, <a href="Topic_19.html#7elri6u3">Cassan_1990</a></td>
</tr>
<tr>
<th id="vvcpfsj2";>492</th>
<td>Zheng_2010</td>
<td>Recombinant PRRSV expressing porcine circovirus sequence reveals novel aspect of transcriptional control of porcine arterivirus</td>
<td>Zheng, Haihong; Sun, Zhi; Zhu, Xing-Quan; Long, Jinxue; Lu, Jiaqi; Lv, Jian; Yuan, Shishan</td>
<td>2010</td>
<td>2010-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114387" target="_blank">PMC7114387</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19951727.0" target="_blank">19951727.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2009.11.014" target="_blank">10.1016/j.virusres.2009.11.014</a></td>
<td>vvcpfsj2</td>
<td>0.420171</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_14.html#9hkiev61">Song_2011</a></td>
</tr>
<tr>
<th id="salby0fu";>493</th>
<td>Bujarski_2013</td>
<td>Genetic recombination in plant-infecting messenger-sense RNA viruses: overview and research perspectives</td>
<td>Bujarski, Jozef J.</td>
<td>2013</td>
<td>2013-03-26</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607795" target="_blank">PMC3607795</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23533000.0" target="_blank">23533000.0</a></td>
<td><a href="https://doi.org/10.3389/fpls.2013.00068" target="_blank">10.3389/fpls.2013.00068</a></td>
<td>salby0fu</td>
<td>0.419628</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a></td>
</tr>
<tr>
<th id="ahxwa34k";>494</th>
<td>Makino_1984</td>
<td>Analysis of genomic and intracellular viral RNAs of small plaque mutants of mouse hepatitis virus, JHM strain</td>
<td>Makino, Shinji; Taguchi, Fumihiro; Hirano, Norio; Fujiwara, Kosaku</td>
<td>1984</td>
<td>1984-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7119021" target="_blank">PMC7119021</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6093379.0" target="_blank">6093379.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(84)90335-0" target="_blank">10.1016/0042-6822(84)90335-0</a></td>
<td>ahxwa34k</td>
<td>0.418156</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td></td>
</tr>
<tr>
<th id="wkg56xeq";>495</th>
<td>Dye_C_2007</td>
<td>Genomic RNA sequence of feline coronavirus strain FCoV C1Je</td>
<td>Dye, Charlotte; Siddell, Stuart G.</td>
<td>2007</td>
<td>2007-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582377" target="_blank">PMC2582377</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17363313.0" target="_blank">17363313.0</a></td>
<td><a href="https://doi.org/10.1016/j.jfms.2006.12.002" target="_blank">10.1016/j.jfms.2006.12.002</a></td>
<td>wkg56xeq</td>
<td>0.418043</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#tvhbox59">Di_Martino_2009</a></td>
</tr>
<tr>
<th id="b8gi4m3k";>496</th>
<td>Payne_2017</td>
<td>Chapter 17 Family Coronaviridae</td>
<td>Payne, Susan</td>
<td>2017</td>
<td>2017-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149805" target="_blank">PMC7149805</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-803109-4.00017-9" target="_blank">10.1016/b978-0-12-803109-4.00017-9</a></td>
<td>b8gi4m3k</td>
<td>0.417722</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#gqvwiy5h">Modrow_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#r68l7g2e">Gorbalenya_2006</a>, <a href="Topic_19.html#v3yqs4u8">Enjuanes_2008</a>, <a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="gjm9dml1";>497</th>
<td>Meyer_2007</td>
<td>Identification of a novel protein encoded by the latency-related gene of bovine herpesvirus 1</td>
<td>Meyer, Florencia; Perez, Sandra; Jiang, Yunquan; Zhou, You; Henderson, Gail; Jones, Clinton</td>
<td>2007</td>
<td>2007-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7095411" target="_blank">PMC7095411</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18097888.0" target="_blank">18097888.0</a></td>
<td><a href="https://doi.org/10.1080/13550280701620754" target="_blank">10.1080/13550280701620754</a></td>
<td>gjm9dml1</td>
<td>0.417019</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="wncab2qc";>498</th>
<td>Shabman_2013</td>
<td>An Upstream Open Reading Frame Modulates Ebola Virus Polymerase Translation and Virus Replication</td>
<td>Shabman, Reed S.; Hoenen, Thomas; Groseth, Allison; Jabado, Omar; Binning, Jennifer M.; Amarasinghe, Gaya K.; Feldmann, Heinz; Basler, Christopher F.</td>
<td>2013</td>
<td>2013-01-31</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561295" target="_blank">PMC3561295</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23382680.0" target="_blank">23382680.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1003147" target="_blank">10.1371/journal.ppat.1003147</a></td>
<td>wncab2qc</td>
<td>0.416056</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="siscssho";>499</th>
<td>Oh_S_1993</td>
<td>Gene regulation: translational initiation by internal ribosome binding</td>
<td>Oh, Soo-Kyung; Sarnow, Peter</td>
<td>1993</td>
<td>1993-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8504255.0" target="_blank">8504255.0</a></td>
<td><a href="https://doi.org/10.1016/0959-437x(93)90037-p" target="_blank">10.1016/0959-437x(93)90037-p</a></td>
<td>siscssho</td>
<td>0.415868</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_12.html#yozk08w4">Guerrero_2015</a></td>
</tr>
<tr>
<th id="gpz7giuv";>500</th>
<td>Limanskaya_2013</td>
<td>Search for the new potential RNA thermometers in the genome of Salmonella enterica</td>
<td>Limanskaya, O. Yu.; Murtazaeva, L. A.; Limanskii, A. P.</td>
<td>2013</td>
<td>2013-02-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089039" target="_blank">PMC7089039</a></td>
<td></td>
<td><a href="https://doi.org/10.1134/s0026261713010062" target="_blank">10.1134/s0026261713010062</a></td>
<td>gpz7giuv</td>
<td>0.415432</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#7fbzbxa2">Limanskaya_2013</a>, <a href="Topic_19.html#9pkvj14m">Singleton_2018</a></td>
</tr>
<tr>
<th id="mib0dy32";>501</th>
<td>Rakauskaitė_2011</td>
<td>A rapid, inexpensive yeast-based dual-fluorescence assay of programmed—1 ribosomal frameshifting for high-throughput screening</td>
<td>Rakauskaitė, Rasa; Liao, Pei-Yu; Rhodin, Michael H. J.; Lee, Kelvin; Dinman, Jonathan D.</td>
<td>2011</td>
<td>2011-05-20</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3152369" target="_blank">PMC3152369</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21602263.0" target="_blank">21602263.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr382" target="_blank">10.1093/nar/gkr382</a></td>
<td>mib0dy32</td>
<td>0.415045</td>
<td><a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a></td>
<td><a href="Topic_55.html#ul0k95x2">van_der_Linden_2014</a>, <a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="2fcl6f4i";>502</th>
<td>Price_2019</td>
<td>Novel splicing and open reading frames revealed by long-read direct RNA sequencing of adenovirus transcripts</td>
<td>Alexander M. Price; Katharina E. Hayer; Daniel P. Depledge; Angus C. Wilson; Matthew D. Weitzman</td>
<td>2019</td>
<td>2019-12-13</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2019.12.13.876037" target="_blank">10.1101/2019.12.13.876037</a></td>
<td>2fcl6f4i</td>
<td>0.414457</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="uvvstxf6";>503</th>
<td>Rowley_2016</td>
<td>XRN1 Is a Species-Specific Virus Restriction Factor in Yeasts</td>
<td>Rowley, Paul A.; Ho, Brandon; Bushong, Sarah; Johnson, Arlen; Sawyer, Sara L.</td>
<td>2016</td>
<td>2016-10-06</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5053509" target="_blank">PMC5053509</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27711183.0" target="_blank">27711183.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1005890" target="_blank">10.1371/journal.ppat.1005890</a></td>
<td>uvvstxf6</td>
<td>0.414141</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#1znuxoj5">Rowley_2016</a>, <a href="Topic_34.html#p3b4yk5d">Case_2017</a></td>
</tr>
<tr>
<th id="wifkhnkz";>504</th>
<td>Sun_Z_2010</td>
<td>Identification of dispensable nucleotide sequence in 3′ untranslated region of porcine reproductive and respiratory syndrome virus</td>
<td>Sun, Zhi; Liu, Changlong; Tan, Feifei; Gao, Fei; Liu, Ping; Qin, Aijian; Yuan, Shishan</td>
<td>2010</td>
<td>2010-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114379" target="_blank">PMC7114379</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20833212.0" target="_blank">20833212.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2010.08.027" target="_blank">10.1016/j.virusres.2010.08.027</a></td>
<td>wifkhnkz</td>
<td>0.413947</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td><a href="Topic_19.html#7ad7ievj">Gao_F_2012</a></td>
</tr>
<tr>
<th id="4k8f7ou1";>505</th>
<td>Bratlie_2005</td>
<td>Bioinformatic mapping of AlkB homology domains in viruses</td>
<td>Bratlie, Marit S; Drabløs, Finn</td>
<td>2005</td>
<td>2005-01-03</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC544882" target="_blank">PMC544882</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15627404.0" target="_blank">15627404.0</a></td>
<td><a href="https://doi.org/10.1186/1471-2164-6-1" target="_blank">10.1186/1471-2164-6-1</a></td>
<td>4k8f7ou1</td>
<td>0.413670</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_12.html#elmqg45v">Mushegian_2018</a></td>
<td><a href="Topic_55.html#l3qp0n9f">Deng_2019</a>, <a href="Topic_12.html#wrztpeb8">Zhang_2015</a></td>
</tr>
<tr>
<th id="y8xvh6hs";>506</th>
<td>Yamanaka_1998</td>
<td>Nucleotide Sequence of the Inter-Structural Gene Region of Feline Infectious Peritonitis Virus</td>
<td>Yamanaka, Miles; Crisp, Tracey; Brown, Rhonda; Dale, Beverly</td>
<td>1998</td>
<td>1998-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088554" target="_blank">PMC7088554</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9654687.0" target="_blank">9654687.0</a></td>
<td><a href="https://doi.org/10.1023/a:1008099209942" target="_blank">10.1023/a:1008099209942</a></td>
<td>y8xvh6hs</td>
<td>0.413592</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#1jgqofbr">Kocherhans_2001</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_09.html#gmq5zs2d">Liu_S_2008</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#i6vuhaiv">De_Groot_1988</a>, <a href="Topic_62.html#yaw92db7">O'Connor_1999</a></td>
</tr>
<tr>
<th id="f25vti5y";>507</th>
<td>Moustafa_2011</td>
<td>Molecular Dynamics Simulations of Viral RNA Polymerases Link Conserved and Correlated Motions of Functional Elements to Fidelity</td>
<td>Moustafa, Ibrahim M.; Shen, Hujun; Morton, Brandon; Colina, Coray M.; Cameron, Craig E.</td>
<td>2011</td>
<td>2011-07-01</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3114172" target="_blank">PMC3114172</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21575642.0" target="_blank">21575642.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2011.04.078" target="_blank">10.1016/j.jmb.2011.04.078</a></td>
<td>f25vti5y</td>
<td>0.412815</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#p9dl7whd">YU_W_1995</a>, <a href="Topic_19.html#yo9libo0">Zhou_2011</a></td>
</tr>
<tr>
<th id="wtvfow2f";>508</th>
<td>Seemann_2008</td>
<td>Unifying evolutionary and thermodynamic information for RNA folding of multiple alignments</td>
<td>Seemann, Stefan E.; Gorodkin, Jan; Backofen, Rolf</td>
<td>2008</td>
<td>2008-10-04</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582601" target="_blank">PMC2582601</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18836192.0" target="_blank">18836192.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkn544" target="_blank">10.1093/nar/gkn544</a></td>
<td>wtvfow2f</td>
<td>0.412723</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#sgw66xhn">Saw_A_2019</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a>, <a href="Topic_25.html#2lg8i9r1">Dai_Q_2012</a></td>
<td><a href="Topic_19.html#213ly4xo">Fricke_2019</a></td>
</tr>
<tr>
<th id="zqnczjpp";>509</th>
<td>Robertson_1999</td>
<td>Chapter 2 Virus Origins Conjoined RNA Genomes as Precursors to DNA Genomes</td>
<td>Robertson, Hugh D.; Neel, Olivia D.</td>
<td>1999</td>
<td>1999-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7155586" target="_blank">PMC7155586</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012220360-2/50003-9" target="_blank">10.1016/b978-012220360-2/50003-9</a></td>
<td>zqnczjpp</td>
<td>0.412357</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#5ld0o9gv">Adams_2003</a>, <a href="Topic_12.html#f32rcce3">Diaz_2012</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="n46p8acw";>510</th>
<td>Li_D_2019</td>
<td>Conserved microsatellites may contribute to stem-loop structures in 5′, 3′ terminals of Ebolavirus genomes</td>
<td>Li, Douyue; Zhang, Hongxi; Peng, Shan; Pan, Saichao; Tan, Zhongyang</td>
<td>2019</td>
<td>2019-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7092875" target="_blank">PMC7092875</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31078274.0" target="_blank">31078274.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2019.04.192" target="_blank">10.1016/j.bbrc.2019.04.192</a></td>
<td>n46p8acw</td>
<td>0.411648</td>
<td><a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td></td>
</tr>
<tr>
<th id="ehwdg722";>511</th>
<td>Lee_C_2011</td>
<td>The solution structure of coronaviral stem-loop 2 (SL2) reveals a canonical CUYG tetraloop fold</td>
<td>Lee, Chul Won; Li, Lichun; Giedroc, David P.</td>
<td>2011</td>
<td>2011-04-06</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3086565" target="_blank">PMC3086565</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21382373.0" target="_blank">21382373.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2011.03.002" target="_blank">10.1016/j.febslet.2011.03.002</a></td>
<td>ehwdg722</td>
<td>0.411648</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_34.html#tt0n5d57">Brandmann_2015</a>, <a href="Topic_19.html#lorveab5">Li_L_2008</a></td>
</tr>
<tr>
<th id="62vgvjz0";>512</th>
<td>Grossoehme_2009</td>
<td>Coronavirus N Protein N-Terminal Domain (NTD) Specifically Binds the Transcriptional Regulatory Sequence (TRS) and Melts TRS-cTRS RNA Duplexes</td>
<td>Grossoehme, Nicholas E.; Li, Lichun; Keane, Sarah C.; Liu, Pinghua; Dann, Charles E.; Leibowitz, Julian L.; Giedroc, David P.</td>
<td>2009</td>
<td>2009-12-04</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2783395" target="_blank">PMC2783395</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19782089.0" target="_blank">19782089.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2009.09.040" target="_blank">10.1016/j.jmb.2009.09.040</a></td>
<td>62vgvjz0</td>
<td>0.410433</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_10.html#kyavg4vu">Masters_1992</a></td>
</tr>
<tr>
<th id="av4mt6rg";>513</th>
<td>Lehmann_2015</td>
<td>What we know but do not understand about nidovirus helicases</td>
<td>Lehmann, Kathleen C.; Snijder, Eric J.; Posthuma, Clara C.; Gorbalenya, Alexander E.</td>
<td>2015</td>
<td>2015-04-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114383" target="_blank">PMC7114383</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25497126.0" target="_blank">25497126.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2014.12.001" target="_blank">10.1016/j.virusres.2014.12.001</a></td>
<td>av4mt6rg</td>
<td>0.410370</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="s3hval1a";>514</th>
<td>Zhang_1997</td>
<td>Recombinant Genomic RNA of Coronavirus MHV-A59 after Coreplication with a DI RNA Containing the MHV-RI Spike Gene</td>
<td>Zhang, Linong; Homberger, Felix; Spaan, Willy; Luytjes, Willem</td>
<td>1997</td>
<td>1997-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130785" target="_blank">PMC7130785</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9126265.0" target="_blank">9126265.0</a></td>
<td><a href="https://doi.org/10.1006/viro.1997.8460" target="_blank">10.1006/viro.1997.8460</a></td>
<td>s3hval1a</td>
<td>0.410110</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="ljz7rfny";>515</th>
<td>Kim_H_2019</td>
<td>RNA-dependent RNA polymerase speed and fidelity are not the only determinants of the mechanism or efficiency of recombination</td>
<td>Hyejeong Kim; Victor D. Ellis; Andrew Woodman; Yan Zhao; Jamie J. Arnold; Craig E. Cameron</td>
<td>2019</td>
<td>2019-09-14</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/769224" target="_blank">10.1101/769224</a></td>
<td>ljz7rfny</td>
<td>0.409841</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#vbmkasx2">Kim_H_2019</a></td>
</tr>
<tr>
<th id="9aaxxh07";>516</th>
<td>Marquez-Jurado_2015</td>
<td>Identification of a Gamma Interferon-Activated Inhibitor of Translation-Like RNA Motif at the 3′ End of the Transmissible Gastroenteritis Coronavirus Genome Modulating Innate Immune Response</td>
<td>Marquez-Jurado, Silvia; Nogales, Aitor; Zuñiga, Sonia; Enjuanes, Luis; Almazán, Fernando</td>
<td>2015</td>
<td>2015-03-10</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4453530" target="_blank">PMC4453530</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25759500.0" target="_blank">25759500.0</a></td>
<td><a href="https://doi.org/10.1128/mbio.00105-15" target="_blank">10.1128/mbio.00105-15</a></td>
<td>9aaxxh07</td>
<td>0.409650</td>
<td><a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="ulwo6i38";>517</th>
<td>Zirkel_2011</td>
<td>An Insect Nidovirus Emerging from a Primary Tropical Rainforest</td>
<td>Zirkel, Florian; Kurth, Andreas; Quan, Phenix-Lan; Briese, Thomas; Ellerbrok, Heinz; Pauli, Georg; Leendertz, Fabian H.; Lipkin, W. Ian; Ziebuhr, John; Drosten, Christian; Junglen, Sandra</td>
<td>2011</td>
<td>2011-06-14</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111606" target="_blank">PMC3111606</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21673192.0" target="_blank">21673192.0</a></td>
<td><a href="https://doi.org/10.1128/mbio.00077-11" target="_blank">10.1128/mbio.00077-11</a></td>
<td>ulwo6i38</td>
<td>0.409120</td>
<td><a href="Topic_19.html#n46p8acw">Li_D_2019</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_37.html#i2ppvsh5">Dolja_2006</a></td>
<td><a href="Topic_30.html#ts91ivwf">Becker_2019</a>, <a href="Topic_30.html#x9bxnrtn">Wu_Z_2018</a></td>
</tr>
<tr>
<th id="kfmbo6gz";>518</th>
<td>Lili_1992</td>
<td>Lactate dehydrogenase-elevating virus (LDV): subgenomic mRNAs, mRNA leader and comparison of 3'-terminal sequences of two LDV isolates</td>
<td>Lili, Kuo; Zongyu, Chen; Rowland, Raymond R.R.; Faaberg, Kay S.; Plagemann, Peter G.W.</td>
<td>1992</td>
<td>1992-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133880" target="_blank">PMC7133880</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1604932.0" target="_blank">1604932.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(92)90067-j" target="_blank">10.1016/0168-1702(92)90067-j</a></td>
<td>kfmbo6gz</td>
<td>0.408209</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#ia04jc9j">Rott_1991</a></td>
<td><a href="Topic_19.html#5rovh1xf">Godeny_1990</a>, <a href="Topic_10.html#c8qcjve9">Faaberg_1996</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="1lojd0xa";>519</th>
<td>Gao_J_2010</td>
<td>Inverse folding of RNA pseudoknot structures</td>
<td>Gao, James ZM; Li, Linda YM; Reidys, Christian M</td>
<td>2010</td>
<td>2010-06-23</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2909241" target="_blank">PMC2909241</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20573197.0" target="_blank">20573197.0</a></td>
<td><a href="https://doi.org/10.1186/1748-7188-5-27" target="_blank">10.1186/1748-7188-5-27</a></td>
<td>1lojd0xa</td>
<td>0.407500</td>
<td><a href="Topic_25.html#9zm4per4">Dawson_2007</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_19.html#a5htfx76">Dost_2006</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a></td>
<td><a href="Topic_19.html#2fkghukw">Guo_Y_2013</a></td>
</tr>
<tr>
<th id="pz5hj1r9";>520</th>
<td>Okuno_2013</td>
<td>Chapter Two Molecular Biology and Epidemiology of Dianthoviruses</td>
<td>Okuno, Tetsuro; Hiruki, Chuji</td>
<td>2013</td>
<td>2013-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150339" target="_blank">PMC7150339</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23809920.0" target="_blank">23809920.0</a></td>
<td><a href="https://doi.org/10.1016/b978-0-12-407698-3.00002-8" target="_blank">10.1016/b978-0-12-407698-3.00002-8</a></td>
<td>pz5hj1r9</td>
<td>0.407143</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_10.html#waho38j5">Bhat_2011</a></td>
</tr>
<tr>
<th id="lfx2a3qi";>521</th>
<td>Cheley_1981</td>
<td>Intracellular murine hepatitis virus-specific RNAs contain common sequences</td>
<td>Cheley, Steve; Anderson, Robert; Cupples, Margaret J.; Lee Chan, Edwin C.M.; Morris, Vincent L.</td>
<td>1981</td>
<td>1981-07-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131256" target="_blank">PMC7131256</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6114592.0" target="_blank">6114592.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(81)90305-6" target="_blank">10.1016/0042-6822(81)90305-6</a></td>
<td>lfx2a3qi</td>
<td>0.407143</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="3tpyj04y";>522</th>
<td>Liu_D_1992</td>
<td>Identification of two new polypeptides encoded by mRNA5 of the coronavirus infectious bronchitis virus</td>
<td>Liu, D.X.; Inglis, S.C.</td>
<td>1992</td>
<td>1992-01-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130825" target="_blank">PMC7130825</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1309280.0" target="_blank">1309280.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90094-6" target="_blank">10.1016/0042-6822(92)90094-6</a></td>
<td>3tpyj04y</td>
<td>0.406771</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_14.html#fe8a2bnc">Shen_2005</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="7gm92gau";>523</th>
<td>Rangan_2020</td>
<td>De novo 3D models of SARS-CoV-2 RNA elements and small-molecule-binding RNAs to guide drug discovery</td>
<td>Ramya Rangan; Andrew M. Watkins; Wipapat Kladwang; Rhiju Das</td>
<td>2020</td>
<td>2020-04-15</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.14.041962" target="_blank">10.1101/2020.04.14.041962</a></td>
<td>7gm92gau</td>
<td>0.403800</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a></td>
<td></td>
</tr>
<tr>
<th id="kpnpb0fp";>524</th>
<td>Meier_2006</td>
<td>The Crystal Structure of ORF-9b, a Lipid Binding Protein from the SARS Coronavirus</td>
<td>Meier, Christoph; Aricescu, A. Radu; Assenberg, Rene; Aplin, Robin T.; Gilbert, Robert J.C.; Grimes, Jonathan M.; Stuart, David I.</td>
<td>2006</td>
<td>2006-07-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126280" target="_blank">PMC7126280</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16843897.0" target="_blank">16843897.0</a></td>
<td><a href="https://doi.org/10.1016/j.str.2006.05.012" target="_blank">10.1016/j.str.2006.05.012</a></td>
<td>kpnpb0fp</td>
<td>0.402714</td>
<td><a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td></td>
</tr>
<tr>
<th id="6sjhbrb1";>525</th>
<td>Fang_2016</td>
<td>Identification and subcellular localization of porcine deltacoronavirus accessory protein NS6</td>
<td>Fang, Puxian; Fang, Liurong; Liu, Xiaorong; Hong, Yingying; Wang, Yongle; Dong, Nan; Ma, Panpan; Bi, Jing; Wang, Dang; Xiao, Shaobo</td>
<td>2016</td>
<td>2016-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111631" target="_blank">PMC7111631</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27661736.0" target="_blank">27661736.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2016.09.015" target="_blank">10.1016/j.virol.2016.09.015</a></td>
<td>6sjhbrb1</td>
<td>0.402574</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#1cy15tny">Li_C_2013</a></td>
<td></td>
</tr>
<tr>
<th id="sl5zy8nj";>526</th>
<td>Gomaa_2008</td>
<td>Complete genomic sequence of turkey coronavirus</td>
<td>Gomaa, M.H.; Barta, J.R.; Ojkic, D.; Yoo, D.</td>
<td>2008</td>
<td>2008-08-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114504" target="_blank">PMC7114504</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18468711.0" target="_blank">18468711.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2008.03.020" target="_blank">10.1016/j.virusres.2008.03.020</a></td>
<td>sl5zy8nj</td>
<td>0.401891</td>
<td><a href="Topic_19.html#y8xvh6hs">Yamanaka_1998</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#1jgqofbr">Kocherhans_2001</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#i6vuhaiv">De_Groot_1988</a>, <a href="Topic_19.html#rqfxe0x1">Zhang_2007</a></td>
</tr>
<tr>
<th id="avq3zwmc";>527</th>
<td>Lulla_2019</td>
<td>A hidden gene in astroviruses encodes a cell-permeabilizing protein involved in virus release</td>
<td>Valeria Lulla; Andrew E. Firth</td>
<td>2019</td>
<td>2019-06-06</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/661579" target="_blank">10.1101/661579</a></td>
<td>avq3zwmc</td>
<td>0.401698</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="9yh8y9ac";>528</th>
<td>Ahn_D_2011</td>
<td>Interference of ribosomal frameshifting by antisense peptide nucleic acids suppresses SARS coronavirus replication</td>
<td>Ahn, Dae-Gyun; Lee, Wooseong; Choi, Jin-Kyu; Kim, Seong-Jun; Plant, Ewan P.; Almazán, Fernando; Taylor, Deborah R.; Enjuanes, Luis; Oh, Jong-Won</td>
<td>2011</td>
<td>2011-07-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4728714" target="_blank">PMC4728714</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21549154.0" target="_blank">21549154.0</a></td>
<td><a href="https://doi.org/10.1016/j.antiviral.2011.04.009" target="_blank">10.1016/j.antiviral.2011.04.009</a></td>
<td>9yh8y9ac</td>
<td>0.401698</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ee7lhyzr";>529</th>
<td>Zhang_2011</td>
<td>Spliced Leader RNAs, Mitochondrial Gene Frameshifts and Multi-Protein Phylogeny Expand Support for the Genus Perkinsus as a Unique Group of Alveolates</td>
<td>Zhang, Huan; Campbell, David A.; Sturm, Nancy R.; Dungan, Christopher F.; Lin, Senjie</td>
<td>2011</td>
<td>2011-05-24</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3101222" target="_blank">PMC3101222</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21629701.0" target="_blank">21629701.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0019933" target="_blank">10.1371/journal.pone.0019933</a></td>
<td>ee7lhyzr</td>
<td>0.401590</td>
<td><a href="Topic_47.html#3odqx06m">Jiang_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#n46p8acw">Li_D_2019</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#5q8tvowp">Milhausen_1984</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="7jszm1nd";>530</th>
<td>Salim_2008</td>
<td>Functional Analysis of the 5′ Genomic Sequence of a Bovine Norovirus</td>
<td>Salim, Omar; Clarke, Ian N.; Lambden, Paul R.</td>
<td>2008</td>
<td>2008-05-14</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2364642" target="_blank">PMC2364642</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18478070.0" target="_blank">18478070.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0002169" target="_blank">10.1371/journal.pone.0002169</a></td>
<td>7jszm1nd</td>
<td>0.401300</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="4ju3x2bf";>531</th>
<td>Harrington_2019</td>
<td>Cotranslational Folding Stimulates Programmed Ribosomal Frameshifting in the Alphavirus Structural Polyprotein</td>
<td>Haley R. Harrington; Matthew H. Zimmer; Laura M. Chamness; Veronica Nash; Wesley D. Penn; Thomas F. Miller; Suchetana Mukhopadhyay; Jonathan P. Schlebach</td>
<td>2019</td>
<td>2019-10-02</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/790444" target="_blank">10.1101/790444</a></td>
<td>4ju3x2bf</td>
<td>0.400396</td>
<td><a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_10.html#ov1f1uyt">Ivarsson_2012</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td></td>
</tr>
<tr>
<th id="apbs2ltb";>532</th>
<td>Espinosa-Hernández_2014</td>
<td>PTB Binds to the 3’ Untranslated Region of the Human Astrovirus Type 8: A Possible Role in Viral Replication</td>
<td>Espinosa-Hernández, Wendy; Velez-Uriza, Dora; Valdés, Jesús; Vélez-Del Valle, Cristina; Salas-Benito, Juan; Martínez-Contreras, Rebeca; García-Espítia, Matilde; Salas-Benito, Mariana; Vega-Almeida, Tania; De Nova-Ocampo, Mónica</td>
<td>2014</td>
<td>2014-11-18</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4236132" target="_blank">PMC4236132</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25406089.0" target="_blank">25406089.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0113113" target="_blank">10.1371/journal.pone.0113113</a></td>
<td>apbs2ltb</td>
<td>0.400330</td>
<td><a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a></td>
</tr>
<tr>
<th id="hj2b1wc4";>533</th>
<td>Decroly_2017</td>
<td>Biochemical principles and inhibitors to interfere with viral capping pathways</td>
<td>Decroly, Etienne; Canard, Bruno</td>
<td>2017</td>
<td>2017-06-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28527860.0" target="_blank">28527860.0</a></td>
<td><a href="https://doi.org/10.1016/j.coviro.2017.04.003" target="_blank">10.1016/j.coviro.2017.04.003</a></td>
<td>hj2b1wc4</td>
<td>0.398463</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_12.html#vplm0lpq">Chemudupati_2019</a>, <a href="Topic_19.html#a0df1fhw">Sasvari_2009</a>, <a href="Topic_19.html#eljk918r">Chen_2016</a></td>
</tr>
<tr>
<th id="m6bk5li8";>534</th>
<td>Meyers_1991</td>
<td>Viral cytopathogenicity correlated with integration of ubiquitin-coding sequences</td>
<td>Meyers, Gregor; Tautz, Norbert; Dubovi, Edward J.; Thiel, Heinz-Jürgen</td>
<td>1991</td>
<td>1991-02-28</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1846490.0" target="_blank">1846490.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90074-l" target="_blank">10.1016/0042-6822(91)90074-l</a></td>
<td>m6bk5li8</td>
<td>0.398069</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td></td>
</tr>
<tr>
<th id="35xqgbut";>535</th>
<td>Bhullar_2014</td>
<td>Cytoplasmic Translocation of Polypyrimidine Tract-Binding Protein and Its Binding to Viral RNA during Japanese Encephalitis Virus Infection Inhibits Virus Replication</td>
<td>Bhullar, Deepika; Jalodia, Richa; Kalia, Manjula; Vrati, Sudhanshu</td>
<td>2014</td>
<td>2014-12-29</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4278868" target="_blank">PMC4278868</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25545659.0" target="_blank">25545659.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0114931" target="_blank">10.1371/journal.pone.0114931</a></td>
<td>35xqgbut</td>
<td>0.398008</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="06qfbvlr";>536</th>
<td>Li_Z_2009</td>
<td>Translation Elongation Factor 1A is a component of the tombusvirus replicase complex and affects the stability of the p33 replication co-factor</td>
<td>Li, Zhenghe; Pogany, Judit; Panavas, Tadas; Xu, Kai; Esposito, Anthony M.; Kinzy, Terri Gross; Nagy, Peter D.</td>
<td>2009</td>
<td>2009-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2785496" target="_blank">PMC2785496</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19131084.0" target="_blank">19131084.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2008.11.041" target="_blank">10.1016/j.virol.2008.11.041</a></td>
<td>06qfbvlr</td>
<td>0.397822</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a></td>
</tr>
<tr>
<th id="tqx420oa";>537</th>
<td>Goldsmith_2016</td>
<td>Selective Preference of Parallel DNA Triplexes Is Due to the Disruption of Hoogsteen Hydrogen Bonds Caused by the Severe Nonisostericity between the G*GC and T*AT Triplets</td>
<td>Goldsmith, Gunaseelan; Rathinavelan, Thenmalarchelvi; Yathindra, Narayanarao</td>
<td>2016</td>
<td>2016-03-24</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807104" target="_blank">PMC4807104</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27010368.0" target="_blank">27010368.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0152102" target="_blank">10.1371/journal.pone.0152102</a></td>
<td>tqx420oa</td>
<td>0.397752</td>
<td><a href="Topic_19.html#sztzrx1l">Kierzek_2006</a>, <a href="Topic_10.html#5figm2h5">Fernando_2008</a>, <a href="Topic_47.html#bbvxu8op">Karaman_2005</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#1m9s5bus">Brierley_1991</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_55.html#rzw8hwzw">Rao_T_2018</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="f9otvby6";>538</th>
<td>Boursnell_1984</td>
<td>Sequence of the membrane protein gene from avian coronavirus IBV</td>
<td>Boursnell, M.E.G.; Brown, T.D.K.; Binns, M.M.</td>
<td>1984</td>
<td>1984-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134033" target="_blank">PMC7134033</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/6099661.0" target="_blank">6099661.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(84)90019-4" target="_blank">10.1016/0168-1702(84)90019-4</a></td>
<td>f9otvby6</td>
<td>0.396860</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_10.html#a7y4qh8k">Raabe_1989</a>, <a href="Topic_09.html#cefl4zot">Ling_1995</a></td>
</tr>
<tr>
<th id="p1i7bx94";>539</th>
<td>Zhang_2013</td>
<td>Enhancement of accuracy and efficiency for RNA secondary structure prediction by sequence segmentation and MapReduce</td>
<td>Zhang, Boyu; Yehdego, Daniel T; Johnson, Kyle L; Leung, Ming-Ying; Taufer, Michela</td>
<td>2013</td>
<td>2013-11-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3952952" target="_blank">PMC3952952</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24564983.0" target="_blank">24564983.0</a></td>
<td><a href="https://doi.org/10.1186/1472-6807-13-s1-s3" target="_blank">10.1186/1472-6807-13-s1-s3</a></td>
<td>p1i7bx94</td>
<td>0.396540</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#sgw66xhn">Saw_A_2019</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a>, <a href="Topic_25.html#2lg8i9r1">Dai_Q_2012</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a></td>
<td><a href="Topic_25.html#bhtl73z9">Suresh_2015</a>, <a href="Topic_10.html#7cwp2xbw">Yamasaki_2019</a>, <a href="Topic_19.html#tv8hi2wy">Low_J_2010</a>, <a href="Topic_25.html#iuglkdcp">Sperschneider_2012</a></td>
</tr>
<tr>
<th id="rwqxl2yj";>540</th>
<td>Pong_2011</td>
<td>RNA binding property and RNA chaperone activity of dengue virus core protein and other viral RNA-interacting proteins</td>
<td>Pong, Wen-Li; Huang, Zhi-Shun; Teoh, Pak-Guan; Wang, Chung-Chun; Wu, Huey-Nan</td>
<td>2011</td>
<td>2011-08-19</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7164067" target="_blank">PMC7164067</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21771593.0" target="_blank">21771593.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2011.06.038" target="_blank">10.1016/j.febslet.2011.06.038</a></td>
<td>rwqxl2yj</td>
<td>0.393026</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td></td>
</tr>
<tr>
<th id="moljceje";>541</th>
<td>Hoet_2008</td>
<td>Torovirus</td>
<td>Hoet, A.E.; Horzinek, M.C.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7148633" target="_blank">PMC7148633</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00516-1" target="_blank">10.1016/b978-012374410-4.00516-1</a></td>
<td>moljceje</td>
<td>0.392956</td>
<td><a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_56.html#2qj2rrgd">Lvov_2015</a>, <a href="Topic_30.html#8ui0bpfd">Wang_2015</a></td>
<td><a href="Topic_19.html#jlnv90vn">Stewart_2018</a>, <a href="Topic_19.html#bvvjdnp7">Draker_2006</a>, <a href="Topic_19.html#mozfm5ds">Stewart_2018</a>, <a href="Topic_09.html#pbcr81qm">Pignatelli_2009</a></td>
</tr>
<tr>
<th id="999kewdw";>542</th>
<td>Leibowitz_1981</td>
<td>The virus-specific intracellular RNA species of two murine coronaviruses: MHV-A59 and MHV-JHM</td>
<td>Leibowitz, Julian L.; Wilhelmsen, Kirk C.; Bond, Clifford W.</td>
<td>1981</td>
<td>1981-10-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131044" target="_blank">PMC7131044</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7281517.0" target="_blank">7281517.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(81)90250-6" target="_blank">10.1016/0042-6822(81)90250-6</a></td>
<td>999kewdw</td>
<td>0.392685</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#w8vy5rl8">Mizutani_2000</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#ztmrrii3">Baric_1985</a></td>
</tr>
<tr>
<th id="hm8d42fq";>543</th>
<td>Gutiérrez-Escolano_2003</td>
<td>La, PTB, and PAB proteins bind to the 3′ untranslated region of Norwalk virus genomic RNA</td>
<td>Gutiérrez-Escolano, Ana Lorena; Vázquez-Ochoa, Melina; Escobar-Herrera, Jaime; Hernández-Acosta, Javier</td>
<td>2003</td>
<td>2003-11-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7111188" target="_blank">PMC7111188</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/14623338.0" target="_blank">14623338.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2003.10.066" target="_blank">10.1016/j.bbrc.2003.10.066</a></td>
<td>hm8d42fq</td>
<td>0.391836</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a></td>
<td></td>
</tr>
<tr>
<th id="8xob5edz";>544</th>
<td>Belew_2015</td>
<td>Cell cycle control (and more) by programmed −1 ribosomal frameshifting: implications for disease and therapeutics</td>
<td>Belew, Ashton T; Dinman, Jonathan D</td>
<td>2015</td>
<td>2015-01-13</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4615106" target="_blank">PMC4615106</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25584829.0" target="_blank">25584829.0</a></td>
<td><a href="https://doi.org/10.4161/15384101.2014.989123" target="_blank">10.4161/15384101.2014.989123</a></td>
<td>8xob5edz</td>
<td>0.390244</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_35.html#jcfe36u6">Atianand_2014</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#dkwcheu0">Abernathy_2015</a></td>
<td><a href="Topic_12.html#vplm0lpq">Chemudupati_2019</a></td>
</tr>
<tr>
<th id="syu4nnf7";>545</th>
<td>Furuichi_2000</td>
<td>Viral and cellular mRNA capping: Past and prospects</td>
<td>Furuichi, Yasuhiro; Shatkin, Aaron J</td>
<td>2000</td>
<td>2000-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11050942.0" target="_blank">11050942.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(00)55003-9" target="_blank">10.1016/s0065-3527(00)55003-9</a></td>
<td>syu4nnf7</td>
<td>0.390244</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a></td>
<td><a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_19.html#eljk918r">Chen_2016</a></td>
</tr>
<tr>
<th id="m1ujexeb";>546</th>
<td>Ren_W_2013</td>
<td>Complete genome sequence of acute viral necrosis virus associated with massive mortality outbreaks in the Chinese scallop, Chlamys farreri</td>
<td>Ren, Weicheng; Chen, Haixia; Renault, Tristan; Cai, Yuyong; Bai, Changming; Wang, Chongming; Huang, Jie</td>
<td>2013</td>
<td>2013-04-08</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3623871" target="_blank">PMC3623871</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23566284.0" target="_blank">23566284.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-10-110" target="_blank">10.1186/1743-422x-10-110</a></td>
<td>m1ujexeb</td>
<td>0.389276</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#ia04jc9j">Rott_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#5rovh1xf">Godeny_1990</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="mr1orklo";>547</th>
<td>Adedeji_2016</td>
<td>Biochemical Characterization of Middle East Respiratory Syndrome Coronavirus Helicase</td>
<td>Adedeji, Adeyemi O.; Lazarus, Hilary</td>
<td>2016</td>
<td>2016-09-07</td>
<td>COMM-USE</td>
<td>Y</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014916" target="_blank">PMC5014916</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27631026.0" target="_blank">27631026.0</a></td>
<td><a href="https://doi.org/10.1128/msphere.00235-16" target="_blank">10.1128/msphere.00235-16</a></td>
<td>mr1orklo</td>
<td>0.389160</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td></td>
</tr>
<tr>
<th id="3ain627u";>548</th>
<td>González_2003</td>
<td>A comparative sequence analysis to revise the current taxonomy of the family Coronaviridae</td>
<td>González, J. M.; Gomez-Puertas, P.; Cavanagh, D.; Gorbalenya, A. E.; Enjuanes, Luis</td>
<td>2003</td>
<td>2003-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087110" target="_blank">PMC7087110</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/14579179.0" target="_blank">14579179.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-003-0162-1" target="_blank">10.1007/s00705-003-0162-1</a></td>
<td>3ain627u</td>
<td>0.389115</td>
<td><a href="Topic_09.html#kxjomk2s">Chieochansin_2010</a>, <a href="Topic_25.html#g6obo798">Zheng_2008</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_37.html#i2ppvsh5">Dolja_2006</a></td>
<td><a href="Topic_09.html#v38tjof3">Fahmi_2020</a>, <a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a></td>
</tr>
<tr>
<th id="xuxlw4c0";>549</th>
<td>Kolchanov_1996</td>
<td>Chemical and Computer Probing of RNA Structure 1</td>
<td>Kolchanov, N.A.; Titov, I.I.; Vlassova, I.E.; Vlassov, V.V.</td>
<td>1996</td>
<td>1996-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8650302.0" target="_blank">8650302.0</a></td>
<td><a href="https://doi.org/10.1016/s0079-6603(08)60144-0" target="_blank">10.1016/s0079-6603(08)60144-0</a></td>
<td>xuxlw4c0</td>
<td>0.387974</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a></td>
<td><a href="Topic_55.html#0a3okta0">Myllykoski_2017</a>, <a href="Topic_19.html#sz2531mv">Byszewska_2015</a></td>
</tr>
<tr>
<th id="6r7d5n3l";>550</th>
<td>Hedges_1996</td>
<td>Genetic variation in open reading frame 2 of field isolates and laboratory strains of equine arteritis virus</td>
<td>Hedges, Jodi F.; Balasuriya, Udeni B.R.; Timoney, Peter J.; McCollum, William H.; MacLachlan, N.James</td>
<td>1996</td>
<td>1996-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133956" target="_blank">PMC7133956</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8806173.0" target="_blank">8806173.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(96)01294-4" target="_blank">10.1016/0168-1702(96)01294-4</a></td>
<td>6r7d5n3l</td>
<td>0.387620</td>
<td><a href="Topic_42.html#3kl1ftlg">Si_F_2020</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="2l4xxu3v";>551</th>
<td>Wu_H_2003</td>
<td>Common RNA replication signals exist among group 2 coronaviruses: evidence for in vivo recombination between animal and human coronavius molecules</td>
<td>Wu, Hung-Yi; Guy, James S; Yoo, Dongwan; Vlasak, Reinhard; Urbach, Ena; Brian, David A</td>
<td>2003</td>
<td>2003-10-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126556" target="_blank">PMC7126556</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/14592769.0" target="_blank">14592769.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(03)00511-7" target="_blank">10.1016/s0042-6822(03)00511-7</a></td>
<td>2l4xxu3v</td>
<td>0.386249</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#gqrsogqf">Kazakov_2015</a></td>
</tr>
<tr>
<th id="bifebnwt";>552</th>
<td>Qin_J_2014</td>
<td>Graph-distance distribution of the Boltzmann ensemble of RNA secondary structures</td>
<td>Qin, Jing; Fricke, Markus; Marz, Manja; Stadler, Peter F; Backofen, Rolf</td>
<td>2014</td>
<td>2014-09-11</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4181469" target="_blank">PMC4181469</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25285153.0" target="_blank">25285153.0</a></td>
<td><a href="https://doi.org/10.1186/1748-7188-9-19" target="_blank">10.1186/1748-7188-9-19</a></td>
<td>bifebnwt</td>
<td>0.386061</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a>, <a href="Topic_01.html#h6r6qdna">Polverino_2017</a>, <a href="Topic_10.html#qrnhp1ek">Kirillova_2009</a>, <a href="Topic_25.html#9zm4per4">Dawson_2007</a></td>
<td><a href="Topic_19.html#p46abodr">Backofen_2013</a>, <a href="Topic_19.html#7jdh882a">Borodavka_2016</a>, <a href="Topic_12.html#1u96c10x">Gupta_2019</a>, <a href="Topic_19.html#213ly4xo">Fricke_2019</a></td>
</tr>
<tr>
<th id="qrg1rtzi";>553</th>
<td>UNKNOWN_1991</td>
<td>Isolation, characterization, and expression of cDNAs encoding murine alpha-mannosidase II, a Golgi enzyme that controls conversion of high mannose to complex N-glycans</td>
<td>None</td>
<td>1991</td>
<td>1991-12-02</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2289207" target="_blank">PMC2289207</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1757461.0" target="_blank">1757461.0</a></td>
<td></td>
<td>qrg1rtzi</td>
<td>0.385603</td>
<td><a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_73.html#377v2ufn">UNKNOWN_1993</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a></td>
<td><a href="Topic_10.html#c8qcjve9">Faaberg_1996</a>, <a href="Topic_73.html#tedj3xxz">UNKNOWN_1995</a></td>
</tr>
<tr>
<th id="eljk918r";>554</th>
<td>Chen_2016</td>
<td>Molecular mechanisms of coronavirus RNA capping and methylation</td>
<td>Chen, Yu; Guo, Deyin</td>
<td>2016</td>
<td>2016-02-02</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7091378" target="_blank">PMC7091378</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26847650.0" target="_blank">26847650.0</a></td>
<td><a href="https://doi.org/10.1007/s12250-016-3726-4" target="_blank">10.1007/s12250-016-3726-4</a></td>
<td>eljk918r</td>
<td>0.385148</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_55.html#4bripmvh">Bouvet_2010</a>, <a href="Topic_19.html#sz2531mv">Byszewska_2015</a></td>
</tr>
<tr>
<th id="7elri6u3";>555</th>
<td>Cassan_1990</td>
<td>Expression vectors for quatitating in vivo translational ambiguity: Their potential use to analyse frameshifting at the HIV gag-pol junction</td>
<td>Cassan, M.; Berteaux, V.; Angrand, P.-O.; Rousset, J.-P.</td>
<td>1990</td>
<td>1990-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7135639" target="_blank">PMC7135639</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2087598.0" target="_blank">2087598.0</a></td>
<td><a href="https://doi.org/10.1016/0923-2516(90)90033-f" target="_blank">10.1016/0923-2516(90)90033-f</a></td>
<td>7elri6u3</td>
<td>0.385030</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_35.html#dkn3z77f">Brake_2008</a>, <a href="Topic_19.html#qtn3ukf4">Gendron_2010</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a></td>
</tr>
<tr>
<th id="86ptuyn8";>556</th>
<td>Majerciak_2018</td>
<td>Detection of Viral RNA Splicing in Diagnostic Virology</td>
<td>Majerciak, Vladimir; Zheng, Zhi-Ming</td>
<td>2018</td>
<td>2018-11-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121103" target="_blank">PMC7121103</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-3-319-95111-9_15" target="_blank">10.1007/978-3-319-95111-9_15</a></td>
<td>86ptuyn8</td>
<td>0.384902</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_21.html#mtk3qxue">Zambenedetti_2017</a></td>
</tr>
<tr>
<th id="tzn5y0z2";>557</th>
<td>Baranov_2009</td>
<td>Sequences Promoting Recoding Are Singular Genomic Elements</td>
<td>Baranov, Pavel V.; Gurvich, Olga</td>
<td>2009</td>
<td>2009-07-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122551" target="_blank">PMC7122551</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-0-387-89382-2_14" target="_blank">10.1007/978-0-387-89382-2_14</a></td>
<td>tzn5y0z2</td>
<td>0.384140</td>
<td><a href="Topic_37.html#tiyjmih7">Francis_2016</a>, <a href="Topic_19.html#n46p8acw">Li_D_2019</a>, <a href="Topic_37.html#sd81bz0m">Gardner_2004</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a></td>
<td><a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_10.html#eri1nk2i">Narra_2008</a>, <a href="Topic_19.html#2u49b7xo">Firth_2011</a></td>
</tr>
<tr>
<th id="2wuc5yiu";>558</th>
<td>Brierley_2006</td>
<td>Programmed ribosomal frameshifting in HIV-1 and the SARS–CoV</td>
<td>Brierley, Ian; Dos Ramos, Francisco J.</td>
<td>2006</td>
<td>2006-07-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114087" target="_blank">PMC7114087</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16310880.0" target="_blank">16310880.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2005.10.008" target="_blank">10.1016/j.virusres.2005.10.008</a></td>
<td>2wuc5yiu</td>
<td>0.384140</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_06.html#wwaa6ls0">Potgieter_1986</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_34.html#p3b4yk5d">Case_2017</a></td>
</tr>
<tr>
<th id="6ghod65y";>559</th>
<td>Galán_2009</td>
<td>Host cell proteins interacting with the 3′ end of TGEV coronavirus genome influence virus replication</td>
<td>Galán, Carmen; Sola, Isabel; Nogales, Aitor; Thomas, Benjamin; Akoulitchev, Alexandre; Enjuanes, Luis; Almazán, Fernando</td>
<td>2009</td>
<td>2009-09-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7118768" target="_blank">PMC7118768</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19580983.0" target="_blank">19580983.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2009.06.006" target="_blank">10.1016/j.virol.2009.06.006</a></td>
<td>6ghod65y</td>
<td>0.382637</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="59emvigh";>560</th>
<td>Ryu_W_2017</td>
<td>Chapter 16 Other Negative-Strand RNA Viruses</td>
<td>Ryu, Wang-Shick</td>
<td>2017</td>
<td>2017-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150163" target="_blank">PMC7150163</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-800838-6.00016-3" target="_blank">10.1016/b978-0-12-800838-6.00016-3</a></td>
<td>59emvigh</td>
<td>0.380356</td>
<td><a href="Topic_68.html#uee3lqrx">Davaro_2013</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="d3q0xel1";>561</th>
<td>Bartas_2020</td>
<td>In-depth Bioinformatic Analyses of Human SARS-CoV-2, SARS-CoV, MERS-CoV, and Other Nidovirales Suggest Important Roles of Noncanonical Nucleic Acid Structures in Their Lifecycles</td>
<td>Martin Bartas; Václav Brázda; Natália Bohálová; Alessio Cantara; Adriana Volná; Tereza Stachurová; Kateřina Malachová; Eva B. Jagelská; Otília Porubiaková; Jiří Červeň; Petr Pečinka</td>
<td>2020</td>
<td>2020-04-11</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.09.031252" target="_blank">10.1101/2020.04.09.031252</a></td>
<td>d3q0xel1</td>
<td>0.379107</td>
<td><a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a>, <a href="Topic_35.html#0q6zt0ux">Han_M_2008</a>, <a href="Topic_56.html#92pzqj35">Terasaki_2016</a></td>
</tr>
<tr>
<th id="3tieiaiq";>562</th>
<td>Muller_2017</td>
<td>Nuclease escape elements protect messenger RNA against cleavage by multiple viral endonucleases</td>
<td>Muller, Mandy; Glaunsinger, Britt A.</td>
<td>2017</td>
<td>2017-08-25</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5589255" target="_blank">PMC5589255</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28841715.0" target="_blank">28841715.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1006593" target="_blank">10.1371/journal.ppat.1006593</a></td>
<td>3tieiaiq</td>
<td>0.378811</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_12.html#jhwjh12k">Muller_2017</a>, <a href="Topic_55.html#298cbr1x">Mendez_2018</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="tx0lqgff";>563</th>
<td>te_Velthuis_2011</td>
<td>The SARS-coronavirus nsp7+nsp8 complex is a unique multimeric RNA polymerase capable of both de novo initiation and primer extension</td>
<td>te Velthuis, Aartjan J.W.; van den Worm, Sjoerd H. E.; Snijder, Eric J.</td>
<td>2011</td>
<td>2011-10-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3287201" target="_blank">PMC3287201</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22039154.0" target="_blank">22039154.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr893" target="_blank">10.1093/nar/gkr893</a></td>
<td>tx0lqgff</td>
<td>0.378331</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_19.html#1tlxfc6r">Ahn_D_2012</a>, <a href="Topic_03.html#c7khkkcj">Subissi_2014</a></td>
</tr>
<tr>
<th id="a08rw6bp";>564</th>
<td>Decroly_2011</td>
<td>Conventional and unconventional mechanisms for capping viral mRNA</td>
<td>Decroly, Etienne; Ferron, François; Lescar, Julien; Canard, Bruno</td>
<td>2011</td>
<td>2011-12-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097100" target="_blank">PMC7097100</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22138959.0" target="_blank">22138959.0</a></td>
<td><a href="https://doi.org/10.1038/nrmicro2675" target="_blank">10.1038/nrmicro2675</a></td>
<td>a08rw6bp</td>
<td>0.378311</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#eljk918r">Chen_2016</a>, <a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="qx0qdjmt";>565</th>
<td>Nirwan_2019</td>
<td>Chapter 11 Rhinovirus RNA Polymerase Structure, Function, and Inhibitors</td>
<td>Nirwan, Sonam; Kakkar, Rita</td>
<td>2019</td>
<td>2019-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-815422-9.00011-5" target="_blank">10.1016/b978-0-12-815422-9.00011-5</a></td>
<td>qx0qdjmt</td>
<td>0.378041</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td></td>
</tr>
<tr>
<th id="ski6wx48";>566</th>
<td>Zhang_2019</td>
<td>A Reverse Genetics System for Cypovirus Based on a Bacmid Expressing T7 RNA Polymerase</td>
<td>Zhang, Gaobo; Yang, Jian; Qin, Fujun; Xu, Congrui; Wang, Jia; Lei, Chengfeng; Hu, Jia; Sun, Xiulian</td>
<td>2019</td>
<td>2019-04-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6521135" target="_blank">PMC6521135</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30939777.0" target="_blank">30939777.0</a></td>
<td><a href="https://doi.org/10.3390/v11040314" target="_blank">10.3390/v11040314</a></td>
<td>ski6wx48</td>
<td>0.377660</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_23.html#v7x01y87">Zhang_2010</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="0bnfugdm";>567</th>
<td>Jia_H_2019</td>
<td>A Structure-Function Diversity Survey of the RNA-Dependent RNA Polymerases From the Positive-Strand RNA Viruses</td>
<td>Jia, Hengxia; Gong, Peng</td>
<td>2019</td>
<td>2019-08-22</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6713929" target="_blank">PMC6713929</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31507560.0" target="_blank">31507560.0</a></td>
<td><a href="https://doi.org/10.3389/fmicb.2019.01945" target="_blank">10.3389/fmicb.2019.01945</a></td>
<td>0bnfugdm</td>
<td>0.377311</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#yo9libo0">Zhou_2011</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="d0a8oib4";>568</th>
<td>Nallagatla_2013</td>
<td>Native Tertiary Structure and Nucleoside Modifications Suppress tRNA’s Intrinsic Ability to Activate the Innate Immune Sensor PKR</td>
<td>Nallagatla, Subba Rao; Jones, Christie N.; Ghosh, Saikat Kumar B.; Sharma, Suresh D.; Cameron, Craig E.; Spremulli, Linda L.; Bevilacqua, Philip C.</td>
<td>2013</td>
<td>2013-03-04</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3587421" target="_blank">PMC3587421</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23483938.0" target="_blank">23483938.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0057905" target="_blank">10.1371/journal.pone.0057905</a></td>
<td>d0a8oib4</td>
<td>0.377311</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a></td>
<td><a href="Topic_34.html#5ac8srk7">Abbas_2013</a></td>
</tr>
<tr>
<th id="a647hwu9";>569</th>
<td>Lin_D_1991</td>
<td>Evolutionary relatedness of the predicted gene product of RNA segment 2 of the Tick-Borne Dhori virus and the PB1 polymerase gene of influenza viruses</td>
<td>Lin, Debby A.; Roychoudhury, Sonali; Palese, Peter; Clay, William C.; Fuller, Frederick J.</td>
<td>1991</td>
<td>1991-05-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131129" target="_blank">PMC7131129</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2024457.0" target="_blank">2024457.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90641-n" target="_blank">10.1016/0042-6822(91)90641-n</a></td>
<td>a647hwu9</td>
<td>0.376586</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="aw1g82bc";>570</th>
<td>Li_C_2007</td>
<td>A Sabin 1 poliovirus-based vaccine vector transfects Vero cells with high efficiency</td>
<td>Li, Changgui; Han, Wei; Zhang, Yingqi; Wang, Junzhi</td>
<td>2007</td>
<td>2007-07-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2267503" target="_blank">PMC2267503</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19003009.0" target="_blank">19003009.0</a></td>
<td><a href="https://doi.org/10.1007/s10616-007-9085-0" target="_blank">10.1007/s10616-007-9085-0</a></td>
<td>aw1g82bc</td>
<td>0.376226</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_14.html#ecvpmuz3">Brun_2014</a>, <a href="Topic_13.html#8kvs0qw8">Hao_H_2008</a></td>
</tr>
<tr>
<th id="wqi4z0ne";>571</th>
<td>Dinman_1998</td>
<td>Translating old drugs into new treatments: ribosomal frameshifting as a target for antiviral agents</td>
<td>Dinman, Jonathan D; Ruiz-Echevarria, Maria J; Peltz, Stuart W</td>
<td>1998</td>
<td>1998-04-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127214" target="_blank">PMC7127214</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9586242.0" target="_blank">9586242.0</a></td>
<td><a href="https://doi.org/10.1016/s0167-7799(97)01167-0" target="_blank">10.1016/s0167-7799(97)01167-0</a></td>
<td>wqi4z0ne</td>
<td>0.373484</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#99tyhwqe">Gaucherand_2019</a></td>
<td><a href="Topic_34.html#4pop84ge">Drappier_2015</a>, <a href="Topic_15.html#vx7xr80t">Kwong_2005</a></td>
</tr>
<tr>
<th id="4ih3d2d1";>572</th>
<td>Rice_1992</td>
<td>Examples of expression systems based on animal RNA viruses: Alphaviruses and influenza virus</td>
<td>Rice, Charles M.</td>
<td>1992</td>
<td>1992-10-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1369402.0" target="_blank">1369402.0</a></td>
<td><a href="https://doi.org/10.1016/0958-1669(92)90081-s" target="_blank">10.1016/0958-1669(92)90081-s</a></td>
<td>4ih3d2d1</td>
<td>0.373484</td>
<td><a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_12.html#oq25o4qr">Ahlquist_2005</a></td>
</tr>
<tr>
<th id="y3d9ghel";>573</th>
<td>Hewson_2007</td>
<td>Molecular Epidemiology, Genomics, and Phylogeny of Crimean-Congo Hemorrhagic Fever Virus</td>
<td>Hewson, Roger</td>
<td>2007</td>
<td>2007-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121233" target="_blank">PMC7121233</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-1-4020-6106-6_5" target="_blank">10.1007/978-1-4020-6106-6_5</a></td>
<td>y3d9ghel</td>
<td>0.373201</td>
<td><a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_56.html#2qj2rrgd">Lvov_2015</a>, <a href="Topic_68.html#uee3lqrx">Davaro_2013</a></td>
<td><a href="Topic_56.html#6jyv0q5e">Ikegami_2011</a>, <a href="Topic_13.html#h3g3sgiu">Dowall_2015</a>, <a href="Topic_56.html#zedd7ug4">Weber_2008</a>, <a href="Topic_09.html#thsq6pnk">Lachheb_2019</a></td>
</tr>
<tr>
<th id="ax8ybkcr";>574</th>
<td>Luque_2009</td>
<td>Infectious Bursal Disease Virus: Ribonucleoprotein Complexes of a Double-Stranded RNA Virus</td>
<td>Luque, Daniel; Saugar, Irene; Rejas, María Teresa; Carrascosa, José L.; Rodríguez, José F.; Castón, José R.</td>
<td>2009</td>
<td>2009-02-27</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19063900.0" target="_blank">19063900.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2008.11.029" target="_blank">10.1016/j.jmb.2008.11.029</a></td>
<td>ax8ybkcr</td>
<td>0.372967</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td></td>
</tr>
<tr>
<th id="x28cxlm3";>575</th>
<td>Hori_2016</td>
<td>Salt Effects on the Thermodynamics of a Frameshifting RNA Pseudoknot under Tension</td>
<td>Hori, Naoto; Denesyuk, Natalia A.; Thirumalai, D.</td>
<td>2016</td>
<td>2016-07-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5590673" target="_blank">PMC5590673</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27315694.0" target="_blank">27315694.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2016.06.002" target="_blank">10.1016/j.jmb.2016.06.002</a></td>
<td>x28cxlm3</td>
<td>0.372610</td>
<td><a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_10.html#4ef635rc">Chan_2016</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a></td>
<td><a href="Topic_19.html#08mep8hm">Hori_2016</a>, <a href="Topic_19.html#n7o7x9ta">Cornish_2006</a></td>
</tr>
<tr>
<th id="wjcp0asf";>576</th>
<td>Brierley_2003</td>
<td>V, 2.Ribosomal frameshifting in astroviruses</td>
<td>Brierley, Ian; Vidakovic, Marijana</td>
<td>2003</td>
<td>2003-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133818" target="_blank">PMC7133818</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/s0168-7069(03)09035-9" target="_blank">10.1016/s0168-7069(03)09035-9</a></td>
<td>wjcp0asf</td>
<td>0.372108</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a>, <a href="Topic_12.html#cwwnsx9y">Moon_2012</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="5d64esp4";>577</th>
<td>Walker_2015</td>
<td>Evolution of Genome Size and Complexity in the Rhabdoviridae</td>
<td>Walker, Peter J.; Firth, Cadhla; Widen, Steven G.; Blasdell, Kim R.; Guzman, Hilda; Wood, Thomas G.; Paradkar, Prasad N.; Holmes, Edward C.; Tesh, Robert B.; Vasilakis, Nikos</td>
<td>2015</td>
<td>2015-02-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4334499" target="_blank">PMC4334499</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25679389.0" target="_blank">25679389.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1004664" target="_blank">10.1371/journal.ppat.1004664</a></td>
<td>5d64esp4</td>
<td>0.370663</td>
<td><a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#n46p8acw">Li_D_2019</a>, <a href="Topic_37.html#tiyjmih7">Francis_2016</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_12.html#goidlh08">Walker_2011</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="4eu9v5d3";>578</th>
<td>Chastain_1991</td>
<td>Structural Elements in RNA</td>
<td>Chastain, Michael; Tinoco, Ignacio</td>
<td>1991</td>
<td>1991-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/s0079-6603(08)60008-2" target="_blank">10.1016/s0079-6603(08)60008-2</a></td>
<td>4eu9v5d3</td>
<td>0.370438</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_12.html#oa24b5to">Zúñiga_2009</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a></td>
<td><a href="Topic_19.html#xuxlw4c0">Kolchanov_1996</a>, <a href="Topic_12.html#vhsipxs7">Järvelin_2016</a></td>
</tr>
<tr>
<th id="4spjox0r";>579</th>
<td>Brinton_2008</td>
<td>Arteriviruses</td>
<td>Brinton, M.A.; Snijder, E.J.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149349" target="_blank">PMC7149349</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00537-9" target="_blank">10.1016/b978-012374410-4.00537-9</a></td>
<td>4spjox0r</td>
<td>0.369446</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a>, <a href="Topic_69.html#e8sppjfz">Glaser_1997</a></td>
</tr>
<tr>
<th id="e99fw336";>580</th>
<td>De_Nova-Ocampo_2018</td>
<td>Human astroviruses: in silico analysis of the untranslated region and putative binding sites of cellular proteins</td>
<td>De Nova-Ocampo, Mónica; Soliman, Mayra Cristina; Espinosa-Hernández, Wendy; Velez-del Valle, Cristina; Salas-Benito, Juan; Valdés-Flores, Jesús; García-Morales, Lorena</td>
<td>2018</td>
<td>2018-11-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089336" target="_blank">PMC7089336</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30448895.0" target="_blank">30448895.0</a></td>
<td><a href="https://doi.org/10.1007/s11033-018-4498-8" target="_blank">10.1007/s11033-018-4498-8</a></td>
<td>e99fw336</td>
<td>0.369446</td>
<td><a href="Topic_19.html#1oqxmzze">Hyde_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#hm8d42fq">Gutiérrez-Escolano_2003</a></td>
</tr>
<tr>
<th id="4nhy35xn";>581</th>
<td>Soowannayan_2011</td>
<td>RNA-Binding Domain in the Nucleocapsid Protein of Gill-Associated Nidovirus of Penaeid Shrimp</td>
<td>Soowannayan, Chumporn; Cowley, Jeff A.; Michalski, Wojtek P.; Walker, Peter J.</td>
<td>2011</td>
<td>2011-08-03</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3153931" target="_blank">PMC3153931</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21857914.0" target="_blank">21857914.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0022156" target="_blank">10.1371/journal.pone.0022156</a></td>
<td>4nhy35xn</td>
<td>0.369330</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a></td>
<td><a href="Topic_10.html#kyavg4vu">Masters_1992</a>, <a href="Topic_10.html#waho38j5">Bhat_2011</a>, <a href="Topic_12.html#wrztpeb8">Zhang_2015</a></td>
</tr>
<tr>
<th id="0aiaklrn";>582</th>
<td>Tuplin_2011</td>
<td>Replication enhancer elements within the open reading frame of tick-borne encephalitis virus and their evolution within the Flavivirus genus</td>
<td>Tuplin, A.; Evans, D. J.; Buckley, A.; Jones, I. M.; Gould, E. A.; Gritsun, T. S.</td>
<td>2011</td>
<td>2011-05-27</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303483" target="_blank">PMC3303483</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21622960.0" target="_blank">21622960.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkr237" target="_blank">10.1093/nar/gkr237</a></td>
<td>0aiaklrn</td>
<td>0.368384</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_14.html#ecvpmuz3">Brun_2014</a></td>
</tr>
<tr>
<th id="p46abodr";>583</th>
<td>Backofen_2013</td>
<td>Distribution of Graph-Distances in Boltzmann Ensembles of RNA Secondary Structures</td>
<td>Backofen, Rolf; Fricke, Markus; Marz, Manja; Qin, Jing; Stadler, Peter F.</td>
<td>2013</td>
<td>2013-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114971" target="_blank">PMC7114971</a></td>
<td></td>
<td><a href="https://doi.org/10.1007/978-3-642-40453-5_10" target="_blank">10.1007/978-3-642-40453-5_10</a></td>
<td>p46abodr</td>
<td>0.368371</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_10.html#qrnhp1ek">Kirillova_2009</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a>, <a href="Topic_25.html#9zm4per4">Dawson_2007</a>, <a href="Topic_01.html#h6r6qdna">Polverino_2017</a></td>
<td><a href="Topic_19.html#bifebnwt">Qin_J_2014</a>, <a href="Topic_19.html#7jdh882a">Borodavka_2016</a>, <a href="Topic_19.html#213ly4xo">Fricke_2019</a>, <a href="Topic_12.html#1u96c10x">Gupta_2019</a></td>
</tr>
<tr>
<th id="e4e0jt5s";>584</th>
<td>Roux_1991</td>
<td>Effects of Defective Interfering Viruses on Virus Replication and Pathogenesis In Vitro and In Vivo</td>
<td>Roux, Laurent; Simon, Anne E.; Holland, John J.</td>
<td>1991</td>
<td>1991-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1957718.0" target="_blank">1957718.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60279-1" target="_blank">10.1016/s0065-3527(08)60279-1</a></td>
<td>e4e0jt5s</td>
<td>0.367669</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#pbn9n37n">Makino_1988</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_12.html#x3lb6viw">Pathak_2009</a></td>
</tr>
<tr>
<th id="d86hnox1";>585</th>
<td>Opuu_2017</td>
<td>Computational design of fully overlapping coding schemes for protein pairs and triplets</td>
<td>Opuu, Vaitea; Silvert, Martin; Simonson, Thomas</td>
<td>2017</td>
<td>2017-11-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5696523" target="_blank">PMC5696523</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29158504.0" target="_blank">29158504.0</a></td>
<td><a href="https://doi.org/10.1038/s41598-017-16221-8" target="_blank">10.1038/s41598-017-16221-8</a></td>
<td>d86hnox1</td>
<td>0.366493</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_09.html#7bp0ujqn">Lin_T_2004</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="lm7r3o3n";>586</th>
<td>Patil_2018</td>
<td>Incorporating uracil and 5-halouracils into short peptide nucleic acids for enhanced recognition of A–U pairs in dsRNAs</td>
<td>Patil, Kiran M; Toh, Desiree-Faye Kaixin; Yuan, Zhen; Meng, Zhenyu; Shu, Zhiyu; Zhang, Haiping; Ong, Alan Ann Lerk; Krishna, Manchugondanahalli S; Lu, Lanyuan; Lu, Yunpeng; Chen, Gang</td>
<td>2018</td>
<td>2018-09-06</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6125629" target="_blank">PMC6125629</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30011039.0" target="_blank">30011039.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gky631" target="_blank">10.1093/nar/gky631</a></td>
<td>lm7r3o3n</td>
<td>0.363874</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#sztzrx1l">Kierzek_2006</a>, <a href="Topic_10.html#5figm2h5">Fernando_2008</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a></td>
<td><a href="Topic_55.html#jta53v1l">Pradeepkumar_2012</a></td>
</tr>
<tr>
<th id="98ebhx0b";>587</th>
<td>Jang_2008</td>
<td>Isolation of inhibitory RNA aptamers against severe acute respiratory syndrome (SARS) coronavirus NTPase/Helicase</td>
<td>Jang, Kyoung Jin; Lee, Na-Ra; Yeo, Woon-Seok; Jeong, Yong-Joo; Kim, Dong-Eun</td>
<td>2008</td>
<td>2008-02-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7092905" target="_blank">PMC7092905</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18082623.0" target="_blank">18082623.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2007.12.020" target="_blank">10.1016/j.bbrc.2007.12.020</a></td>
<td>98ebhx0b</td>
<td>0.363206</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_69.html#d7iycdyh">Choong_2014</a></td>
</tr>
<tr>
<th id="dgwpwiii";>588</th>
<td>Yu_Q_1992</td>
<td>Cloning and sequencing of the matrix protein (M) gene of turkey rhinotracheitis virus reveal a gene order different from that of respiratory syncytial virus</td>
<td>Yu, Q.; Davis, P.J.; Li, J.; Cavanagh, D.</td>
<td>1992</td>
<td>1992-02-29</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131020" target="_blank">PMC7131020</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1733097.0" target="_blank">1733097.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(92)90007-c" target="_blank">10.1016/0042-6822(92)90007-c</a></td>
<td>dgwpwiii</td>
<td>0.362271</td>
<td><a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_23.html#v7x01y87">Zhang_2010</a></td>
</tr>
<tr>
<th id="0mtqlnog";>589</th>
<td>Diaz_2011</td>
<td>Bromovirus RNA Replication Compartment Formation Requires Concerted Action of 1a's Self-Interacting RNA Capping and Helicase Domains</td>
<td>Diaz, Arturo; Gallei, Andreas; Ahlquist, Paul</td>
<td>2011</td>
<td>2011-11-16</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3255829" target="_blank">PMC3255829</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22090102.0" target="_blank">22090102.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.05684-11" target="_blank">10.1128/jvi.05684-11</a></td>
<td>0mtqlnog</td>
<td>0.359813</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_10.html#eemt5tjs">Gomis-Rüth_2003</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="aju2nr9x";>590</th>
<td>Zeng_2020</td>
<td>Leveraging mRNAs sequences to express SARS-CoV-2 antigens in vivo</td>
<td>Chunxi Zeng; Xucheng Hou; Jingyue Yan; Chengxiang Zhang; Wenqing Li; Weiyu Zhao; Shi Du; Yizhou Dong</td>
<td>2020</td>
<td>2020-04-05</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.01.019877" target="_blank">10.1101/2020.04.01.019877</a></td>
<td>aju2nr9x</td>
<td>0.359573</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a>, <a href="Topic_23.html#7y5i2w8x">Das_D_2006</a></td>
</tr>
<tr>
<th id="bh198xgl";>591</th>
<td>Snijder_2016</td>
<td>Chapter Three The Nonstructural Proteins Directing Coronavirus RNA Synthesis and Processing</td>
<td>Snijder, E.J.; Decroly, E.; Ziebuhr, J.</td>
<td>2016</td>
<td>2016-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112286" target="_blank">PMC7112286</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27712628.0" target="_blank">27712628.0</a></td>
<td><a href="https://doi.org/10.1016/bs.aivir.2016.08.008" target="_blank">10.1016/bs.aivir.2016.08.008</a></td>
<td>bh198xgl</td>
<td>0.359561</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#g4sg2nex">Posthuma_2017</a></td>
</tr>
<tr>
<th id="oa24d6ic";>592</th>
<td>te_Velthuis_2009</td>
<td>The RNA polymerase activity of SARS-coronavirus nsp12 is primer dependent</td>
<td>te Velthuis, Aartjan J. W.; Arnold, Jamie J.; Cameron, Craig E.; van den Worm, Sjoerd H. E.; Snijder, Eric J.</td>
<td>2009</td>
<td>2009-10-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2800238" target="_blank">PMC2800238</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19875418.0" target="_blank">19875418.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkp904" target="_blank">10.1093/nar/gkp904</a></td>
<td>oa24d6ic</td>
<td>0.359484</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#1tlxfc6r">Ahn_D_2012</a></td>
</tr>
<tr>
<th id="avd20f45";>593</th>
<td>Miller_2006</td>
<td>Long-Distance RNA-RNA Interactions in Plant Virus Gene Expression and Replication</td>
<td>Miller, W. Allen; White, K. Andrew</td>
<td>2006</td>
<td>2006-09-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1894749" target="_blank">PMC1894749</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16704356.0" target="_blank">16704356.0</a></td>
<td><a href="https://doi.org/10.1146/annurev.phyto.44.070505.143353" target="_blank">10.1146/annurev.phyto.44.070505.143353</a></td>
<td>avd20f45</td>
<td>0.358386</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#tg1310br">Haasnoot_2010</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a></td>
</tr>
<tr>
<th id="sxhrkozi";>594</th>
<td>Cotton_2006</td>
<td>The VPgPro protein of Turnip mosaic virus: In vitro inhibition of translation from a ribonuclease activity</td>
<td>Cotton, Sophie; Dufresne, Philippe J.; Thivierge, Karine; Ide, Christine; Fortin, Marc G.</td>
<td>2006</td>
<td>2006-07-20</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16647732.0" target="_blank">16647732.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2006.03.019" target="_blank">10.1016/j.virol.2006.03.019</a></td>
<td>sxhrkozi</td>
<td>0.358226</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a></td>
<td></td>
</tr>
<tr>
<th id="kozzq3h9";>595</th>
<td>Dawson_1990</td>
<td>Regulation of Tobamovirus Gene Expression</td>
<td>Dawson, William O.; Lehto, Kirsi M.</td>
<td>1990</td>
<td>1990-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2220472.0" target="_blank">2220472.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60865-9" target="_blank">10.1016/s0065-3527(08)60865-9</a></td>
<td>kozzq3h9</td>
<td>0.357618</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td></td>
</tr>
<tr>
<th id="7v7pzclb";>596</th>
<td>Yin_W_2020</td>
<td>Structural Basis for the Inhibition of the RNA-Dependent RNA Polymerase from SARS-CoV-2 by Remdesivir</td>
<td>Wanchao Yin; Chunyou Mao; Xiaodong Luan; Dan-Dan Shen; Qingya Shen; Haixia Su; Xiaoxi Wang; Fulai Zhou; Wenfeng Zhao; Minqi Gao; Shenghai Chang; Yuan-Chao Xie; Guanghui Tian; He-Wei Jiang; Sheng-Ce Tao; Jingshan Shen; Yi Jiang; Hualiang Jiang; Yechun Xu; Shuyang Zhang; Yan Zhang; H. Eric Xu</td>
<td>2020</td>
<td>2020-04-09</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.08.032763" target="_blank">10.1101/2020.04.08.032763</a></td>
<td>7v7pzclb</td>
<td>0.356857</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#1tlxfc6r">Ahn_D_2012</a>, <a href="Topic_10.html#ezpjdz55">Dinesh_2020</a>, <a href="Topic_55.html#glfxrla9">Gao_Y_2020</a></td>
</tr>
<tr>
<th id="ay4kqfne";>597</th>
<td>Penzes_2001</td>
<td>Complete Genome Sequence of Transmissible Gastroenteritis Coronavirus PUR46-MAD Clone and Evolution of the Purdue Virus Cluster</td>
<td>Penzes, Zoltan; González, Jose M.; Calvo, Enrique; Izeta, Ander; Smerdou, Cristian; Méndez, Ana; Sánchez, Carlos M.; Sola, Isabel; Almazán, Fernando; Enjuanes, Luis</td>
<td>2001</td>
<td>2001-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088808" target="_blank">PMC7088808</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11556396.0" target="_blank">11556396.0</a></td>
<td><a href="https://doi.org/10.1023/a:1011147832586" target="_blank">10.1023/a:1011147832586</a></td>
<td>ay4kqfne</td>
<td>0.355875</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="iexd5qn5";>598</th>
<td>Achuthan_2015</td>
<td>Alternative divalent cations (Zn(2+), Co(2+), and Mn(2+)) are not mutagenic at conditions optimal for HIV-1 reverse transcriptase activity</td>
<td>Achuthan, Vasudevan; DeStefano, Jeffrey J</td>
<td>2015</td>
<td>2015-05-03</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4472245" target="_blank">PMC4472245</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25934642.0" target="_blank">25934642.0</a></td>
<td><a href="https://doi.org/10.1186/s12858-015-0041-x" target="_blank">10.1186/s12858-015-0041-x</a></td>
<td>iexd5qn5</td>
<td>0.355304</td>
<td><a href="Topic_54.html#xdihvg6k">David_2013</a>, <a href="Topic_25.html#tgyxiwuo">Abou-Hamdan_2018</a>, <a href="Topic_64.html#7my2q928">Largo_2016</a>, <a href="Topic_64.html#vs12l0uv">Choudhury_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_54.html#0wcvoygd">Pahonțu_2015</a>, <a href="Topic_64.html#2fldz4ww">Yang_2010</a>, <a href="Topic_54.html#hkfkugzn">Sticher_2020</a></td>
</tr>
<tr>
<th id="cnwfvtfo";>599</th>
<td>McDonald_2013</td>
<td>RNA synthetic mechanisms employed by diverse families of RNA viruses</td>
<td>McDonald, Sarah M.</td>
<td>2013</td>
<td>2013-04-18</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169773" target="_blank">PMC7169773</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23606593.0" target="_blank">23606593.0</a></td>
<td><a href="https://doi.org/10.1002/wrna.1164" target="_blank">10.1002/wrna.1164</a></td>
<td>cnwfvtfo</td>
<td>0.354724</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td></td>
</tr>
<tr>
<th id="pmdera3v";>600</th>
<td>Masaki_2015</td>
<td>miR-122 Stimulates Hepatitis C Virus RNA Synthesis by Altering the Balance of Viral RNAs Engaged in Replication versus Translation</td>
<td>Masaki, Takahiro; Arend, Kyle C.; Li, You; Yamane, Daisuke; McGivern, David R.; Kato, Takanobu; Wakita, Takaji; Moorman, Nathaniel J.; Lemon, Stanley M.</td>
<td>2015</td>
<td>2015-02-11</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4326553" target="_blank">PMC4326553</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25662750.0" target="_blank">25662750.0</a></td>
<td><a href="https://doi.org/10.1016/j.chom.2014.12.014" target="_blank">10.1016/j.chom.2014.12.014</a></td>
<td>pmdera3v</td>
<td>0.354696</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#h2asxv4j">Liu_H_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_12.html#h2asxv4j">Liu_H_2009</a></td>
</tr>
<tr>
<th id="66t5fjld";>601</th>
<td>Khromykh_1996</td>
<td>RNA binding properties of core protein of the flavivirus Kunjin</td>
<td>Khromykh, A. A.; Westaway, E. G.</td>
<td>1996</td>
<td>1996-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086803" target="_blank">PMC7086803</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8645104.0" target="_blank">8645104.0</a></td>
<td><a href="https://doi.org/10.1007/bf01718326" target="_blank">10.1007/bf01718326</a></td>
<td>66t5fjld</td>
<td>0.354489</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_10.html#5q4vt1sl">Zhou_2000</a></td>
</tr>
<tr>
<th id="l5y3qkde";>602</th>
<td>Murphy_2010</td>
<td>Sequence–function analysis of the Sendai virus L protein domain VI</td>
<td>Murphy, Andrea M.; Moerdyk-Schauwecker, Megan; Mushegian, Arcady; Grdzelishvili, Valery Z.</td>
<td>2010</td>
<td>2010-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2923248" target="_blank">PMC2923248</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20609457.0" target="_blank">20609457.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.06.019" target="_blank">10.1016/j.virol.2010.06.019</a></td>
<td>l5y3qkde</td>
<td>0.352861</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#5rovh1xf">Godeny_1990</a>, <a href="Topic_19.html#yo9libo0">Zhou_2011</a></td>
</tr>
<tr>
<th id="je6oe1h4";>603</th>
<td>Auewarakul_2005</td>
<td>Composition bias and genome polarity of RNA viruses</td>
<td>Auewarakul, Prasert</td>
<td>2005</td>
<td>2005-04-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114242" target="_blank">PMC7114242</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15826910.0" target="_blank">15826910.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2004.10.004" target="_blank">10.1016/j.virusres.2004.10.004</a></td>
<td>je6oe1h4</td>
<td>0.352798</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="tv8hi2wy";>604</th>
<td>Low_J_2010</td>
<td>SHAPE-Directed RNA Secondary Structure Prediction</td>
<td>Low, Justin T.; Weeks, Kevin M.</td>
<td>2010</td>
<td>2010-10-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2941709" target="_blank">PMC2941709</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20554050.0" target="_blank">20554050.0</a></td>
<td><a href="https://doi.org/10.1016/j.ymeth.2010.06.007" target="_blank">10.1016/j.ymeth.2010.06.007</a></td>
<td>tv8hi2wy</td>
<td>0.349630</td>
<td><a href="Topic_25.html#9zm4per4">Dawson_2007</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#w8luu86h">Liou_2013</a>, <a href="Topic_25.html#2lg8i9r1">Dai_Q_2012</a></td>
<td><a href="Topic_19.html#cciyb05w">Yang_2015</a>, <a href="Topic_19.html#xuxlw4c0">Kolchanov_1996</a></td>
</tr>
<tr>
<th id="k7ujru6t";>605</th>
<td>Han_Y_2009</td>
<td>Identification and functional characterization of regions that can be crosslinked to RNA in the helicase-like domain of BaMV replicase</td>
<td>Han, Yu-Tsung; Hsu, Yau-Heiu; Lo, Chia-Wen; Meng, Menghsiao</td>
<td>2009</td>
<td>2009-07-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134557" target="_blank">PMC7134557</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19443005.0" target="_blank">19443005.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2009.04.013" target="_blank">10.1016/j.virol.2009.04.013</a></td>
<td>k7ujru6t</td>
<td>0.349572</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_12.html#zpk3gjwo">Li_Z_2010</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_55.html#hiy7f4wh">Someya_2008</a>, <a href="Topic_55.html#bv42mbnp">Piñón_1997</a></td>
</tr>
<tr>
<th id="hy8zihx6";>606</th>
<td>Hatfield_1992</td>
<td>Translational Suppression in Retroviral GENE Expression</td>
<td>Hatfield, Dolph L.; Levin, Judith G.; Rein, Alan; Oroszlan, Stephen</td>
<td>1992</td>
<td>1992-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1575083.0" target="_blank">1575083.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60037-8" target="_blank">10.1016/s0065-3527(08)60037-8</a></td>
<td>hy8zihx6</td>
<td>0.349491</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="kmwncmq8";>607</th>
<td>Sola_2011</td>
<td>RNA-RNA and RNA-protein interactions in coronavirus replication and transcription</td>
<td>Sola, Isabel; Mateos-Gomez, Pedro A; Almazan, Fernando; Zuñiga, Sonia; Enjuanes, Luis</td>
<td>2011</td>
<td>2011-03-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3230552" target="_blank">PMC3230552</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21378501.0" target="_blank">21378501.0</a></td>
<td><a href="https://doi.org/10.4161/rna.8.2.14991" target="_blank">10.4161/rna.8.2.14991</a></td>
<td>kmwncmq8</td>
<td>0.349105</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="ykog278j";>608</th>
<td>Stewart_2016</td>
<td>Identification of novel RNA secondary structures within the hepatitis C virus genome reveals a cooperative involvement in genome packaging</td>
<td>Stewart, H.; Bingham, R.J.; White, S. J.; Dykeman, E. C.; Zothner, C.; Tuplin, A. K.; Stockley, P. G.; Twarock, R.; Harris, M.</td>
<td>2016</td>
<td>2016-03-14</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789732" target="_blank">PMC4789732</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26972799.0" target="_blank">26972799.0</a></td>
<td><a href="https://doi.org/10.1038/srep22952" target="_blank">10.1038/srep22952</a></td>
<td>ykog278j</td>
<td>0.348833</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_19.html#p9dl7whd">YU_W_1995</a></td>
</tr>
<tr>
<th id="wo462anq";>609</th>
<td>Xia_H_2015</td>
<td>Human Enterovirus Nonstructural Protein 2C(ATPase) Functions as Both an RNA Helicase and ATP-Independent RNA Chaperone</td>
<td>Xia, Hongjie; Wang, Peipei; Wang, Guang-Chuan; Yang, Jie; Sun, Xianlin; Wu, Wenzhe; Qiu, Yang; Shu, Ting; Zhao, Xiaolu; Yin, Lei; Qin, Cheng-Feng; Hu, Yuanyang; Zhou, Xi</td>
<td>2015</td>
<td>2015-07-28</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4517893" target="_blank">PMC4517893</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26218680.0" target="_blank">26218680.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1005067" target="_blank">10.1371/journal.ppat.1005067</a></td>
<td>wo462anq</td>
<td>0.348717</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="ldblzjzn";>610</th>
<td>Nicolas_2016</td>
<td>POLD1: Central mediator of DNA replication and repair, and implication in cancer and other pathologies</td>
<td>Nicolas, Emmanuelle; Golemis, Erica A.; Arora, Sanjeevani</td>
<td>2016</td>
<td>2016-09-15</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4969162" target="_blank">PMC4969162</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27320729.0" target="_blank">27320729.0</a></td>
<td><a href="https://doi.org/10.1016/j.gene.2016.06.031" target="_blank">10.1016/j.gene.2016.06.031</a></td>
<td>ldblzjzn</td>
<td>0.348573</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#ivl1e9vd">Tonzi_2018</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#670yseio">Taschuk_2020</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a>, <a href="Topic_12.html#ckpg9f97">Sinigalia_2012</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="lnf2mj29";>611</th>
<td>Ferron_2019</td>
<td>Identification of a Nidovirales Orf1a N7-guanine cap Methyltransferase signature-sequence as a genetic marker of large genome Tobaniviridae</td>
<td>François Ferron; Humberto Julio Debat; Etienne Decroly; Bruno Canard</td>
<td>2019</td>
<td>2019-05-17</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/639369" target="_blank">10.1101/639369</a></td>
<td>lnf2mj29</td>
<td>0.347843</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td></td>
</tr>
<tr>
<th id="yr0uxok2";>612</th>
<td>Guo_Z_2018</td>
<td>Identification and genomic characterization of a novel CRESS DNA virus from a calf with severe hemorrhagic enteritis in China</td>
<td>Guo, Zijing; He, Qifu; Tang, Cheng; Zhang, Bin; Yue, Hua</td>
<td>2018</td>
<td>2018-08-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114660" target="_blank">PMC7114660</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30040978.0" target="_blank">30040978.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2018.07.015" target="_blank">10.1016/j.virusres.2018.07.015</a></td>
<td>yr0uxok2</td>
<td>0.347407</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#thsq6pnk">Lachheb_2019</a></td>
</tr>
<tr>
<th id="bbpmlo3c";>613</th>
<td>Lawton_2000</td>
<td>Mechanism of genome transcription in segmented dsRNA viruses</td>
<td>Lawton, Jeffrey A; Estes, Mary K; Venkataram Prasad, B.V</td>
<td>2000</td>
<td>2000-12-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11050943.0" target="_blank">11050943.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(00)55004-0" target="_blank">10.1016/s0065-3527(00)55004-0</a></td>
<td>bbpmlo3c</td>
<td>0.346989</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="edpsib9s";>614</th>
<td>Pietilä_2017</td>
<td>Polyprotein Processing as a Determinant for In Vitro Activity of Semliki Forest Virus Replicase</td>
<td>Pietilä, Maija K.; Albulescu, Irina C.; van Hemert, Martijn J.; Ahola, Tero</td>
<td>2017</td>
<td>2017-10-07</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5691643" target="_blank">PMC5691643</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28991178.0" target="_blank">28991178.0</a></td>
<td><a href="https://doi.org/10.3390/v9100292" target="_blank">10.3390/v9100292</a></td>
<td>edpsib9s</td>
<td>0.346818</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="o14tiixx";>615</th>
<td>Wada_2018</td>
<td>Interplay between coronavirus, a cytoplasmic RNA virus, and nonsense-mediated mRNA decay pathway</td>
<td>Wada, Masami; Lokugamage, Kumari G.; Nakagawa, Keisuke; Narayanan, Krishna; Makino, Shinji</td>
<td>2018</td>
<td>2018-10-08</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6205489" target="_blank">PMC6205489</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30297408.0" target="_blank">30297408.0</a></td>
<td><a href="https://doi.org/10.1073/pnas.1811675115" target="_blank">10.1073/pnas.1811675115</a></td>
<td>o14tiixx</td>
<td>0.346448</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_34.html#p3b4yk5d">Case_2017</a>, <a href="Topic_34.html#74rwdt96">Thornbrough_2016</a>, <a href="Topic_34.html#pdfs6ojs">Narayanan_2015</a></td>
</tr>
<tr>
<th id="czmv6itq";>616</th>
<td>Strauss_1991</td>
<td>RNA viruses: genome structure and evolution</td>
<td>Strauss, Ellen G.; Strauss, James H.</td>
<td>1991</td>
<td>1991-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133357" target="_blank">PMC7133357</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1822281.0" target="_blank">1822281.0</a></td>
<td><a href="https://doi.org/10.1016/s0959-437x(05)80196-0" target="_blank">10.1016/s0959-437x(05)80196-0</a></td>
<td>czmv6itq</td>
<td>0.345179</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_37.html#snth4ah6">te_Velthuis_2014</a>, <a href="Topic_12.html#259cspey">Poltronieri_2015</a></td>
</tr>
<tr>
<th id="7jdh882a";>617</th>
<td>Borodavka_2016</td>
<td>Sizes of Long RNA Molecules Are Determined by the Branching Patterns of Their Secondary Structures</td>
<td>Borodavka, Alexander; Singaram, Surendra W.; Stockley, Peter G.; Gelbart, William M.; Ben-Shaul, Avinoam; Tuma, Roman</td>
<td>2016</td>
<td>2016-11-15</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5113152" target="_blank">PMC5113152</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/27851933.0" target="_blank">27851933.0</a></td>
<td><a href="https://doi.org/10.1016/j.bpj.2016.10.014" target="_blank">10.1016/j.bpj.2016.10.014</a></td>
<td>7jdh882a</td>
<td>0.345143</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#ck7eto16">Baric_1987</a></td>
</tr>
<tr>
<th id="9c8dj9j7";>618</th>
<td>Castro_2005</td>
<td>Incorporation fidelity of the viral RNA-dependent RNA polymerase: a kinetic, thermodynamic and structural perspective</td>
<td>Castro, Christian; Arnold, Jamie J.; Cameron, Craig E.</td>
<td>2005</td>
<td>2005-02-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125856" target="_blank">PMC7125856</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15649560.0" target="_blank">15649560.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2004.11.004" target="_blank">10.1016/j.virusres.2004.11.004</a></td>
<td>9c8dj9j7</td>
<td>0.344952</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="lds6a5h0";>619</th>
<td>Bénard_1996</td>
<td>Pseudoknot and translational control in the expression of the S15 ribosomal protein</td>
<td>Bénard, L; Philippe, C; Ehresmann, B; Ehresmann, C; Portier, C</td>
<td>1996</td>
<td>1996-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131963" target="_blank">PMC7131963</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8955900.0" target="_blank">8955900.0</a></td>
<td><a href="https://doi.org/10.1016/s0300-9084(96)80003-4" target="_blank">10.1016/s0300-9084(96)80003-4</a></td>
<td>lds6a5h0</td>
<td>0.344577</td>
<td><a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a></td>
<td><a href="Topic_19.html#ee7q7jhv">Powell_2011</a>, <a href="Topic_19.html#2xvd5ogf">Napthine_2009</a></td>
</tr>
<tr>
<th id="igpd93oh";>620</th>
<td>Diwan_2018</td>
<td>Wobbling Forth and Drifting Back: The Evolutionary History and Impact of Bacterial tRNA Modifications</td>
<td>Diwan, Gaurav D; Agashe, Deepa</td>
<td>2018</td>
<td>2018-05-28</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6063277" target="_blank">PMC6063277</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29846694.0" target="_blank">29846694.0</a></td>
<td><a href="https://doi.org/10.1093/molbev/msy110" target="_blank">10.1093/molbev/msy110</a></td>
<td>igpd93oh</td>
<td>0.344577</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_01.html#ox6japdt">Diwan_2018</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_01.html#ox6japdt">Diwan_2018</a>, <a href="Topic_19.html#xk4yuibj">Belcourt_1990</a>, <a href="Topic_19.html#clyc1va2">Popow_2012</a>, <a href="Topic_29.html#pgy1a1d5">van_Weringh_2011</a></td>
</tr>
<tr>
<th id="3mtfvvfb";>621</th>
<td>Vasquez-Del_Carpio_2006</td>
<td>Histidine Triad-like Motif of the Rotavirus NSP2 Octamer Mediates both RTPase and NTPase Activities</td>
<td>Vasquez-Del Carpio, Rodrigo; Gonzalez-Nilo, Fernando D.; Riadi, Gonzalo; Taraporewala, Zenobia F.; Patton, John T.</td>
<td>2006</td>
<td>2006-09-22</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1924841" target="_blank">PMC1924841</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16934294.0" target="_blank">16934294.0</a></td>
<td><a href="https://doi.org/10.1016/j.jmb.2006.07.050" target="_blank">10.1016/j.jmb.2006.07.050</a></td>
<td>3mtfvvfb</td>
<td>0.344240</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#l1r416w7">Hou_L_2014</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a></td>
<td><a href="Topic_10.html#1ksfo0pr">Kanitz_2019</a>, <a href="Topic_55.html#bv42mbnp">Piñón_1997</a>, <a href="Topic_55.html#hiy7f4wh">Someya_2008</a></td>
</tr>
<tr>
<th id="gppyv588";>622</th>
<td>Hanley_2010</td>
<td>Roles of the respiratory syncytial virus trailer region: Effects of mutations on genome production and stress granule formation</td>
<td>Hanley, Laura L.; McGivern, David R.; Teng, Michael N.; Djang, Robin; Collins, Peter L.; Fearns, Rachel</td>
<td>2010</td>
<td>2010-10-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2971657" target="_blank">PMC2971657</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/20701943.0" target="_blank">20701943.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2010.07.006" target="_blank">10.1016/j.virol.2010.07.006</a></td>
<td>gppyv588</td>
<td>0.344226</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="yv9or7cu";>623</th>
<td>Dinan_2019</td>
<td>Comparative analysis of gene expression in virulent and attenuated strains of infectious bronchitis virus at sub-codon resolution</td>
<td>Adam M. Dinan; Sarah Keep; Erica Bickerton; Paul Britton; Andrew E. Firth; Ian Brierley</td>
<td>2019</td>
<td>2019-04-18</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/612614" target="_blank">10.1101/612614</a></td>
<td>yv9or7cu</td>
<td>0.342699</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#xsuq2np8">Dinan_2019</a></td>
</tr>
<tr>
<th id="nb4uryxk";>624</th>
<td>Wehrfritz_2007</td>
<td>Reconstitution of bluetongue virus polymerase activity from isolated domains based on a three‐dimensional structural model</td>
<td>Wehrfritz, Josa‐marie; Boyce, Mark; Mirza, Sahdia; Roy, Polly</td>
<td>2007</td>
<td>2007-02-23</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7161780" target="_blank">PMC7161780</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17323325.0" target="_blank">17323325.0</a></td>
<td><a href="https://doi.org/10.1002/bip.20706" target="_blank">10.1002/bip.20706</a></td>
<td>nb4uryxk</td>
<td>0.342405</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td></td>
</tr>
<tr>
<th id="fl6h1lrn";>625</th>
<td>Keck_1988</td>
<td>Temporal regulation of bovine coronavirus RNA synthesis</td>
<td>Keck, James G.; Hogue, Brenda G.; Brian, David A.; Lai, Michael M.C.</td>
<td>1988</td>
<td>1988-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7134124" target="_blank">PMC7134124</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3376552.0" target="_blank">3376552.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(88)90093-7" target="_blank">10.1016/0168-1702(88)90093-7</a></td>
<td>fl6h1lrn</td>
<td>0.342205</td>
<td><a href="Topic_19.html#0yp4c4ks">Banerjee_2001</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#pmdera3v">Masaki_2015</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#ck7eto16">Baric_1987</a></td>
</tr>
<tr>
<th id="rn3bjc9d";>626</th>
<td>Tchesnokov_2019</td>
<td>Mechanism of Inhibition of Ebola Virus RNA-Dependent RNA Polymerase by Remdesivir</td>
<td>Tchesnokov, Egor P.; Feng, Joy Y.; Porter, Danielle P.; Götte, Matthias</td>
<td>2019</td>
<td>2019-04-04</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520719" target="_blank">PMC6520719</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30987343.0" target="_blank">30987343.0</a></td>
<td><a href="https://doi.org/10.3390/v11040326" target="_blank">10.3390/v11040326</a></td>
<td>rn3bjc9d</td>
<td>0.342069</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a>, <a href="Topic_34.html#38bf0f1x">Sidhu_1996</a>, <a href="Topic_14.html#luv23pm0">McDonagh_2011</a></td>
</tr>
<tr>
<th id="msk9p1yy";>627</th>
<td>Lee_C_2000</td>
<td>Evidence of genetic diversity generated by recombination among avian coronavirus IBV</td>
<td>Lee, C.-W.; Jackwood, M. W.</td>
<td>2000</td>
<td>2000-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087113" target="_blank">PMC7087113</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/11087096.0" target="_blank">11087096.0</a></td>
<td><a href="https://doi.org/10.1007/s007050070044" target="_blank">10.1007/s007050070044</a></td>
<td>msk9p1yy</td>
<td>0.341631</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_09.html#gmq5zs2d">Liu_S_2008</a>, <a href="Topic_09.html#agn6w3lk">Weiwei_2014</a></td>
</tr>
<tr>
<th id="91t8f7o1";>628</th>
<td>Yang_2018</td>
<td>Molecular identification and transcriptional regulation of porcine IFIT2 gene</td>
<td>Yang, Xiuqin; Jing, Xiaoyan; Song, Yanfang; Zhang, Caixia; Liu, Di</td>
<td>2018</td>
<td>2018-04-06</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088635" target="_blank">PMC7088635</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29623507.0" target="_blank">29623507.0</a></td>
<td><a href="https://doi.org/10.1007/s11033-018-4179-7" target="_blank">10.1007/s11033-018-4179-7</a></td>
<td>91t8f7o1</td>
<td>0.341590</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_62.html#3ury4hnv">Levy_2000</a>, <a href="Topic_62.html#3ury4hnv">Levy_2000</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="6y452g44";>629</th>
<td>King_1985</td>
<td>Multiple sites of recombination within the RNA genome of foot-and-mouth disease virus</td>
<td>King, Andrew M.Q.; McCahon, David; Saunders, Keith; Newman, John W.I.; Slade, William R.</td>
<td>1985</td>
<td>1985-11-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3000107.0" target="_blank">3000107.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(85)90437-x" target="_blank">10.1016/0168-1702(85)90437-x</a></td>
<td>6y452g44</td>
<td>0.341426</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_09.html#tpktexzy">Hao_W_2011</a></td>
<td></td>
</tr>
<tr>
<th id="xh66h2yd";>630</th>
<td>Weiss_1993</td>
<td>The ns 4 gene of mouse hepatitis virus (MHV), strain A 59 contains two ORFs and thus differs from ns 4 of the JHM and S strains</td>
<td>Weiss, Susan R.; Zoltick, P. W.; Leibowitz, J. L.</td>
<td>1993</td>
<td>1993-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087012" target="_blank">PMC7087012</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/8385918.0" target="_blank">8385918.0</a></td>
<td><a href="https://doi.org/10.1007/bf01316905" target="_blank">10.1007/bf01316905</a></td>
<td>xh66h2yd</td>
<td>0.341426</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#yb7ydyu2">Jendrach_2014</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_62.html#yaw92db7">O'Connor_1999</a></td>
</tr>
<tr>
<th id="lqbj0lrf";>631</th>
<td>Britton_1991</td>
<td>The cloning and sequencing of the virion protein genes from a British isolate of porcine respiratory coronavirus: comparison with transmissible gastroenteritis virus genes</td>
<td>Britton, Paul; Mawditt, Karen L.; Page, Kevin W.</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7133898" target="_blank">PMC7133898</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1662846.0" target="_blank">1662846.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(91)90032-q" target="_blank">10.1016/0168-1702(91)90032-q</a></td>
<td>lqbj0lrf</td>
<td>0.338243</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#1jgqofbr">Kocherhans_2001</a>, <a href="Topic_19.html#y8xvh6hs">Yamanaka_1998</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#ab39nz3a">Britton_1990</a></td>
<td><a href="Topic_09.html#m8624fx4">Yin_J_2005</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="8xbl2qtp";>632</th>
<td>Agol_1991</td>
<td>The 5′-Untranslated Region of Picornaviral Genomes</td>
<td>Agol, Vadim I.</td>
<td>1991</td>
<td>1991-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130636" target="_blank">PMC7130636</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1957717.0" target="_blank">1957717.0</a></td>
<td><a href="https://doi.org/10.1016/s0065-3527(08)60278-x" target="_blank">10.1016/s0065-3527(08)60278-x</a></td>
<td>8xbl2qtp</td>
<td>0.338048</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_12.html#07nfb69o">Sun_D_2016</a></td>
</tr>
<tr>
<th id="qcezqpze";>633</th>
<td>Lehmann_2015</td>
<td>Arterivirus nsp12 versus the coronavirus nsp16 2′-O-methyltransferase: comparison of the C-terminal cleavage products of two nidovirus pp1ab polyproteins</td>
<td>Lehmann, Kathleen C.; Hooghiemstra, Lisa; Gulyaeva, Anastasia; Samborskiy, Dmitry V.; Zevenhoven-Dobbe, Jessika C.; Snijder, Eric J.; Gorbalenya, Alexander E.; Posthuma, Clara C.</td>
<td>2015</td>
<td>2015-09-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7081073" target="_blank">PMC7081073</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26041874.0" target="_blank">26041874.0</a></td>
<td><a href="https://doi.org/10.1099/vir.0.000209" target="_blank">10.1099/vir.0.000209</a></td>
<td>qcezqpze</td>
<td>0.337868</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td></td>
</tr>
<tr>
<th id="orlqn5em";>634</th>
<td>Laude_1990</td>
<td>Molecular biology of transmissible gastroenteritis virus</td>
<td>Laude, Hubert; Rasschaert, Denis; Delmas, Bernard; Godet, Murielle; Gelfi, Jacqueline; Charley, Bernard</td>
<td>1990</td>
<td>1990-06-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117338" target="_blank">PMC7117338</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2169670.0" target="_blank">2169670.0</a></td>
<td><a href="https://doi.org/10.1016/0378-1135(90)90144-k" target="_blank">10.1016/0378-1135(90)90144-k</a></td>
<td>orlqn5em</td>
<td>0.337546</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_62.html#yaw92db7">O'Connor_1999</a></td>
</tr>
<tr>
<th id="geesc6xx";>635</th>
<td>Athmer_2018</td>
<td>Selective Packaging in Murine Coronavirus Promotes Virulence by Limiting Type I Interferon Responses</td>
<td>Athmer, Jeremiah; Fehr, Anthony R.; Grunewald, Matthew E.; Qu, Wen; Wheeler, D. Lori; Graepel, Kevin W.; Channappanavar, Rudragouda; Sekine, Aimee; Aldabeeb, Dana Saud; Gale, Michael; Denison, Mark R.; Perlman, Stanley</td>
<td>2018</td>
<td>2018-05-01</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5930304" target="_blank">PMC5930304</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29717007.0" target="_blank">29717007.0</a></td>
<td><a href="https://doi.org/10.1128/mbio.00272-18" target="_blank">10.1128/mbio.00272-18</a></td>
<td>geesc6xx</td>
<td>0.337202</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a>, <a href="Topic_34.html#p3b4yk5d">Case_2017</a></td>
</tr>
<tr>
<th id="p7um7o87";>636</th>
<td>Robertson_2004</td>
<td>The Structure of a Rigorously Conserved RNA Element within the SARS Virus Genome</td>
<td>Robertson, Michael P; Igel, Haller; Baertsch, Robert; Haussler, David; Ares, Manuel; Scott, William G</td>
<td>2004</td>
<td>2004-12-28</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC539059" target="_blank">PMC539059</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15630477.0" target="_blank">15630477.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pbio.0030005" target="_blank">10.1371/journal.pbio.0030005</a></td>
<td>p7um7o87</td>
<td>0.335447</td>
<td><a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#tx5ff5gk">Wu_B_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a></td>
<td></td>
</tr>
<tr>
<th id="8guwbmzo";>637</th>
<td>Jarvis_1991</td>
<td>The polymerase in its labyrinth: mechanisms and implications of RNA recombination</td>
<td>Jarvis, Thale C.; Kirkegaard, Karla</td>
<td>1991</td>
<td>1991-06-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1712518.0" target="_blank">1712518.0</a></td>
<td><a href="https://doi.org/10.1016/0168-9525(91)90434-r" target="_blank">10.1016/0168-9525(91)90434-r</a></td>
<td>8guwbmzo</td>
<td>0.335001</td>
<td><a href="Topic_30.html#n8zg6rsj">Wang_2018</a>, <a href="Topic_12.html#qdy29oym">Denison_2008</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_37.html#snth4ah6">te_Velthuis_2014</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="eh4dij8h";>638</th>
<td>Masters_2005</td>
<td>Coronavirus Reverse Genetics by Targeted RNA Recombination</td>
<td>Masters, P. S.; Rottier, P. J. M.</td>
<td>2005</td>
<td>2005-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122231" target="_blank">PMC7122231</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15609511.0" target="_blank">15609511.0</a></td>
<td><a href="https://doi.org/10.1007/3-540-26765-4_5" target="_blank">10.1007/3-540-26765-4_5</a></td>
<td>eh4dij8h</td>
<td>0.334015</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_14.html#i6pb9677">Almazán_2007</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="job4854r";>639</th>
<td>Xie_M_2009</td>
<td>A phage RNA-binding protein binds to a non-cognate structured RNA and stabilizes its core structure</td>
<td>Xie, Mao-Hua; Wu, Qi-Jia; Jiang, Yan-Fei; Bao, Penghui; Zhang, Yi</td>
<td>2009</td>
<td>2009-01-09</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117394" target="_blank">PMC7117394</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19000653.0" target="_blank">19000653.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2008.10.160" target="_blank">10.1016/j.bbrc.2008.10.160</a></td>
<td>job4854r</td>
<td>0.333910</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#l1r416w7">Hou_L_2014</a></td>
<td><a href="Topic_10.html#kyavg4vu">Masters_1992</a>, <a href="Topic_19.html#bww62vx8">Gopinath_2015</a></td>
</tr>
<tr>
<th id="ps4y6kri";>640</th>
<td>Puglisi_1990</td>
<td>Conformation of an RNA pseudoknot</td>
<td>Puglisi, Joseph D.; Wyatt, Jacqueline R.; Tinoco, Ignacio</td>
<td>1990</td>
<td>1990-07-20</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1696318.0" target="_blank">1696318.0</a></td>
<td><a href="https://doi.org/10.1016/0022-2836(90)90192-o" target="_blank">10.1016/0022-2836(90)90192-o</a></td>
<td>ps4y6kri</td>
<td>0.333888</td>
<td><a href="Topic_19.html#sztzrx1l">Kierzek_2006</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_10.html#5figm2h5">Fernando_2008</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_55.html#0a3okta0">Myllykoski_2017</a></td>
</tr>
<tr>
<th id="wkisfz1m";>641</th>
<td>Han_M_2014</td>
<td>Engineering the PRRS virus genome: Updates and perspectives</td>
<td>Han, Mingyuan; Yoo, Dongwan</td>
<td>2014</td>
<td>2014-12-05</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25458419.0" target="_blank">25458419.0</a></td>
<td><a href="https://doi.org/10.1016/j.vetmic.2014.10.007" target="_blank">10.1016/j.vetmic.2014.10.007</a></td>
<td>wkisfz1m</td>
<td>0.333750</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td></td>
</tr>
<tr>
<th id="u3pxycqh";>642</th>
<td>Shu_T_2019</td>
<td>Ebola virus VP35 has novel NTPase and helicase-like activities</td>
<td>Shu, Ting; Gan, Tianyu; Bai, Peng; Wang, Xiaotong; Qian, Qi; Zhou, Hui; Cheng, Qi; Qiu, Yang; Yin, Lei; Zhong, Jin; Zhou, Xi</td>
<td>2019</td>
<td>2019-06-20</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6582406" target="_blank">PMC6582406</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31066445.0" target="_blank">31066445.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz340" target="_blank">10.1093/nar/gkz340</a></td>
<td>u3pxycqh</td>
<td>0.333728</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="rqfxe0x1";>643</th>
<td>Zhang_2007</td>
<td>Genomic characterization of equine coronavirus</td>
<td>Zhang, Jianqiang; Guy, James S.; Snijder, Eric J.; Denniston, Doug A.; Timoney, Peter J.; Balasuriya, Udeni B.R.</td>
<td>2007</td>
<td>2007-12-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7103287" target="_blank">PMC7103287</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17706262.0" target="_blank">17706262.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2007.06.035" target="_blank">10.1016/j.virol.2007.06.035</a></td>
<td>rqfxe0x1</td>
<td>0.333717</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a></td>
</tr>
<tr>
<th id="vqjhiv7p";>644</th>
<td>Gorbalenya_1989</td>
<td>An NTP-binding motif is the most conserved sequence in a highly diverged monophyletic group of proteins involved in positive strand RNA viral replication</td>
<td>Gorbalenya, Alexander E.; Blinov, Vladimir M.; Donchenko, Alexei P.; Koonin, Eugene V.</td>
<td>1989</td>
<td>1989-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087505" target="_blank">PMC7087505</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2522556.0" target="_blank">2522556.0</a></td>
<td><a href="https://doi.org/10.1007/bf02102483" target="_blank">10.1007/bf02102483</a></td>
<td>vqjhiv7p</td>
<td>0.333645</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_37.html#i2ppvsh5">Dolja_2006</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#n46p8acw">Li_D_2019</a></td>
<td><a href="Topic_55.html#r7ofnxf1">Rozanov_1995</a>, <a href="Topic_55.html#s5nzqdyy">Gorbalenya_1991</a></td>
</tr>
<tr>
<th id="o2zjszj1";>645</th>
<td>Olia_2008</td>
<td>A shifty stop for a hairy tail</td>
<td>Olia, Adam S.; Cingolani, Gino</td>
<td>2008</td>
<td>2008-11-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2779026" target="_blank">PMC2779026</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18826406.0" target="_blank">18826406.0</a></td>
<td><a href="https://doi.org/10.1111/j.1365-2958.2008.06434.x" target="_blank">10.1111/j.1365-2958.2008.06434.x</a></td>
<td>o2zjszj1</td>
<td>0.331257</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a></td>
<td><a href="Topic_55.html#bv42mbnp">Piñón_1997</a>, <a href="Topic_10.html#6b5c6vp7">Olia_2009</a></td>
</tr>
<tr>
<th id="btbv4rq0";>646</th>
<td>Cooper_2014</td>
<td>Ribonuclease L and metal-ion–independent endoribonuclease cleavage sites in host and viral RNAs</td>
<td>Cooper, Daphne A.; Jha, Babal K.; Silverman, Robert H.; Hesselberth, Jay R.; Barton, David J.</td>
<td>2014</td>
<td>2014-02-05</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4005677" target="_blank">PMC4005677</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24500209.0" target="_blank">24500209.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gku118" target="_blank">10.1093/nar/gku118</a></td>
<td>btbv4rq0</td>
<td>0.331257</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#v3sfww3e">Lin_X_2015</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a></td>
<td><a href="Topic_19.html#p9dl7whd">YU_W_1995</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="uqrwq5qk";>647</th>
<td>Kwak_2011</td>
<td>Annexin A2 Binds RNA and Reduces the Frameshifting Efficiency of Infectious Bronchitis Virus</td>
<td>Kwak, Hoyun; Park, Min Woo; Jeong, Sunjoo</td>
<td>2011</td>
<td>2011-08-30</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3168876" target="_blank">PMC3168876</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21918681.0" target="_blank">21918681.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0024067" target="_blank">10.1371/journal.pone.0024067</a></td>
<td>uqrwq5qk</td>
<td>0.330948</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#h2asxv4j">Liu_H_2009</a></td>
<td><a href="Topic_12.html#wrztpeb8">Zhang_2015</a></td>
</tr>
<tr>
<th id="471zei5o";>648</th>
<td>Deng_2013</td>
<td>Structural basis for the regulatory function of a complex zinc-binding domain in a replicative arterivirus helicase resembling a nonsense-mediated mRNA decay helicase</td>
<td>Deng, Zengqin; Lehmann, Kathleen C.; Li, Xiaorong; Feng, Chong; Wang, Guoqiang; Zhang, Qi; Qi, Xiaoxuan; Yu, Lin; Zhang, Xingliang; Feng, Wenhai; Wu, Wei; Gong, Peng; Tao, Ye; Posthuma, Clara C.; Snijder, Eric J.; Gorbalenya, Alexander E.; Chen, Zhongzhou</td>
<td>2013</td>
<td>2013-12-24</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950703" target="_blank">PMC3950703</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24369429.0" target="_blank">24369429.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkt1310" target="_blank">10.1093/nar/gkt1310</a></td>
<td>471zei5o</td>
<td>0.330824</td>
<td><a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_57.html#0vxhgjss">Hao_W_2017</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a>, <a href="Topic_10.html#1ksfo0pr">Kanitz_2019</a></td>
</tr>
<tr>
<th id="eqzs01au";>649</th>
<td>Britton_2006</td>
<td>Sequence of the nucleoprotein gene from a virulent British field isolate of transmissible gastroenteritis virus and its expression in Saccharomyces cerevisiae</td>
<td>Britton, P.; Cármenes, R. S.; Page, K. W.; Garwes, D. J.; Parral, F.</td>
<td>2006</td>
<td>2006-10-27</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7168467" target="_blank">PMC7168467</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28776791.0" target="_blank">28776791.0</a></td>
<td><a href="https://doi.org/10.1111/j.1365-2958.1988.tb00010.x" target="_blank">10.1111/j.1365-2958.1988.tb00010.x</a></td>
<td>eqzs01au</td>
<td>0.330263</td>
<td><a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#uoei747i">Leibowitz_1988</a></td>
<td></td>
</tr>
<tr>
<th id="rzev5kko";>650</th>
<td>Tuteja_2006</td>
<td>Unraveling the ‘DEAD-box’ helicases of Plasmodium falciparum</td>
<td>Tuteja, Renu; Pradhan, Arun</td>
<td>2006</td>
<td>2006-07-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127577" target="_blank">PMC7127577</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/16713133.0" target="_blank">16713133.0</a></td>
<td><a href="https://doi.org/10.1016/j.gene.2006.03.007" target="_blank">10.1016/j.gene.2006.03.007</a></td>
<td>rzev5kko</td>
<td>0.330176</td>
<td><a href="Topic_12.html#670yseio">Taschuk_2020</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_12.html#nfgjz6f9">Xu_Z_2012</a>, <a href="Topic_55.html#ul0k95x2">van_der_Linden_2014</a></td>
</tr>
<tr>
<th id="2tmsxja8";>651</th>
<td>Arif_2017</td>
<td>The GAIT Translational Control System</td>
<td>Arif, Abul; Yao, Peng; Terenzi, Fulvia; Jia, Jie; Ray, Partho Sarothi; Fox, Paul L.</td>
<td>2017</td>
<td>2017-11-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815886" target="_blank">PMC5815886</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29152905.0" target="_blank">29152905.0</a></td>
<td><a href="https://doi.org/10.1002/wrna.1441" target="_blank">10.1002/wrna.1441</a></td>
<td>2tmsxja8</td>
<td>0.329971</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_27.html#31m3sxmf">Siu_Y_2008</a>, <a href="Topic_12.html#6lvn10f4">Shi_S_2000</a></td>
<td><a href="Topic_19.html#9aaxxh07">Marquez-Jurado_2015</a>, <a href="Topic_34.html#3r736dnk">Ezelle_2016</a></td>
</tr>
<tr>
<th id="27fd59qe";>652</th>
<td>Meulenberg_1995</td>
<td>Characterization of proteins encoded by ORFs 2 to 7 of Lelystad virus</td>
<td>Meulenberg, Janneke J.M.; Petersen-Den Besten, Annelien; De Kluyver, Eric P.; Moormann, Rob J.M.; Schaaper, Wim M.M.; Wensvoort, Gert</td>
<td>1995</td>
<td>1995-01-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130653" target="_blank">PMC7130653</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7831770.0" target="_blank">7831770.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(95)80030-1" target="_blank">10.1016/s0042-6822(95)80030-1</a></td>
<td>27fd59qe</td>
<td>0.329738</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#lam9t14l">Vennema_1991</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_23.html#hlthvadj">Nagesha_2001</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a></td>
</tr>
<tr>
<th id="lcu1mgno";>653</th>
<td>Hsin_2018</td>
<td>Nucleocapsid protein-dependent assembly of the RNA packaging signal of Middle East respiratory syndrome coronavirus</td>
<td>Hsin, Wei-Chen; Chang, Chan-Hua; Chang, Chi-You; Peng, Wei-Hao; Chien, Chung-Liang; Chang, Ming-Fu; Chang, Shin C.</td>
<td>2018</td>
<td>2018-05-24</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5966903" target="_blank">PMC5966903</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29793506.0" target="_blank">29793506.0</a></td>
<td><a href="https://doi.org/10.1186/s12929-018-0449-x" target="_blank">10.1186/s12929-018-0449-x</a></td>
<td>lcu1mgno</td>
<td>0.329470</td>
<td><a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_12.html#1kuggdzj">Neufeldt_2016</a></td>
</tr>
<tr>
<th id="2bh5j5p0";>654</th>
<td>Haimovich_2020</td>
<td>Identification and enrichment of SECReTE cis-acting RNA elements in the Coronaviridae and other (+) single-strand RNA viruses</td>
<td>Gal Haimovich; Tsviya Olender; Camila Baez; Jeffrey E Gerst</td>
<td>2020</td>
<td>2020-04-20</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.04.20.050088" target="_blank">10.1101/2020.04.20.050088</a></td>
<td>2bh5j5p0</td>
<td>0.328508</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td></td>
</tr>
<tr>
<th id="oxyzndsj";>655</th>
<td>Ortego_2003</td>
<td>Transmissible gastroenteritis coronavirus gene 7 is not essential but influences in vivo virus replication and virulence</td>
<td>Ortego, Javier; Sola, Isabel; Almazán, Fernando; Ceriani, Juan E; Riquelme, Cristina; Balasch, Monica; Plana, Juan; Enjuanes, Luis</td>
<td>2003</td>
<td>2003-03-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7126239" target="_blank">PMC7126239</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/12706086.0" target="_blank">12706086.0</a></td>
<td><a href="https://doi.org/10.1016/s0042-6822(02)00096-x" target="_blank">10.1016/s0042-6822(02)00096-x</a></td>
<td>oxyzndsj</td>
<td>0.327678</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="ivl1e9vd";>656</th>
<td>Tonzi_2018</td>
<td>Translesion polymerase kappa-dependent DNA synthesis underlies replication fork recovery</td>
<td>Tonzi, Peter; Yin, Yandong; Lee, Chelsea Wei Ting; Rothenberg, Eli; Huang, Tony T</td>
<td>2018</td>
<td>2018-11-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6251625" target="_blank">PMC6251625</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30422114.0" target="_blank">30422114.0</a></td>
<td><a href="https://doi.org/10.7554/elife.41426" target="_blank">10.7554/elife.41426</a></td>
<td>ivl1e9vd</td>
<td>0.327678</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#tkfozwpf">Sasvari_2011</a></td>
</tr>
<tr>
<th id="xkcqo86y";>657</th>
<td>Garcia_2014</td>
<td>Nonsense-Mediated Decay Serves as a General Viral Restriction Mechanism in Plants</td>
<td>Garcia, Damien; Garcia, Shahinez; Voinnet, Olivier</td>
<td>2014</td>
<td>2014-09-10</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25155460.0" target="_blank">25155460.0</a></td>
<td><a href="https://doi.org/10.1016/j.chom.2014.08.001" target="_blank">10.1016/j.chom.2014.08.001</a></td>
<td>xkcqo86y</td>
<td>0.327519</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#btwn1jy0">Herbert_2016</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_34.html#p3b4yk5d">Case_2017</a>, <a href="Topic_12.html#vplm0lpq">Chemudupati_2019</a>, <a href="Topic_19.html#a0df1fhw">Sasvari_2009</a></td>
</tr>
<tr>
<th id="9z8z03rp";>658</th>
<td>Kai_Z_2019</td>
<td>An efficient simulated annealing algorithm for the RNA secondary structure prediction with Pseudoknots</td>
<td>Kai, Zhang; Yuting, Wang; Yulin, Lv; Jun, Liu; Juanjuan, He</td>
<td>2019</td>
<td>2019-12-27</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6933665" target="_blank">PMC6933665</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31881969.0" target="_blank">31881969.0</a></td>
<td><a href="https://doi.org/10.1186/s12864-019-6300-2" target="_blank">10.1186/s12864-019-6300-2</a></td>
<td>9z8z03rp</td>
<td>0.327519</td>
<td><a href="Topic_01.html#h6r6qdna">Polverino_2017</a>, <a href="Topic_25.html#sgw66xhn">Saw_A_2019</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a></td>
<td><a href="Topic_25.html#jxgd1yc4">Kai_Z_2018</a>, <a href="Topic_25.html#iuglkdcp">Sperschneider_2012</a></td>
</tr>
<tr>
<th id="8m3vrjyr";>659</th>
<td>Ryu_W_2017</td>
<td>Chapter 13 Other Positive-Strand RNA Viruses</td>
<td>Ryu, Wang-Shick</td>
<td>2017</td>
<td>2017-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149767" target="_blank">PMC7149767</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-0-12-800838-6.00013-8" target="_blank">10.1016/b978-0-12-800838-6.00013-8</a></td>
<td>8m3vrjyr</td>
<td>0.327519</td>
<td><a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_68.html#uee3lqrx">Davaro_2013</a>, <a href="Topic_56.html#2qj2rrgd">Lvov_2015</a></td>
<td><a href="Topic_12.html#s935ttyn">Wulan_2015</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="p4mhvogk";>660</th>
<td>Sakai_1991</td>
<td>Mitochondrial mutations restricting spontaneous translational frameshift suppression in the yeast Saccharomyces cerevisiae</td>
<td>Sakai, Hajime; Stiess, Renate; Weiss-Brummer, Brigitte</td>
<td>1991</td>
<td>1991-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088400" target="_blank">PMC7088400</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1648170.0" target="_blank">1648170.0</a></td>
<td><a href="https://doi.org/10.1007/bf00259684" target="_blank">10.1007/bf00259684</a></td>
<td>p4mhvogk</td>
<td>0.326409</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a></td>
<td><a href="Topic_19.html#r70iuoq0">Weiss-Brummer_1995</a>, <a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a></td>
</tr>
<tr>
<th id="a8g3hba9";>661</th>
<td>Monceyron_2014</td>
<td>Molecular characterisation of the 3′-end of the astrovirus genome</td>
<td>Monceyron, C.; Grinde, B.; Jonassen, T. Ø.</td>
<td>2014</td>
<td>2014-04-02</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7087294" target="_blank">PMC7087294</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/9170498.0" target="_blank">9170498.0</a></td>
<td><a href="https://doi.org/10.1007/s007050050112" target="_blank">10.1007/s007050050112</a></td>
<td>a8g3hba9</td>
<td>0.325749</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_09.html#o9jdt86j">Callison_1999</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a></td>
<td><a href="Topic_19.html#5rovh1xf">Godeny_1990</a>, <a href="Topic_62.html#mj9ea464">Lapps_1987</a>, <a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#7bp0ujqn">Lin_T_2004</a></td>
</tr>
<tr>
<th id="xva1qkrd";>662</th>
<td>Väre_2017</td>
<td>Chemical and Conformational Diversity of Modified Nucleosides Affects tRNA Structure and Function</td>
<td>Väre, Ville Y. P.; Eruysal, Emily R.; Narendran, Amithi; Sarachan, Kathryn L.; Agris, Paul F.</td>
<td>2017</td>
<td>2017-03-16</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5372741" target="_blank">PMC5372741</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/28300792.0" target="_blank">28300792.0</a></td>
<td><a href="https://doi.org/10.3390/biom7010029" target="_blank">10.3390/biom7010029</a></td>
<td>xva1qkrd</td>
<td>0.325749</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#hq84lje9">Martínez-Salas_2008</a>, <a href="Topic_12.html#oa24b5to">Zúñiga_2009</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#sz2531mv">Byszewska_2015</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a>, <a href="Topic_19.html#xuxlw4c0">Kolchanov_1996</a></td>
</tr>
<tr>
<th id="78m8ylz5";>663</th>
<td>Mondal_2004</td>
<td>Comparison of four regions in the replicase gene of heterologous infectious bronchitis virus strains</td>
<td>Mondal, Shankar P; Cardona, Carol J</td>
<td>2004</td>
<td>2004-06-20</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125564" target="_blank">PMC7125564</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15183070.0" target="_blank">15183070.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2004.03.032" target="_blank">10.1016/j.virol.2004.03.032</a></td>
<td>78m8ylz5</td>
<td>0.325342</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_19.html#yo9libo0">Zhou_2011</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="l92nlegt";>664</th>
<td>Sarnowska_2007</td>
<td>Hairpin structure within the 3′UTR of DNA polymerase β mRNA acts as a post-transcriptional regulatory element and interacts with Hax-1</td>
<td>Sarnowska, Elżbieta; Grzybowska, Ewa A.; Sobczak, Krzysztof; Konopiński, Ryszard; Wilczyńska, Anna; Szwarc, Maria; Sarnowski, Tomasz J.; Krzyżosiak, Włodzimierz J.; Siedlecki, Janusz A.</td>
<td>2007</td>
<td>2007-08-17</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2018635" target="_blank">PMC2018635</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/17704138.0" target="_blank">17704138.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkm502" target="_blank">10.1093/nar/gkm502</a></td>
<td>l92nlegt</td>
<td>0.325165</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_12.html#rybce5bj">Abernathy_2015</a></td>
<td></td>
</tr>
<tr>
<th id="pa65xxt2";>665</th>
<td>Mishra_2014</td>
<td>Unfolding of in planta activity of anti‐rep ribozyme in presence of a RNA silencing suppressor</td>
<td>Mishra, Sumona Karjee; Chilakamarthi, Ushasri; Deb, J.K.; Mukherjee, Sunil Kumar</td>
<td>2014</td>
<td>2014-05-21</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7164126" target="_blank">PMC7164126</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24735726.0" target="_blank">24735726.0</a></td>
<td><a href="https://doi.org/10.1016/j.febslet.2014.04.006" target="_blank">10.1016/j.febslet.2014.04.006</a></td>
<td>pa65xxt2</td>
<td>0.324924</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#i6os0p47">Landeo-Ríos_2016</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a></td>
<td></td>
</tr>
<tr>
<th id="x3hr1y6o";>666</th>
<td>Taiaroa_2020</td>
<td>Direct RNA sequencing and early evolution of SARS-CoV-2</td>
<td>George Taiaroa; Daniel Rawlinson; Leo Featherstone; Miranda Pitt; Leon Caly; Julian Druce; Damian Purcell; Leigh Harty; Thomas Tran; Jason Roberts; Mike Catton; Deborah Williamson; Lachlan Coin; Sebastian Duchene</td>
<td>2020</td>
<td>2020-03-07</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.03.05.976167" target="_blank">10.1101/2020.03.05.976167</a></td>
<td>x3hr1y6o</td>
<td>0.324833</td>
<td><a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#7qc1lqyp">Cheng_2012</a>, <a href="Topic_37.html#wjf8t8vp">Brister_2015</a>, <a href="Topic_03.html#6vja5e5o">Johnson_2018</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_38.html#covwyddp">Tan_T_2005</a>, <a href="Topic_18.html#0nh58odf">Phan_2020</a></td>
</tr>
<tr>
<th id="wr7vrild";>667</th>
<td>Gibbs_2004</td>
<td>The phylogeny of SARS coronavirus</td>
<td>Gibbs, A. J.; Gibbs, M. J.; Armstrong, J. S.</td>
<td>2004</td>
<td>2004-01-05</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7086792" target="_blank">PMC7086792</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/14991447.0" target="_blank">14991447.0</a></td>
<td><a href="https://doi.org/10.1007/s00705-003-0244-0" target="_blank">10.1007/s00705-003-0244-0</a></td>
<td>wr7vrild</td>
<td>0.324833</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_09.html#jquxicdr">Wang_2013</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a></td>
<td><a href="Topic_30.html#lq12vg4z">Niemeyer_2018</a>, <a href="Topic_38.html#sdtxi8xw">Yu_P_2019</a>, <a href="Topic_30.html#h2uc7ria">Boni_2020</a>, <a href="Topic_38.html#tpn5cg4n">Beniac_2006</a></td>
</tr>
<tr>
<th id="m2tqzc4u";>668</th>
<td>Jia_Z_2019</td>
<td>Delicate structural coordination of the Severe Acute Respiratory Syndrome coronavirus Nsp13 upon ATP hydrolysis</td>
<td>Jia, Zhihui; Yan, Liming; Ren, Zhilin; Wu, Lijie; Wang, Jin; Guo, Jing; Zheng, Litao; Ming, Zhenhua; Zhang, Lianqi; Lou, Zhiyong; Rao, Zihe</td>
<td>2019</td>
<td>2019-07-09</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614802" target="_blank">PMC6614802</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31131400.0" target="_blank">31131400.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz409" target="_blank">10.1093/nar/gkz409</a></td>
<td>m2tqzc4u</td>
<td>0.323679</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#c5k5rpq5">Gorbalenya_1988</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td></td>
</tr>
<tr>
<th id="ya0siivm";>669</th>
<td>Liu_W_2018</td>
<td>A unique intra-molecular fidelity-modulating mechanism identified in a viral RNA-dependent RNA polymerase</td>
<td>Liu, Weichi; Shi, Xiaoling; Gong, Peng</td>
<td>2018</td>
<td>2018-11-16</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6237809" target="_blank">PMC6237809</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30239956.0" target="_blank">30239956.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gky848" target="_blank">10.1093/nar/gky848</a></td>
<td>ya0siivm</td>
<td>0.323183</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td></td>
</tr>
<tr>
<th id="xl4u7n6r";>670</th>
<td>Jonassen_2007</td>
<td>Detection and Sequence Characterization of the 3′-End of Coronavirus Genomes Harboring the Highly Conserved RNA Motif s2m</td>
<td>Jonassen, Christine Monceyron</td>
<td>2007</td>
<td>2007-11-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7122199" target="_blank">PMC7122199</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19057866.0" target="_blank">19057866.0</a></td>
<td><a href="https://doi.org/10.1007/978-1-59745-181-9_3" target="_blank">10.1007/978-1-59745-181-9_3</a></td>
<td>xl4u7n6r</td>
<td>0.322783</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_09.html#7bp0ujqn">Lin_T_2004</a>, <a href="Topic_19.html#a8g3hba9">Monceyron_2014</a></td>
</tr>
<tr>
<th id="t6v85tcm";>671</th>
<td>Yu_D_2009</td>
<td>Reverse genetic manipulation of the overlapping coding regions for structural proteins of the type II porcine reproductive and respiratory syndrome virus</td>
<td>Yu, Dandan; Lv, Jian; Sun, Zhi; Zheng, Haihong; Lu, Jiaqi; Yuan, Shishan</td>
<td>2009</td>
<td>2009-01-05</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18977502.0" target="_blank">18977502.0</a></td>
<td><a href="https://doi.org/10.1016/j.virol.2008.09.013" target="_blank">10.1016/j.virol.2008.09.013</a></td>
<td>t6v85tcm</td>
<td>0.321823</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td></td>
</tr>
<tr>
<th id="uhhtvdif";>672</th>
<td>Longhini_2016</td>
<td>Chemo-enzymatic synthesis of site-specific isotopically labeled nucleotides for use in NMR resonance assignment, dynamics and structural characterizations</td>
<td>Longhini, Andrew P.; LeBlanc, Regan M.; Becette, Owen; Salguero, Carolina; Wunderlich, Christoph H.; Johnson, Bruce A.; D'Souza, Victoria M.; Kreutz, Christoph; Dayie, T. Kwaku</td>
<td>2016</td>
<td>2016-04-07</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4824079" target="_blank">PMC4824079</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26657632.0" target="_blank">26657632.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkv1333" target="_blank">10.1093/nar/gkv1333</a></td>
<td>uhhtvdif</td>
<td>0.321744</td>
<td><a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_47.html#bbvxu8op">Karaman_2005</a>, <a href="Topic_08.html#wv0f4hp4">Wu_G_2005</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a></td>
<td><a href="Topic_55.html#ovy03sfy">Scrima_2004</a>, <a href="Topic_55.html#0a3okta0">Myllykoski_2017</a></td>
</tr>
<tr>
<th id="08mep8hm";>673</th>
<td>Hori_2016</td>
<td>Salt Effects on the Thermodynamics of a Frameshifting RNA Pseudoknot under Tension</td>
<td>Naoto Hori; Natalia A. Denesyuk; D. Thirumalai</td>
<td>2016</td>
<td>2016-04-15</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/048801" target="_blank">10.1101/048801</a></td>
<td>08mep8hm</td>
<td>0.321744</td>
<td><a href="Topic_19.html#2fkghukw">Guo_Y_2013</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_10.html#4ef635rc">Chan_2016</a>, <a href="Topic_19.html#wqy89i4v">Hatfield_1990</a>, <a href="Topic_25.html#fvuwick5">Qi_Z_2018</a></td>
<td><a href="Topic_19.html#x28cxlm3">Hori_2016</a>, <a href="Topic_19.html#n7o7x9ta">Cornish_2006</a></td>
</tr>
<tr>
<th id="clyc1va2";>674</th>
<td>Popow_2012</td>
<td>Diversity and roles of (t)RNA ligases</td>
<td>Popow, Johannes; Schleiffer, Alexander; Martinez, Javier</td>
<td>2012</td>
<td>2012-03-17</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3400036" target="_blank">PMC3400036</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22426497.0" target="_blank">22426497.0</a></td>
<td><a href="https://doi.org/10.1007/s00018-012-0944-2" target="_blank">10.1007/s00018-012-0944-2</a></td>
<td>clyc1va2</td>
<td>0.321506</td>
<td><a href="Topic_12.html#xw20yrbv">Dubois_2016</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_35.html#mzwkz0xx">Wang_2017</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_19.html#d6vud7xg">Ogando_2019</a>, <a href="Topic_19.html#9pkvj14m">Singleton_2018</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="7flxo83l";>675</th>
<td>Sipley_1991</td>
<td>Bacteriophage T7 morphogenesis and gene 10 frameshifting in Escherichia coli showing different degrees of ribosomal fidelity</td>
<td>Sipley, John; Dunn, John; Goldman, Emanuel</td>
<td>1991</td>
<td>1991-01-01</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088377" target="_blank">PMC7088377</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1766436.0" target="_blank">1766436.0</a></td>
<td><a href="https://doi.org/10.1007/bf00280294" target="_blank">10.1007/bf00280294</a></td>
<td>7flxo83l</td>
<td>0.319697</td>
<td><a href="Topic_19.html#zwl0safn">Plant_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a></td>
<td><a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a></td>
</tr>
<tr>
<th id="9yj7j4ba";>676</th>
<td>Yang_2019</td>
<td>G-Quadruplex DNA and RNA</td>
<td>Yang, Danzhou</td>
<td>2019</td>
<td>2019-08-23</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121297" target="_blank">PMC7121297</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31444741.0" target="_blank">31444741.0</a></td>
<td><a href="https://doi.org/10.1007/978-1-4939-9666-7_1" target="_blank">10.1007/978-1-4939-9666-7_1</a></td>
<td>9yj7j4ba</td>
<td>0.319461</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_19.html#ai8n1oeq">Pleij_1994</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a></td>
<td><a href="Topic_19.html#d9urjb9e">Masante_2015</a></td>
</tr>
<tr>
<th id="zk18gi8x";>677</th>
<td>Tengs_2013</td>
<td>A mobile genetic element with unknown function found in distantly related viruses</td>
<td>Tengs, Torstein; Kristoffersen, Anja Bråthen; Bachvaroff, Tsvetan R; Jonassen, Christine Monceyron</td>
<td>2013</td>
<td>2013-04-25</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3653767" target="_blank">PMC3653767</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23618040.0" target="_blank">23618040.0</a></td>
<td><a href="https://doi.org/10.1186/1743-422x-10-132" target="_blank">10.1186/1743-422x-10-132</a></td>
<td>zk18gi8x</td>
<td>0.317729</td>
<td><a href="Topic_25.html#g6obo798">Zheng_2008</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_25.html#t1e0tr4w">Lee_C_2017</a>, <a href="Topic_37.html#tiyjmih7">Francis_2016</a>, <a href="Topic_37.html#sd81bz0m">Gardner_2004</a></td>
<td><a href="Topic_12.html#goidlh08">Walker_2011</a></td>
</tr>
<tr>
<th id="7wvp6zq7";>678</th>
<td>Kumar_2013</td>
<td>Inhibition of translation by IFIT family members is determined by their ability to interact selectively with the 5′-terminal regions of cap0-, cap1- and 5′ppp- mRNAs</td>
<td>Kumar, Parimal; Sweeney, Trevor R.; Skabkin, Maxim A.; Skabkina, Olga V.; Hellen, Christopher U. T.; Pestova, Tatyana V.</td>
<td>2013</td>
<td>2013-12-25</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950709" target="_blank">PMC3950709</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/24371270.0" target="_blank">24371270.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkt1321" target="_blank">10.1093/nar/gkt1321</a></td>
<td>7wvp6zq7</td>
<td>0.317210</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_34.html#cik2wmlk">Ban_J_2018</a></td>
<td><a href="Topic_34.html#y9yz8xrh">Daffis_2010</a>, <a href="Topic_19.html#soxxnnk8">Habjan_2013</a></td>
</tr>
<tr>
<th id="xmgkpk0b";>679</th>
<td>Czech_2019</td>
<td>Octa-repeat domain of the mammalian prion protein mRNA forms stable A-helical hairpin structure rather than G-quadruplexes</td>
<td>Czech, Andreas; Konarev, Petr V.; Goebel, Ingrid; Svergun, Dmitri I.; Wills, Peter R.; Ignatova, Zoya</td>
<td>2019</td>
<td>2019-02-21</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6384910" target="_blank">PMC6384910</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30792490.0" target="_blank">30792490.0</a></td>
<td><a href="https://doi.org/10.1038/s41598-019-39213-2" target="_blank">10.1038/s41598-019-39213-2</a></td>
<td>xmgkpk0b</td>
<td>0.316862</td>
<td><a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#14iqq6wy">Atkins_1999</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#2fkghukw">Guo_Y_2013</a></td>
<td><a href="Topic_19.html#15s6otuz">Marcheschi_2007</a>, <a href="Topic_19.html#9rs5n1ik">Marczinke_1998</a>, <a href="Topic_55.html#ovy03sfy">Scrima_2004</a></td>
</tr>
<tr>
<th id="i2f5ksux";>680</th>
<td>Sevajol_2014</td>
<td>Insights into RNA synthesis, capping, and proofreading mechanisms of SARS-coronavirus</td>
<td>Sevajol, Marion; Subissi, Lorenzo; Decroly, Etienne; Canard, Bruno; Imbert, Isabelle</td>
<td>2014</td>
<td>2014-12-19</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114481" target="_blank">PMC7114481</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25451065.0" target="_blank">25451065.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2014.10.008" target="_blank">10.1016/j.virusres.2014.10.008</a></td>
<td>i2f5ksux</td>
<td>0.316773</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_19.html#d6vud7xg">Ogando_2019</a>, <a href="Topic_19.html#eljk918r">Chen_2016</a></td>
</tr>
<tr>
<th id="inlq9ee8";>681</th>
<td>UNKNOWN_1988</td>
<td>Integration of membrane proteins into the endoplasmic reticulum requires GTP</td>
<td>None</td>
<td>1988</td>
<td>1988-07-01</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2115162" target="_blank">PMC2115162</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2839521.0" target="_blank">2839521.0</a></td>
<td></td>
<td>inlq9ee8</td>
<td>0.315416</td>
<td><a href="Topic_73.html#377v2ufn">UNKNOWN_1993</a>, <a href="Topic_10.html#eblj0qw6">UNKNOWN_1987</a>, <a href="Topic_10.html#4sw25blb">UNKNOWN_1986</a>, <a href="Topic_73.html#3qi2llmr">UNKNOWN_1993</a>, <a href="Topic_73.html#fhl0ly3x">Wang_2013</a></td>
<td><a href="Topic_10.html#c8qcjve9">Faaberg_1996</a>, <a href="Topic_73.html#s4a8zs5a">UNKNOWN_1991</a></td>
</tr>
<tr>
<th id="ue15waq7";>682</th>
<td>Liu_L_2009</td>
<td>An Amphipathic α-Helix Controls Multiple Roles of Brome Mosaic Virus Protein 1a in RNA Replication Complex Assembly and Function</td>
<td>Liu, Ling; Westler, William M.; den Boon, Johan A.; Wang, Xiaofeng; Diaz, Arturo; Steinberg, H. Adam; Ahlquist, Paul</td>
<td>2009</td>
<td>2009-03-27</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2654722" target="_blank">PMC2654722</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19325881.0" target="_blank">19325881.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1000351" target="_blank">10.1371/journal.ppat.1000351</a></td>
<td>ue15waq7</td>
<td>0.315218</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#0mtqlnog">Diaz_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="p1b07b4t";>683</th>
<td>Wolf_2018</td>
<td>Origins and Evolution of the Global RNA Virome</td>
<td>Wolf, Yuri I.; Kazlauskas, Darius; Iranzo, Jaime; Lucía-Sanz, Adriana; Kuhn, Jens H.; Krupovic, Mart; Dolja, Valerian V.; Koonin, Eugene V.</td>
<td>2018</td>
<td>2018-11-27</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6282212" target="_blank">PMC6282212</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30482837.0" target="_blank">30482837.0</a></td>
<td><a href="https://doi.org/10.1128/mbio.02329-18" target="_blank">10.1128/mbio.02329-18</a></td>
<td>p1b07b4t</td>
<td>0.314062</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a></td>
<td><a href="Topic_37.html#8z78shbf">Wolf_2018</a>, <a href="Topic_12.html#s935ttyn">Wulan_2015</a></td>
</tr>
<tr>
<th id="hj675z1b";>684</th>
<td>Ju_J_2020</td>
<td>Nucleotide Analogues as Inhibitors of SARS-CoV Polymerase</td>
<td>Jingyue Ju; Xiaoxu Li; Shiv Kumar; Steffen Jockusch; Minchen Chien; Chuanjuan Tao; Irina Morozova; Sergey Kalachikov; Robert N. Kirchdoerfer; James J. Russo</td>
<td>2020</td>
<td>2020-03-14</td>
<td>BioRxiv</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/2020.03.12.989186" target="_blank">10.1101/2020.03.12.989186</a></td>
<td>hj675z1b</td>
<td>0.313758</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_54.html#8prn86g6">Chien_2020</a>, <a href="Topic_15.html#77cylm1o">Yamamoto_2004</a>, <a href="Topic_15.html#mtf7k4t8">Zhou_2011</a>, <a href="Topic_29.html#axbibuo5">Veiga_2006</a></td>
</tr>
<tr>
<th id="cefl4zot";>685</th>
<td>Ling_1995</td>
<td>Sequence and in vitro expression of the phosphoprotein gene of avian pneumovirus</td>
<td>Ling, Roger; Davis, Philip J.; Qingzhong, Yu; Wood, Carla M.; Pringle, Craig R.; Cavanagh, David; Easton, Andrew J.</td>
<td>1995</td>
<td>1995-05-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/7653102.0" target="_blank">7653102.0</a></td>
<td><a href="https://doi.org/10.1016/0168-1702(95)00008-e" target="_blank">10.1016/0168-1702(95)00008-e</a></td>
<td>cefl4zot</td>
<td>0.313180</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_09.html#2lyk6jxl">Parker_1990</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="6mb9w76f";>686</th>
<td>Chen_2015</td>
<td>Nuclear Magnetic Resonance-Assisted Prediction of Secondary Structure for RNA: Incorporation of Direction-Dependent Chemical Shift Constraints</td>
<td>Chen, Jonathan\nL.; Bellaousov, Stanislav; Tubbs, Jason D.; Kennedy, Scott D.; Lopez, Michael J.; Mathews, David H.; Turner, Douglas H.</td>
<td>2015</td>
<td>2015-10-09</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4666457" target="_blank">PMC4666457</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26451676.0" target="_blank">26451676.0</a></td>
<td><a href="https://doi.org/10.1021/acs.biochem.5b00833" target="_blank">10.1021/acs.biochem.5b00833</a></td>
<td>6mb9w76f</td>
<td>0.312325</td>
<td><a href="Topic_25.html#zocunore">Liao_2006</a>, <a href="Topic_25.html#1ef1cxc8">Chang_2011</a>, <a href="Topic_01.html#h6r6qdna">Polverino_2017</a>, <a href="Topic_25.html#2lg8i9r1">Dai_Q_2012</a>, <a href="Topic_25.html#9zm4per4">Dawson_2007</a></td>
<td><a href="Topic_19.html#n7o7x9ta">Cornish_2006</a>, <a href="Topic_19.html#tv8hi2wy">Low_J_2010</a></td>
</tr>
<tr>
<th id="gqrsogqf";>687</th>
<td>Kazakov_2015</td>
<td>Hepatitis C Virus RNA Replication Depends on Specific Cis- and Trans-Acting Activities of Viral Nonstructural Proteins</td>
<td>Kazakov, Teymur; Yang, Feng; Ramanathan, Harish N.; Kohlway, Andrew; Diamond, Michael S.; Lindenbach, Brett D.</td>
<td>2015</td>
<td>2015-04-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4395149" target="_blank">PMC4395149</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/25875808.0" target="_blank">25875808.0</a></td>
<td><a href="https://doi.org/10.1371/journal.ppat.1004817" target="_blank">10.1371/journal.ppat.1004817</a></td>
<td>gqrsogqf</td>
<td>0.312062</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_12.html#tgpsu4qz">Brockway_2005</a></td>
</tr>
<tr>
<th id="mj9ea464";>688</th>
<td>Lapps_1987</td>
<td>Sequence analysis of the bovine coronavirus nucleocapsid and matrix protein genes</td>
<td>Lapps, William; Hogue, Brenda G.; Brian, David A.</td>
<td>1987</td>
<td>1987-03-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7130558" target="_blank">PMC7130558</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/3029965.0" target="_blank">3029965.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(87)90312-6" target="_blank">10.1016/0042-6822(87)90312-6</a></td>
<td>mj9ea464</td>
<td>0.311832</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#vvnhktca">Toshio_1989</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_19.html#y3hgnb6u">Kapke_1986</a></td>
</tr>
<tr>
<th id="s3tdllby";>689</th>
<td>Burton_2016</td>
<td>The elusive quest for RNA knots</td>
<td>Burton, Aaron S.; Di Stefano, Marco; Lehman, Niles; Orland, Henri; Micheletti, Cristian</td>
<td>2016</td>
<td>2016-02-01</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4829277" target="_blank">PMC4829277</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26828280.0" target="_blank">26828280.0</a></td>
<td><a href="https://doi.org/10.1080/15476286.2015.1132069" target="_blank">10.1080/15476286.2015.1132069</a></td>
<td>s3tdllby</td>
<td>0.311397</td>
<td><a href="Topic_19.html#0brhn8oc">Staple_2005</a>, <a href="Topic_12.html#qdy29oym">Denison_2008</a>, <a href="Topic_19.html#c1kjvfwj">Liu_Y_2009</a>, <a href="Topic_19.html#ai8n1oeq">Pleij_1994</a>, <a href="Topic_12.html#oa24b5to">Zúñiga_2009</a></td>
<td><a href="Topic_19.html#7jdh882a">Borodavka_2016</a>, <a href="Topic_03.html#igkhn4m4">Ding_2012</a>, <a href="Topic_12.html#f32rcce3">Diaz_2012</a></td>
</tr>
<tr>
<th id="5zjnzsik";>690</th>
<td>Mikl_2018</td>
<td>High-throughput interrogation of programmed ribosomal frameshifting in human cells</td>
<td>Martin Mikl; Yitzhak Pilpel; Eran Segal</td>
<td>2018</td>
<td>2018-11-14</td>
<td>BioRxiv</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1101/469692" target="_blank">10.1101/469692</a></td>
<td>5zjnzsik</td>
<td>0.310935</td>
<td><a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#7fx1ghd3">Morikawa_1992</a>, <a href="Topic_35.html#kixzxs68">Naito_2007</a></td>
<td></td>
</tr>
<tr>
<th id="abgti7jh";>691</th>
<td>Pavesi_2020</td>
<td>New insights into the evolutionary features of viral overlapping genes by discriminant analysis</td>
<td>Pavesi, Angelo</td>
<td>2020</td>
<td>2020-04-02</td>
<td>PMC</td>
<td>Y</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.virol.2020.03.007" target="_blank">10.1016/j.virol.2020.03.007</a></td>
<td>abgti7jh</td>
<td>0.310433</td>
<td><a href="Topic_19.html#hpv6916w">Krause_1987</a>, <a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#i738t9lf">Xu_J_2016</a>, <a href="Topic_35.html#el7bdkcf">Wang_2007</a></td>
<td><a href="Topic_37.html#629fwmgk">Sabath_2012</a>, <a href="Topic_19.html#5rovh1xf">Godeny_1990</a>, <a href="Topic_47.html#90x177bv">Pavesi_2018</a></td>
</tr>
<tr>
<th id="momzoghp";>692</th>
<td>Cao_J_2008</td>
<td>Complete nucleotide sequence of polyprotein gene 1 and genome organization of turkey coronavirus</td>
<td>Cao, Jianzhong; Wu, Ching-Ching; Lin, Tsang Long</td>
<td>2008</td>
<td>2008-09-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114415" target="_blank">PMC7114415</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/18514348.0" target="_blank">18514348.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2008.04.015" target="_blank">10.1016/j.virusres.2008.04.015</a></td>
<td>momzoghp</td>
<td>0.310118</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#1jgqofbr">Kocherhans_2001</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_09.html#kxjomk2s">Chieochansin_2010</a></td>
<td><a href="Topic_09.html#7bp0ujqn">Lin_T_2004</a>, <a href="Topic_19.html#qfmzrexc">Grötzinger_1996</a></td>
</tr>
<tr>
<th id="yxc31cbj";>693</th>
<td>Rappe_2018</td>
<td>Antiviral activity of K22 against members of the order Nidovirales</td>
<td>Rappe, Julie Christiane Françoise; de Wilde, Adriaan; Di, Han; Müller, Christin; Stalder, Hanspeter; V’kovski, Philip; Snijder, Eric; Brinton, Margo A.; Ziebuhr, John; Ruggli, Nicolas; Thiel, Volker</td>
<td>2018</td>
<td>2018-02-15</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114538" target="_blank">PMC7114538</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/29337162.0" target="_blank">29337162.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2018.01.002" target="_blank">10.1016/j.virusres.2018.01.002</a></td>
<td>yxc31cbj</td>
<td>0.309868</td>
<td><a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_05.html#d9zmdm23">Crowe_2014</a>, <a href="Topic_07.html#tnvlafa2">Lu_P_2016</a>, <a href="Topic_40.html#o6rwqnu2">Yasui_2016</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a>, <a href="Topic_34.html#38bf0f1x">Sidhu_1996</a></td>
</tr>
<tr>
<th id="3jprs5q2";>694</th>
<td>LeDesma_2019</td>
<td>Hepatitis E Virus Replication</td>
<td>LeDesma, Robert; Nimgaonkar, Ila; Ploss, Alexander</td>
<td>2019</td>
<td>2019-08-06</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723718" target="_blank">PMC6723718</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31390784.0" target="_blank">31390784.0</a></td>
<td><a href="https://doi.org/10.3390/v11080719" target="_blank">10.3390/v11080719</a></td>
<td>3jprs5q2</td>
<td>0.309664</td>
<td><a href="Topic_19.html#59emvigh">Ryu_W_2017</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_15.html#my4n0vye">Valle-Casuso_2020</a></td>
</tr>
<tr>
<th id="xsuq2np8";>695</th>
<td>Dinan_2019</td>
<td>Comparative Analysis of Gene Expression in Virulent and Attenuated Strains of Infectious Bronchitis Virus at Subcodon Resolution</td>
<td>Dinan, Adam M.; Keep, Sarah; Bickerton, Erica; Britton, Paul; Firth, Andrew E.; Brierley, Ian</td>
<td>2019</td>
<td>2019-08-28</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6714804" target="_blank">PMC6714804</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31243124.0" target="_blank">31243124.0</a></td>
<td><a href="https://doi.org/10.1128/jvi.00714-19" target="_blank">10.1128/jvi.00714-19</a></td>
<td>xsuq2np8</td>
<td>0.308924</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#mn6yp6d7">Lamb_1991</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a></td>
<td><a href="Topic_09.html#v71436np">Ren_X_2008</a>, <a href="Topic_19.html#sik7m86l">Tzeng_2006</a>, <a href="Topic_19.html#yv9or7cu">Dinan_2019</a></td>
</tr>
<tr>
<th id="07u2kpe5";>696</th>
<td>Muñoz-Chimeno_2016</td>
<td>Full coding hepatitis E virus genotype 3 genome amplification method</td>
<td>Muñoz-Chimeno, M.; Forero, J.E.; Echevarría, J.M.; Muñoz-Bellido, J.L.; Vázquez-López, L.; Morago, L.; García-Galera, M.C.; Avellón, A.</td>
<td>2016</td>
<td>2016-04-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26784284.0" target="_blank">26784284.0</a></td>
<td><a href="https://doi.org/10.1016/j.jviromet.2016.01.004" target="_blank">10.1016/j.jviromet.2016.01.004</a></td>
<td>07u2kpe5</td>
<td>0.307994</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#giea69b5">Firth_2009</a>, <a href="Topic_19.html#y8xvh6hs">Yamanaka_1998</a>, <a href="Topic_19.html#m770a1rl">Wurch_1991</a>, <a href="Topic_19.html#bam3pa70">Lee_H_1991</a></td>
<td></td>
</tr>
<tr>
<th id="x5tlnv6i";>697</th>
<td>Hastie_2012</td>
<td>Structural Basis for the dsRNA Specificity of the Lassa Virus NP Exonuclease</td>
<td>Hastie, Kathryn M.; King, Liam B.; Zandonatti, Michelle A.; Saphire, Erica Ollmann</td>
<td>2012</td>
<td>2012-08-28</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3429428" target="_blank">PMC3429428</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22937163.0" target="_blank">22937163.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0044211" target="_blank">10.1371/journal.pone.0044211</a></td>
<td>x5tlnv6i</td>
<td>0.307472</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_34.html#p3b4yk5d">Case_2017</a>, <a href="Topic_34.html#9irxt0kh">Hastie_2011</a></td>
</tr>
<tr>
<th id="nw8zwv51";>698</th>
<td>Bruce_1989</td>
<td>Detection of enteroviruses using cDNA and synthetic oligonucleotide probes</td>
<td>Bruce, C.; Al-Nakib, W.; Forsyth, M.; Stanway, G.; Almond, J.W.</td>
<td>1989</td>
<td>1989-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/2550504.0" target="_blank">2550504.0</a></td>
<td><a href="https://doi.org/10.1016/0166-0934(89)90035-9" target="_blank">10.1016/0166-0934(89)90035-9</a></td>
<td>nw8zwv51</td>
<td>0.307308</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#86ptuyn8">Majerciak_2018</a></td>
<td><a href="Topic_42.html#2zp833vq">Benfield_1991</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a></td>
</tr>
<tr>
<th id="0hfku8o4";>699</th>
<td>Piotrowski_2007</td>
<td>Production of Coronavirus Nonstructural Proteins in Soluble Form for Crystallization</td>
<td>Piotrowski, Yvonne; Ponnusamy, Rajesh; Glaser, Stephanie; Daabach, Anniken; Moll, Ralf; Hilgenfeld, Rolf</td>
<td>2007</td>
<td>2007-11-28</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7121525" target="_blank">PMC7121525</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/19057878.0" target="_blank">19057878.0</a></td>
<td><a href="https://doi.org/10.1007/978-1-59745-181-9_13" target="_blank">10.1007/978-1-59745-181-9_13</a></td>
<td>0hfku8o4</td>
<td>0.307002</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a></td>
<td><a href="Topic_23.html#iesysf3l">Eshaghi_2005</a></td>
</tr>
<tr>
<th id="i1rhuwvo";>700</th>
<td>Woo_J_2019</td>
<td>An in vivo cell-based assay for investigating the specific interaction between the SARS-CoV N-protein and its viral RNA packaging sequence</td>
<td>Woo, Jiwon; Lee, Eunice Yoojin; Lee, Mirae; Kim, Taeyeon; Cho, Yong-Eun</td>
<td>2019</td>
<td>2019-12-10</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7092827" target="_blank">PMC7092827</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31594639.0" target="_blank">31594639.0</a></td>
<td><a href="https://doi.org/10.1016/j.bbrc.2019.09.115" target="_blank">10.1016/j.bbrc.2019.09.115</a></td>
<td>i1rhuwvo</td>
<td>0.306292</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a></td>
<td><a href="Topic_35.html#1zoizzdp">Wang_2009</a>, <a href="Topic_23.html#iv5s24pe">Shi_S_2006</a>, <a href="Topic_55.html#ul0k95x2">van_der_Linden_2014</a></td>
</tr>
<tr>
<th id="koo0d6g9";>701</th>
<td>Comas-Garcia_2019</td>
<td>Packaging of Genomic RNA in Positive-Sense Single-Stranded RNA Viruses: A Complex Story</td>
<td>Comas-Garcia, Mauricio</td>
<td>2019</td>
<td>2019-03-13</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6466141" target="_blank">PMC6466141</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/30871184.0" target="_blank">30871184.0</a></td>
<td><a href="https://doi.org/10.3390/v11030253" target="_blank">10.3390/v11030253</a></td>
<td>koo0d6g9</td>
<td>0.305716</td>
<td><a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="wgwom8cd";>702</th>
<td>Shi_W_2020</td>
<td>A nucleobase-binding pocket in a viral RNA-dependent RNA polymerase contributes to elongation complex stability</td>
<td>Shi, Wei; Ye, Han-Qing; Deng, Cheng-Lin; Li, Rui; Zhang, Bo; Gong, Peng</td>
<td>2020</td>
<td>2020-02-20</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7026628" target="_blank">PMC7026628</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31863580.0" target="_blank">31863580.0</a></td>
<td><a href="https://doi.org/10.1093/nar/gkz1170" target="_blank">10.1093/nar/gkz1170</a></td>
<td>wgwom8cd</td>
<td>0.304659</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#rwqxl2yj">Pong_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a></td>
<td><a href="Topic_19.html#35xqgbut">Bhullar_2014</a>, <a href="Topic_12.html#wo462anq">Xia_H_2015</a></td>
</tr>
<tr>
<th id="7bp0ujqn";>703</th>
<td>Lin_T_2004</td>
<td>Complete sequences of 3′ end coding region for structural protein genes of turkey coronavirus</td>
<td>Lin, Tsang Long; Loa, Chien Chang; Wu, Ching Ching</td>
<td>2004</td>
<td>2004-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114097" target="_blank">PMC7114097</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/15522448.0" target="_blank">15522448.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2004.06.003" target="_blank">10.1016/j.virusres.2004.06.003</a></td>
<td>7bp0ujqn</td>
<td>0.304345</td>
<td><a href="Topic_19.html#88mgoxz6">Luytjes_1988</a>, <a href="Topic_19.html#kw2cedm7">Brown_1984</a>, <a href="Topic_19.html#l761o6n3">Tohya_1991</a>, <a href="Topic_19.html#1jgqofbr">Kocherhans_2001</a></td>
<td><a href="Topic_19.html#x2w73spd">Goldberg_1991</a>, <a href="Topic_62.html#mj9ea464">Lapps_1987</a></td>
</tr>
<tr>
<th id="dr2uow4m";>704</th>
<td>Picard-Jean_2013</td>
<td>The Immunosuppressive Agent Mizoribine Monophosphate Is an Inhibitor of the Human RNA Capping Enzyme</td>
<td>Picard-Jean, Frédéric; Bougie, Isabelle; Shuto, Satoshi; Bisaillon, Martin</td>
<td>2013</td>
<td>2013-01-17</td>
<td>COMM-USE</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3547949" target="_blank">PMC3547949</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/23349942.0" target="_blank">23349942.0</a></td>
<td><a href="https://doi.org/10.1371/journal.pone.0054621" target="_blank">10.1371/journal.pone.0054621</a></td>
<td>dr2uow4m</td>
<td>0.304069</td>
<td><a href="Topic_12.html#qm9urt2w">Blank_2017</a>, <a href="Topic_12.html#64cnoqpi">Ivanova_2015</a>, <a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_55.html#4gjo72hx">Tremblay-Létourneau_2011</a>, <a href="Topic_54.html#hkfkugzn">Sticher_2020</a>, <a href="Topic_19.html#l5n30kbm">Wilde_2019</a></td>
</tr>
<tr>
<th id="p9kwqle8";>705</th>
<td>Wang_2012</td>
<td>The R-rich motif of Beet black scorch virus P7a movement protein is important for the nuclear localization, nucleolar targeting and viral infectivity</td>
<td>Wang, Xiaohui; Zhang, Yanjing; Xu, Jin; Shi, Lindan; Fan, Huiyan; Han, Chenggui; Li, Dawei; Yu, Jialin</td>
<td>2012</td>
<td>2012-08-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td></td>
<td><a href="https://doi.org/10.1016/j.virusres.2012.05.001" target="_blank">10.1016/j.virusres.2012.05.001</a></td>
<td>p9kwqle8</td>
<td>0.303954</td>
<td><a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_29.html#v8l5cj5h">Greene_2012</a>, <a href="Topic_12.html#6lvn10f4">Shi_S_2000</a></td>
<td></td>
</tr>
<tr>
<th id="sdgiyrzm";>706</th>
<td>Eun_A_2000</td>
<td>Simultaneous quantitation of two orchid viruses by the TaqMan® real-time RT-PCR</td>
<td>Eun, Alvin Jin-Cherng; Seoh, Mui-Leng; Wong, Sek-Man</td>
<td>2000</td>
<td>2000-06-30</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/10856762.0" target="_blank">10856762.0</a></td>
<td><a href="https://doi.org/10.1016/s0166-0934(00)00161-0" target="_blank">10.1016/s0166-0934(00)00161-0</a></td>
<td>sdgiyrzm</td>
<td>0.303630</td>
<td><a href="Topic_21.html#l6t49b7d">Borja_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_19.html#86ptuyn8">Majerciak_2018</a>, <a href="Topic_19.html#vyo8l14p">Chen_2013</a>, <a href="Topic_37.html#402ls2aq">Endoh_2005</a></td>
<td></td>
</tr>
<tr>
<th id="rx90f66k";>707</th>
<td>Hilimire_2015</td>
<td>N-Methylation as a Strategy for Enhancing the Affinity and Selectivity of RNA-binding Peptides: Application to the HIV-1 Frameshift-Stimulating RNA</td>
<td>Hilimire, Thomas\nA.; Bennett, Ryan P.; Stewart, Ryan A.; Garcia-Miranda, Pablo; Blume, Alex; Becker, Jordan; Sherer, Nathan; Helms, Eric D.; Butcher, Samuel E.; Smith, Harold C.; Miller, Benjamin L.</td>
<td>2015</td>
<td>2015-10-23</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4720131" target="_blank">PMC4720131</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26496521.0" target="_blank">26496521.0</a></td>
<td><a href="https://doi.org/10.1021/acschembio.5b00682" target="_blank">10.1021/acschembio.5b00682</a></td>
<td>rx90f66k</td>
<td>0.303355</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a></td>
<td><a href="Topic_19.html#4eh22ek7">Ofori_2014</a>, <a href="Topic_19.html#35xqgbut">Bhullar_2014</a></td>
</tr>
<tr>
<th id="1w54xw02";>708</th>
<td>Gibson_2011</td>
<td>Chapter fifteen Enzymatic Assembly of Overlapping DNA Fragments</td>
<td>Gibson, Daniel G.</td>
<td>2011</td>
<td>2011-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7149801" target="_blank">PMC7149801</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/21601685.0" target="_blank">21601685.0</a></td>
<td><a href="https://doi.org/10.1016/b978-0-12-385120-8.00015-2" target="_blank">10.1016/b978-0-12-385120-8.00015-2</a></td>
<td>1w54xw02</td>
<td>0.303145</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_21.html#akr0shvb">Thiel_2002</a>, <a href="Topic_19.html#4z5jxxf2">Otsuka_1999</a>, <a href="Topic_21.html#rlgzgyzn">Lee_J_2019</a></td>
<td><a href="Topic_55.html#jta53v1l">Pradeepkumar_2012</a>, <a href="Topic_21.html#c31xsyeo">Moser_2012</a>, <a href="Topic_21.html#kt9pmfdr">Kutyavin_2006</a></td>
</tr>
<tr>
<th id="xlw4b8fy";>709</th>
<td>Fan_Z_2012</td>
<td>An alternative −1/+2 open reading frame exists within viral Npro(1–19) region of bovine viral diarrhea virus SD-1</td>
<td>Fan, Zhen-Chuan; Bird, R. Curtis</td>
<td>2012</td>
<td>2012-01-31</td>
<td>PMC</td>
<td>N</td>
<td></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/22079882.0" target="_blank">22079882.0</a></td>
<td><a href="https://doi.org/10.1016/j.virusres.2011.10.022" target="_blank">10.1016/j.virusres.2011.10.022</a></td>
<td>xlw4b8fy</td>
<td>0.302529</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#fqqbyqnh">Tallmadge_2008</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a></td>
<td></td>
</tr>
<tr>
<th id="ao29zx1u";>710</th>
<td>Banner_1991</td>
<td>Random nature of coronavirus RNA recombination in the absence of selection pressure</td>
<td>Banner, Lisa R.; Mc Lai, Michael</td>
<td>1991</td>
<td>1991-11-30</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7131166" target="_blank">PMC7131166</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/1656597.0" target="_blank">1656597.0</a></td>
<td><a href="https://doi.org/10.1016/0042-6822(91)90795-d" target="_blank">10.1016/0042-6822(91)90795-d</a></td>
<td>ao29zx1u</td>
<td>0.302093</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_19.html#je6oe1h4">Auewarakul_2005</a>, <a href="Topic_12.html#dwjijmwz">Volmer_2010</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a></td>
<td><a href="Topic_19.html#tqeo15ar">Banner_1990</a></td>
</tr>
<tr>
<th id="2se4d1yp";>711</th>
<td>Yun_S_2015</td>
<td>Bacterial Artificial Chromosomes: A Functional Genomics Tool for the Study of Positive-strand RNA Viruses</td>
<td>Yun, Sang-Im; Song, Byung-Hak; Kim, Jin-Kyoung; Lee, Young-Min</td>
<td>2015</td>
<td>2015-12-29</td>
<td>NONCOMM</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4780872" target="_blank">PMC4780872</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/26780115.0" target="_blank">26780115.0</a></td>
<td><a href="https://doi.org/10.3791/53164" target="_blank">10.3791/53164</a></td>
<td>2se4d1yp</td>
<td>0.301556</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_14.html#kihn83ny">Armesto_2007</a>, <a href="Topic_14.html#3p0v6u1q">Keep_2014</a>, <a href="Topic_14.html#c8brmtc0">Bickerton_2017</a>, <a href="Topic_14.html#0c45dnol">Keep_2015</a></td>
<td><a href="Topic_14.html#zqe5nnu3">Usme-Ciro_2014</a>, <a href="Topic_19.html#ov92qh6h">Nowak_1984</a>, <a href="Topic_19.html#ndjbrtrv">Satyanarayana_2003</a></td>
</tr>
<tr>
<th id="uztke3jt";>712</th>
<td>Müller_2020</td>
<td>Comparison of broad-spectrum antiviral activities of the synthetic rocaglate CR-31-B (−) and the eIF4A-inhibitor Silvestrol</td>
<td>Müller, Christin; Obermann, Wiebke; Schulte, Falk W.; Lange-Grünweller, Kerstin; Oestereich, Lisa; Elgner, Fabian; Glitscher, Mirco; Hildt, Eberhard; Singh, Kamini; Wendel, Hans-Guido; Hartmann, Roland K.; Ziebuhr, John; Grünweller, Arnold</td>
<td>2020</td>
<td>2020-03-31</td>
<td>None</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114339" target="_blank">PMC7114339</a></td>
<td><a href="https://www.ncbi.nlm.nih.gov/pubmed/31931103.0" target="_blank">31931103.0</a></td>
<td><a href="https://doi.org/10.1016/j.antiviral.2020.104706" target="_blank">10.1016/j.antiviral.2020.104706</a></td>
<td>uztke3jt</td>
<td>0.300875</td>
<td><a href="Topic_19.html#x8pkgsk1">Stork_2011</a>, <a href="Topic_34.html#s1vyhijy">Meyerson_2017</a>, <a href="Topic_19.html#hjiiohsp">Kang_2009</a>, <a href="Topic_12.html#9et0iwj4">Berkhout_2006</a>, <a href="Topic_12.html#xupvcbjm">Yasuda-Inoue_2013</a></td>
<td><a href="Topic_55.html#et00ovrr">Grazioso_2012</a>, <a href="Topic_54.html#1zk64gsg">Liu_Q_2020</a>, <a href="Topic_34.html#38bf0f1x">Sidhu_1996</a>, <a href="Topic_54.html#vnrv5cmc">Müller_2018</a></td>
</tr>
<tr>
<th id="31xmue1g";>713</th>
<td>Bujarski_2008</td>
<td>Recombination</td>
<td>Bujarski, J.J.</td>
<td>2008</td>
<td>2008-12-31</td>
<td>PMC</td>
<td>N</td>
<td><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7148591" target="_blank">PMC7148591</a></td>
<td></td>
<td><a href="https://doi.org/10.1016/b978-012374410-4.00545-8" target="_blank">10.1016/b978-012374410-4.00545-8</a></td>
<td>31xmue1g</td>
<td>0.300854</td>
<td><a href="Topic_19.html#4ih3d2d1">Rice_1992</a>, <a href="Topic_12.html#2yl5qwsn">den_Boon_2010</a>, <a href="Topic_19.html#jxhtdhgg">Payne_2017</a>, <a href="Topic_12.html#sblrsi6y">Trobaugh_2017</a>, <a href="Topic_30.html#n8zg6rsj">Wang_2018</a></td>
<td><a href="Topic_01.html#53atdvlv">Simon-Loriere_2011</a></td>
</tr>
</tbody>
</table>
</body>
</html>
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<div class="fullcomment"><dl class="attributes block"> <dt>Definition Classes</dt><dd>AnyRef</dd><dt>Annotations</dt><dd>
<span class="name">@throws</span><span class="args">(<span>
<span class="defval" name="classOf[java.lang.InterruptedException]">...</span>
</span>)</span>
</dd></dl></div>
</li><li name="scala.AnyRef#wait" visbl="pub" data-isabs="false" fullComment="yes" group="Ungrouped">
<a id="wait(x$1:Long,x$2:Int):Unit"></a>
<a id="wait(Long,Int):Unit"></a>
<h4 class="signature">
<span class="modifier_kind">
<span class="modifier">final </span>
<span class="kind">def</span>
</span>
<span class="symbol">
<span class="name">wait</span><span class="params">(<span name="arg0">arg0: <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Long" class="extype" target="_top">Long</a></span>, <span name="arg1">arg1: <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Int" class="extype" target="_top">Int</a></span>)</span><span class="result">: <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Unit" class="extype" target="_top">Unit</a></span>
</span>
</h4><span class="permalink">
<a href="../../../index.html#net.liftmodules.FoBoAJS.package$$API$$Angular1$@wait(x$1:Long,x$2:Int):Unit" title="Permalink" target="_top">
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<div class="fullcomment"><dl class="attributes block"> <dt>Definition Classes</dt><dd>AnyRef</dd><dt>Annotations</dt><dd>
<span class="name">@throws</span><span class="args">(<span>
<span class="defval" name="classOf[java.lang.InterruptedException]">...</span>
</span>)</span>
</dd></dl></div>
</li><li name="scala.AnyRef#wait" visbl="pub" data-isabs="false" fullComment="yes" group="Ungrouped">
<a id="wait(x$1:Long):Unit"></a>
<a id="wait(Long):Unit"></a>
<h4 class="signature">
<span class="modifier_kind">
<span class="modifier">final </span>
<span class="kind">def</span>
</span>
<span class="symbol">
<span class="name">wait</span><span class="params">(<span name="arg0">arg0: <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Long" class="extype" target="_top">Long</a></span>)</span><span class="result">: <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Unit" class="extype" target="_top">Unit</a></span>
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<div class="fullcomment"><dl class="attributes block"> <dt>Definition Classes</dt><dd>AnyRef</dd><dt>Annotations</dt><dd>
<span class="name">@throws</span><span class="args">(<span>
<span class="defval" name="classOf[java.lang.InterruptedException]">...</span>
</span>)</span>
</dd></dl></div>
</li></ol>
</div>
</div>
<div id="inheritedMembers">
<div class="parent" name="scala.Serializable">
<h3>Inherited from <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Serializable" class="extype" target="_top">Serializable</a></h3>
</div><div class="parent" name="java.io.Serializable">
<h3>Inherited from <span class="extype" name="java.io.Serializable">Serializable</span></h3>
</div><div class="parent" name="scala.Product">
<h3>Inherited from <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Product" class="extype" target="_top">Product</a></h3>
</div><div class="parent" name="scala.Equals">
<h3>Inherited from <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Equals" class="extype" target="_top">Equals</a></h3>
</div><div class="parent" name="net.liftmodules.FoBoAJS.API">
<h3>Inherited from <a href="package$$API.html" class="extype" name="net.liftmodules.FoBoAJS.API">API</a></h3>
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<h3>Inherited from <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.AnyRef" class="extype" target="_top">AnyRef</a></h3>
</div><div class="parent" name="scala.Any">
<h3>Inherited from <a href="http://www.scala-lang.org/api/2.11.7/index.html#scala.Any" class="extype" target="_top">Any</a></h3>
</div>
</div>
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<div class="group" name="Ungrouped">
<h3>Ungrouped</h3>
</div>
</div>
</div>
<div id="tooltip"></div>
<div id="footer"> </div>
</body>
</html>
| karma4u101/FoBo-Demo | fobo-lift-template-demo/src/main/webapp/foboapi/older/v1.7/net/liftmodules/FoBoAJS/package$$API$$Angular1$.html | HTML | apache-2.0 | 27,177 |
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
<html>
<head>
<title>列表控件属性</title>
<meta http-equiv="Content-Type" content="text/html; charset=utf-8"/>
<meta http-equiv="X-UA-Compatible" content="IE=Edge,chrome=1" >
<meta name="generator" content="www.leipi.org" />
<link rel="stylesheet" href="bootstrap/css/bootstrap.min.css">
<link rel="stylesheet" href="leipi.style.css">
<script type="text/javascript" src="../dialogs/internal.js"></script>
<script type="text/javascript" src="./jquery-1.7.2.min.js"></script>
<script type="text/javascript">
function createElement(type, name)
{
var element = null;
try {
element = document.createElement('<'+type+' name="'+name+'">');
} catch (e) {}
if(element==null) {
element = document.createElement(type);
element.name = name;
}
return element;
}
</script>
</head>
<body>
<div class="content">
<table class="table table-striped">
<thead>
<tr>
<td>
<span> 控件名称 :</span>
<input id="orgname" placeholder="必填项" type="text" class="input-medium" value="列表控件"/> <span class="label label-important">*</span>
</td>
<td>
宽 <input id="orgwidth" type="text" value="100%" class="input-small span1" placeholder="auto"/> % 或 px
</td>
</tr>
</thead>
</table>
<table class="table table-striped table-bordered table-condensed" id="tbl">
<thead>
<tr>
<th> <span>序号</span> </th>
<th> <span>表头</span> </th>
<th> <span>类型</span> </th>
<th> <span>单位</span> </th>
<th> <span>合计</span> <a id="showCountTips" title="在该列的底部显示该列的合计数值,数据类型只允许数值类型" rel="popover"><i class="icon-info-sign"></i></a> </th>
<th> <span>默认值</span> </th>
</tr>
</thead>
<tbody id="tbl1">
<tr>
<td><span class="badge">1</span></td>
<td title="Tab键切换输入框"> <input id="item_1" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_1" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_1" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_1" class="csum" value="1"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_1" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">2</span></td>
<td title="Tab键切换输入框"> <input id="item_2" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_2" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_2" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_2" class="csum" value="2"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_2" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">3</span></td>
<td title="Tab键切换输入框"> <input id="item_3" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_3" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_3" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_3" class="csum" value="3"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_3" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">4</span></td>
<td title="Tab键切换输入框"> <input id="item_4" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_4" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_4" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_4" class="csum" value="4"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_4" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">5</span></td>
<td title="Tab键切换输入框"> <input id="item_5" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_5" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_5" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_5" class="csum" value="5"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_5" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">6</span></td>
<td title="Tab键切换输入框"> <input id="item_6" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_6" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_6" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_6" class="csum" value="6"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_6" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">7</span></td>
<td title="Tab键切换输入框"> <input id="item_7" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_7" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_7" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_7" class="csum" value="7"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_7" type="text" class="input-medium"/></td>
</tr>
<tr>
<td><span class="badge">8</span></td>
<td title="Tab键切换输入框"> <input id="item_8" type="text" class="input-medium"> </td>
<td title="Tab键切换输入框">
<select id="coltype_8" class="input-medium">
<option value="text">单行输入框</option>
<option value="textarea">多行输入框</option>
<option value="int">数值</option>
</select>
</td>
<td title="Tab键切换输入框"> <label><input type="text" class="input-mini" id="unit_8" value=""> </label> </td>
<td title="Tab键切换输入框"> <label> <input type="checkbox" id="sum_8" class="csum" value="8"> </label> </td>
<td title="Tab键切换输入框"><input id="colvalue_8" type="text" class="input-medium"/></td>
</tr>
</tbody>
</table>
<!--div class="alert alert-danger">提示:</div-->
</div>
<script type="text/javascript">
var oNode = null,thePlugins = 'listctrl';
var rows_count = 8;
var adefaultDatatype = ['text','textarea','int','calc'];
window.onload = function() {
//弹出窗口初始化函数,这里主要是判断是编辑下拉列表还是新增
if( UE.plugins[thePlugins].editdom ){
oNode = UE.plugins[thePlugins].editdom;
$G('orgname').value = oNode.getAttribute('title');
var gWidth=oNode.getAttribute('orgwidth');
var gTitle = oNode.getAttribute('orgtitle'),
gColType = oNode.getAttribute('orgcoltype'),
gUnit = oNode.getAttribute('orgunit'),
gSum = oNode.getAttribute('orgsum'),
gColValue = oNode.getAttribute('orgcolvalue');
var aTitle = gTitle.split('`'),
aColType = gColType ? gColType.split('`') : null,
aUnit = gUnit ? gUnit.split('`') : null,
aSum = gSum ? gSum.split('`') : null,
aColValue = gColValue ? gColValue.split('`') : null;
$G('orgwidth').value = gWidth;
for ( var i = 0;i < aTitle.length-1; i++ ) {
var sItem = 'item_' + (i + 1),
sColtype = 'coltype_' + (i + 1),
sUnit = 'unit_' + (i + 1),
sNum = 'sum_' + (i + 1),
sColValue = 'colvalue_' + (i + 1);
$G(sItem).value = aTitle[i];
$G(sUnit).value = aUnit[i];
if ( gSum ) {
$G(sNum).checked = aSum[i] == 1 ? true : false;
}
if ( gColType ) {
$('#' + sColtype).val(aColType[i]);
}
if ( gColValue ) {
if($.inArray(aColType[i],adefaultDatatype) !== -1){
$G(sColValue).value = aColValue[i];
}
}
}
}
//合计,强制选择 int
$(".csum").click(function(){
if($(this).attr("checked"))
{
var i = $(this).val();
$("#coltype_"+ i).val('int');
}
});
}
dialog.oncancel = function () {
if( UE.plugins[thePlugins].editdom ) {
delete UE.plugins[thePlugins].editdom;
}
};
dialog.onok = function (){
var gName=$G('orgname').value.replace(/\"/g,"""),gWidth=$G('orgwidth').value;
if( gName == '') {
alert('控件名称不能为空');
$G('orgname').focus();
return false;
}
var gTitle = '',gColType = '' ,gUnitValue='' ,gSum = '' ,gColValue = '' ,
nCount = 0 ;
for (var i = 1;i <= rows_count; i ++ ) {
var oItem = $G( "item_" + i ) ,
oSum = $G( 'sum_'+i ) , oColType = $G('coltype_' + i) ,
oColValue = $G('colvalue_' + i) , oUnit = $G( 'unit_' + i);
if ( oItem.value != '') {
if(gTitle.indexOf(oItem.value+ '`') !== -1 )
{
continue;//重复
}
gTitle += oItem.value + '`'; //表头
nCount ++ ;
if ( oSum.checked ) { //合计
gSum += '1`';
} else {
gSum += '0`';
}
gColType += oColType.value + '`';
gColValue += oColValue.value + '`';
gUnitValue += oUnit.value + '`';
}//end if
}//end for
if ( nCount == 0 ) {
alert("表头项目不能为空");
return false;
}
if( !oNode ) {
try {
oNode = createElement('input','leipiNewField');
oNode.setAttribute('leipiPlugins',thePlugins );
oNode.setAttribute('type','text');
oNode.setAttribute('value','{列表控件}');
oNode.setAttribute('readonly','readonly');
oNode.setAttribute('title',gName);
oNode.setAttribute('orgtitle',gTitle);
oNode.setAttribute('orgcoltype',gColType);
oNode.setAttribute('orgunit',gUnitValue);
oNode.setAttribute('orgsum',gSum);
oNode.setAttribute('orgcolvalue',gColValue);
if( gWidth != '' ) {
oNode.style.width = gWidth;
}
oNode.setAttribute('orgwidth',gWidth );
editor.execCommand('insertHtml',oNode.outerHTML);
return true ;
} catch (e) {
try {
editor.execCommand('error');
} catch ( e ) {
alert('控件异常,请到 [雷劈网] 反馈或寻求帮助!');
}
return false;
}
} else {
//修改
oNode.setAttribute('leipiPlugins',thePlugins );
oNode.setAttribute('title',gName);
oNode.setAttribute('orgtitle',gTitle);
oNode.setAttribute('orgcoltype',gColType);
oNode.setAttribute('orgunit',gUnitValue);
oNode.setAttribute('orgsum',gSum);
oNode.setAttribute('orgcolvalue',gColValue);
if( gWidth != '' ) {
oNode.style.width = gWidth;
}else
{
oNode.style.width = '';
}
oNode.setAttribute('orgwidth',gWidth );
delete UE.plugins[thePlugins].editdom; //使用后清空这个对象,变回新增模式
}
};
</script>
</body>
</html>
| seeyoui/kensite_cms | src/main/webapp/script/ueditor/formdesign/listctrl.html | HTML | apache-2.0 | 16,502 |
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| QianChenglong/lily | doc/html/index.html | HTML | apache-2.0 | 3,740 |
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{
curIndex=0;
}
else
{
curIndex+=1;
}
obj.src="images/"+arr[curIndex];
}
</script>
<img src="images/p1.jpg" width="400" height="600" id="showpic" />
</body>
</html> | qinting513/Learning-QT | 2016 Plan/11月/JS 5天课程讲义/JavaScript备课/day04 DOM/备课代码/02-DOM-改变HTML之图片浏览器.html | HTML | apache-2.0 | 819 |
<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="utf-8">
<meta http-equiv="X-UA-Compatible" content="IE=edge">
<meta name="viewport" content="width=device-width, initial-scale=1">
<title>assan - one page theme</title>
<!-- Bootstrap -->
<link href="bootstrap/css/bootstrap.min.css" rel="stylesheet">
<!-- custom css -->
<link href="css/one-page.css" rel="stylesheet" type="text/css" media="screen">
<!-- font awesome for icons -->
<link href="font-awesome-4.3.0/css/font-awesome.min.css" rel="stylesheet">
<!-- flex slider css -->
<link href="css/flexslider.css" rel="stylesheet" type="text/css" media="screen">
<!-- animated css -->
<link href="css/animate.css" rel="stylesheet" type="text/css" media="screen">
<!--Revolution slider css-->
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<!--google fonts-->
<link href='http://fonts.googleapis.com/css?family=Dosis:300,400,500' rel='stylesheet' type='text/css'>
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<link href="css/owl.carousel.css" rel="stylesheet" type="text/css" media="screen">
<link href="css/owl.theme.css" rel="stylesheet" type="text/css" media="screen">
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<link href="css/yamm.css" rel="stylesheet" type="text/css">
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<![endif]-->
</head>
<body data-spy="scroll">
<!--parallax background no slider-->
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<div class="fullwidthbanner" id="home">
<div class="ken-burns-banner">
<ul> <!-- SLIDE -->
<li class="dark" data-transition="fade" data-slotamount="1" data-masterspeed="1500" data-thumb="img/bg-4.jpg" data-delay="10000" data-saveperformance="off" data-title="slider 1">
<!-- MAIN IMAGE -->
<img src="img/bg-4.jpg" alt="kenburns1" data-bgposition="left center" data-kenburns="on" data-duration="10000" data-ease="Linear.easeNone" data-bgfit="130" data-bgfitend="100" data-bgpositionend="right center">
<!-- LAYERS -->
<div class="caption customin customout tp-resizeme ken-burns-cap font-alt"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="-100"
data-customin="x:-50;y:-300;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.5;scaleY:0.5;skewX:0;skewY:0;opacity:0;transformPerspective:0;transformOrigin:50% 50%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="1000"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
Made with love in Munnali Dhani
</div>
<div class="caption customin customout tp-resizeme Ken-burns-heading font-alt"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="0"
data-customin="x:0;y:0;z:0;rotationX:90;rotationY:0;rotationZ:0;scaleX:1;scaleY:1;skewX:0;skewY:0;opacity:0;transformPerspective:200;transformOrigin:50% 0%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="1300"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
Perfect for Everyone
</div>
<div class="caption customin customout tp-resizeme"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="120"
data-customin="x:50;y:150;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.5;scaleY:0.5;skewX:0;skewY:0;opacity:0;transformPerspective:0;transformOrigin:50% 50%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="1500"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
<div class="rev-buttons scroll-to">
<a href="#services" class="btn btn-theme-bg btn-lg">
See More
</a>
<a href="#contact" class="btn btn-lg border-white">get in touch</a>
</div>
</div>
</li>
<!-- SLIDE -->
<li data-transition="slideup" data-slotamount="1" data-masterspeed="1500" data-thumb="img/bg-2.jpg" data-delay="10000" data-saveperformance="off" data-title="slider 2">
<!-- MAIN IMAGE -->
<img src="img/bg-2.jpg" alt="kenburns6" data-bgposition="center bottom" data-kenburns="on" data-duration="10000" data-ease="Linear.easeNone" data-bgfit="100" data-bgfitend="120" data-bgpositionend="center top">
<!-- LAYERS -->
<div class="caption customin customout tp-resizeme ken-burns-cap font-alt"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="-100"
data-customin="x:-50;y:-300;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.5;scaleY:0.5;skewX:0;skewY:0;opacity:0;transformPerspective:0;transformOrigin:50% 50%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="800"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
Web Design / Graphics Design / Web Development
</div>
<div class="caption customin customout tp-resizeme Ken-burns-heading font-alt"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="-14"
data-customin="x:0;y:0;z:0;rotationX:90;rotationY:0;rotationZ:0;scaleX:1;scaleY:1;skewX:0;skewY:0;opacity:0;transformPerspective:200;transformOrigin:50% 0%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="1200"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
Made for Agencies
</div>
<div class="caption customin customout tp-resizeme"
data-x="center"
data-hoffset="0"
data-y="center"
data-voffset="83"
data-customin="x:50;y:150;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.5;scaleY:0.5;skewX:0;skewY:0;opacity:0;transformPerspective:0;transformOrigin:50% 50%;"
data-customout="x:0;y:0;z:0;rotationX:0;rotationY:0;rotationZ:0;scaleX:0.75;scaleY:0.75;skewX:0;skewY:0;opacity:0;transformPerspective:600;transformOrigin:50% 50%;"
data-speed="800"
data-start="1500"
data-startslide="1"
data-easing="Power4.easeOut"
data-endspeed="500"
data-endeasing="Power4.easeIn">
<div class="rev-buttons scroll-to">
<a href="#services" class="btn btn-theme-bg btn-lg">
See More
</a>
<a href="#work" class="btn btn-lg border-white">Our portfolio</a>
</div>
</div>
</li>
</ul>
</div>
</div><!--full width banner-->
<!--navigation -->
<!-- Static navbar -->
<div class="navbar navbar-default navbar-static-top sticky" role="navigation">
<div class="container">
<div class="navbar-header">
<button type="button" class="navbar-toggle" data-toggle="collapse" data-target=".navbar-collapse">
<span class="sr-only">Toggle navigation</span>
<span class="icon-bar"></span>
<span class="icon-bar"></span>
<span class="icon-bar"></span>
</button>
<a class="navbar-brand" href="index.html"><img src="img/logo.png" alt=""></a>
</div>
<div class="navbar-collapse collapse">
<ul class="nav navbar-nav navbar-right scroll-to">
<li class="dropdown active"> <a href="#home">Home</a></li>
<li class="dropdown"> <a href="#services">Services</a></li>
<li class="dropdown"> <a href="#work">Portfolio</a></li>
<li class="dropdown"> <a href="#price">Pricing</a></li>
<li class="dropdown"> <a href="#contact">Contact</a></li>
<li class="dropdown"> <a href="index.html">main demo</a></li>
</ul>
</div><!--/.nav-collapse -->
</div>
</div><!--.navbar-default-->
<section id="services" class="padded-section">
<div class="container">
<div class="row">
<div class="col-md-12">
<div class="center-heading">
<h2>What We Offer</h2>
<span class="center-line"></span>
</div>
</div>
</div><!--center heading row-->
<div class="row">
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="100ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 100ms;">
<div class="services-box-icon">
<i class="fa fa-pencil"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>Web & Graphics Design</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="200ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 200ms;">
<div class="services-box-icon">
<i class="fa fa-globe"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>Web Development</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="300ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 300ms;">
<div class="services-box-icon">
<i class="fa fa-users"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>Customer Support</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="400ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 400ms;">
<div class="services-box-icon">
<i class="fa fa-crop"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>Pixel perfect design</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="500ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 500ms;">
<div class="services-box-icon">
<i class="fa fa-twitter"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>bootstrap 3.3.4</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
<div class="col-md-4 col-sm-6 margin20">
<div class="services-box wow animated fadeInUp animated" data-wow-duration="700ms" data-wow-delay="600ms" style="visibility: visible; -webkit-animation-duration: 700ms; -webkit-animation-delay: 600ms;">
<div class="services-box-icon">
<i class="fa fa-flag"></i>
</div><!--services icon-->
<div class="services-box-info">
<h4>Font Awesome icons</h4>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing metus. elit. Quisque rutrum pellentesque imperdiet.
</p>
</div>
</div><!--services box-->
</div><!--services col-->
</div><!--services row-->
<div class="divide40"></div>
<div class="col-md-4 margin20">
<div class="skills-wrapper wow animated bounceIn animated animated" data-wow-delay="0.2s">
<h3 class="heading-progress">Web Design <span class="pull-right">88%</span></h3>
<div class="progress">
<div class="progress-bar" style="width: 88%" aria-valuemax="100" aria-valuemin="0" aria-valuenow="88" role="progressbar">
</div>
</div>
<h3 class="heading-progress">Web Development <span class="pull-right">78%</span></h3>
<div class="progress">
<div class="progress-bar" style="width: 78%" aria-valuemax="100" aria-valuemin="0" aria-valuenow="78" role="progressbar">
</div>
</div>
<h3 class="heading-progress">Marketing <span class="pull-right">82%</span></h3>
<div class="progress">
<div class="progress-bar" style="width: 82%" aria-valuemax="100" aria-valuemin="0" aria-valuenow="82" role="progressbar">
</div>
</div>
</div>
</div>
<div class="col-md-8">
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing elit. In maximus ligula semper metus pellentesque mattis. Maecenas volutpat, diam enim sagittis quam, id porta quam. Sed id dolor consectetur fermentum nibh volutpat, accumsan purus.
</p>
<p>
Lorem ipsum dolor sit amet, consectetur adipiscing elit. In maximus ligula semper metus pellentesque mattis. Maecenas volutpat, diam enim sagittis quam, id porta quam. Sed id dolor consectetur fermentum nibh volutpat, accumsan purus.
</p>
</div>
</div>
</section><!--services-->
<section class="purchase-sec wow animated fadeInUp animated">
<div class="container">
<div class="row">
<div class="col-md-12 text-center">
<span>Design is not just what it looks like and feels like. Design is how it works. - Steve Jobs</span>
</div>
</div>
</div>
</section><!--cta-->
<section id="work" class="padded-section">
<div class="container">
<div class="center-heading">
<h2>Our portfolio</h2>
<span class="center-line"></span>
</div>
</div>
<div class="cube-full-width">
<div id="filters-container" class="cbp-l-filters-alignCenter">
<div data-filter="*" class="cbp-filter-item-active cbp-filter-item">
ALL <div class="cbp-filter-counter"></div>
</div> /
<div data-filter=".identity" class="cbp-filter-item">
IDENTITY <div class="cbp-filter-counter"></div>
</div> /
<div data-filter=".web-design" class="cbp-filter-item">
WEB DESIGN <div class="cbp-filter-counter"></div>
</div> /
<div data-filter=".graphic" class="cbp-filter-item">
GRAPHIC <div class="cbp-filter-counter"></div>
</div> /
<div data-filter=".logos" class="cbp-filter-item">
LOGO <div class="cbp-filter-counter"></div>
</div> /
<div data-filter=".motion" class="cbp-filter-item">
MOTION <div class="cbp-filter-counter"></div>
</div>
</div>
<div id="fullwidth-container" class="cbp">
<div class="cbp-item identity logos">
<a href="img/img-1.jpg" class="cbp-caption cbp-lightbox" data-title="Dashboard<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-1.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Dashboard</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item web-design">
<a href="img/img-2.jpg" class="cbp-caption cbp-lightbox" data-title="Client chat app WIP<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-2.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Client chat app WIP</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item motion identity">
<a href="img/img-3.jpg" class="cbp-caption cbp-lightbox" data-title="World Clock Widget<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-3.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">World Clock Widget</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item identity graphic">
<a href="img/img-4.jpg" class="cbp-caption cbp-lightbox" data-title="Website Lightbox<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-4.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Website Lightbox</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item motion logos">
<a href="img/img-5.jpg" class="cbp-caption cbp-lightbox" data-title="Skateshop Website<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-5.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Skateshop Website</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item web-design">
<a href="img/img-6.jpg" class="cbp-caption cbp-lightbox" data-title="10 Navigation Bars<br>by Paul Flavius Nechita">
<div class="cbp-caption-defaultWrap">
<img src="img/img-6.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">10 Navigation Bars</div>
<div class="cbp-l-caption-desc">by Paul Flavius Nechita</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item identity motion">
<a href="img/img-7.jpg" class="cbp-caption cbp-lightbox" data-title="To-Do Dashboard<br>by Tiberiu Neamu">
<div class="cbp-caption-defaultWrap">
<img src="img/img-7.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">To-Do Dashboard</div>
<div class="cbp-l-caption-desc">by Tiberiu Neamu</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item web-design graphic">
<a href="img/img-8.jpg" class="cbp-caption cbp-lightbox" data-title="Events and More<br>by Tiberiu Neamu">
<div class="cbp-caption-defaultWrap">
<img src="img/img-8.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Events and More</div>
<div class="cbp-l-caption-desc">by Tiberiu Neamu</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item graphic logos">
<a href="img/img-9.jpg" class="cbp-caption cbp-lightbox" data-title="WhereTO App<br>by Tiberiu Neamu">
<div class="cbp-caption-defaultWrap">
<img src="img/img-9.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">WhereTO App</div>
<div class="cbp-l-caption-desc">by Tiberiu Neamu</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item graphic motion">
<a href="img/img-1.jpg" class="cbp-caption cbp-lightbox" data-title="Bolt UI<br>by Tiberiu Neamu">
<div class="cbp-caption-defaultWrap">
<img src="img/img-1.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">Bolt UI</div>
<div class="cbp-l-caption-desc">by Tiberiu Neamu</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item graphic">
<a href="img/img-2.jpg" class="cbp-caption cbp-lightbox" data-title="iDevices<br>by Tiberiu Neamu">
<div class="cbp-caption-defaultWrap">
<img src="img/img-2.jpg" alt="">
</div>
<div class="cbp-caption-activeWrap">
<div class="cbp-l-caption-alignLeft">
<div class="cbp-l-caption-body">
<div class="cbp-l-caption-title">iDevices</div>
<div class="cbp-l-caption-desc">by Tiberiu Neamu</div>
</div>
</div>
</div>
</a>
</div>
<div class="cbp-item graphic logos">
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<em>Creative director</em>
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<h4>Basic</h4>
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$9.99
<span>Per Month</span>
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<div class="price-features">
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<h4>Business</h4>
</div><!--price title-->
<div class="price-price popular">
$29.99
<span>Per Month</span>
</div><!--price price-->
<div class="price-features">
<ul class="list-unstyled">
<li>Full Support</li>
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$49.99
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</div><!--price price-->
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<h4>High</h4>
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$99.99
<span>Per Month</span>
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<div class="price-features">
<ul class="list-unstyled">
<li>Full Support</li>
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<li>Phone / email support</li>
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| hgchen/SenseWatchWeb | assan-v1.7.5/one-page.html | HTML | apache-2.0 | 58,636 |
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<B>Uses of Package<br>org.apache.fop.fo.extensions</B></H2>
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Packages that use <A HREF="../../../../../org/apache/fop/fo/extensions/package-summary.html">org.apache.fop.fo.extensions</A></FONT></TD>
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<TD><A HREF="#org.apache.fop.area"><B>org.apache.fop.area</B></A></TD>
<TD>FOP's area tree. </TD>
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<TD>Classes, constants and basic infrastructure for the FO tree. </TD>
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<TD><A HREF="#org.apache.fop.fo.extensions.xmp"><B>org.apache.fop.fo.extensions.xmp</B></A></TD>
<TD>Extension classes which handles <a href="http://www.adobe.com/products/xmp/">XMP metadata</a>. </TD>
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<TD><A HREF="#org.apache.fop.render.ps.extensions"><B>org.apache.fop.render.ps.extensions</B></A></TD>
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Classes in <A HREF="../../../../../org/apache/fop/fo/extensions/package-summary.html">org.apache.fop.fo.extensions</A> used by <A HREF="../../../../../org/apache/fop/area/package-summary.html">org.apache.fop.area</A></FONT></TD>
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<TD><B><A HREF="../../../../../org/apache/fop/fo/extensions/class-use/ExtensionAttachment.html#org.apache.fop.area"><B>ExtensionAttachment</B></A></B>
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This interface is implemented by objects that are returned by special extension element
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<TD><B><A HREF="../../../../../org/apache/fop/fo/extensions/class-use/ExternalDocument.html#org.apache.fop.area"><B>ExternalDocument</B></A></B>
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Class for the fox:external-document extenstion element.</TD>
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<pre><span class="ruby-comment cmt"># File lib/rack/auth/openid.rb, line 335</span>
<span class="ruby-keyword kw">def</span> <span class="ruby-identifier">within_realm?</span> <span class="ruby-identifier">uri</span>
<span class="ruby-identifier">uri</span> = <span class="ruby-constant">URI</span>.<span class="ruby-identifier">parse</span>(<span class="ruby-identifier">uri</span>.<span class="ruby-identifier">to_s</span>)
<span class="ruby-identifier">realm</span> = <span class="ruby-constant">URI</span>.<span class="ruby-identifier">parse</span>(<span class="ruby-keyword kw">self</span>.<span class="ruby-identifier">realm</span>)
<span class="ruby-keyword kw">return</span> <span class="ruby-keyword kw">false</span> <span class="ruby-keyword kw">unless</span> <span class="ruby-identifier">uri</span>.<span class="ruby-identifier">absolute?</span>
<span class="ruby-keyword kw">return</span> <span class="ruby-keyword kw">false</span> <span class="ruby-keyword kw">unless</span> <span class="ruby-identifier">uri</span>.<span class="ruby-identifier">path</span>[<span class="ruby-value">0</span>, <span class="ruby-identifier">realm</span>.<span class="ruby-identifier">path</span>.<span class="ruby-identifier">size</span>] <span class="ruby-operator">==</span> <span class="ruby-identifier">realm</span>.<span class="ruby-identifier">path</span>
<span class="ruby-keyword kw">return</span> <span class="ruby-keyword kw">false</span> <span class="ruby-keyword kw">unless</span> <span class="ruby-identifier">uri</span>.<span class="ruby-identifier">host</span> <span class="ruby-operator">==</span> <span class="ruby-identifier">realm</span>.<span class="ruby-identifier">host</span> <span class="ruby-keyword kw">or</span> <span class="ruby-identifier">realm</span>.<span class="ruby-identifier">host</span>[<span class="ruby-regexp re">/^\*\./</span>]
<span class="ruby-comment cmt"># for wildcard support, is awkward with URI limitations</span>
<span class="ruby-identifier">realm_match</span> = <span class="ruby-constant">Regexp</span>.<span class="ruby-identifier">escape</span>(<span class="ruby-identifier">realm</span>.<span class="ruby-identifier">host</span>).
<span class="ruby-identifier">sub</span>(<span class="ruby-regexp re">/^\*\./</span>,<span class="ruby-node">"^#{URI::REGEXP::PATTERN::URIC_NO_SLASH}+."</span>)<span class="ruby-operator">+</span><span class="ruby-value str">'$'</span>
<span class="ruby-keyword kw">return</span> <span class="ruby-keyword kw">false</span> <span class="ruby-keyword kw">unless</span> <span class="ruby-identifier">uri</span>.<span class="ruby-identifier">host</span>.<span class="ruby-identifier">match</span>(<span class="ruby-identifier">realm_match</span>)
<span class="ruby-keyword kw">return</span> <span class="ruby-keyword kw">true</span>
<span class="ruby-keyword kw">end</span></pre>
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</html> | varshavaradarajan/functional-tests | tools/jruby/lib/ruby/gems/1.8/doc/rack-1.0.0/rdoc/classes/Rack/Auth/OpenID.src/M000044.html | HTML | apache-2.0 | 3,435 |
尊敬的 {$username} 您好:<br><br>
您在 52好照片 平台申请注册新用户,为了确认您的帐户及时启用,请在 1 天之内点击以下链接:<br>
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<span class="link"><a target="_blank" href="http://huangxuan.me/BusyWeek/dist/">Try it</a></span>
</li>
</ul>
</div>
</li>
<li>
<div class="cbp_tmlabel">
<h2>Alitrip.com @Alibaba</h2>
<time>2014 - 2015</time>
<img src="images/intern-alitrip.jpg">
<ul>
<li>
Alitrip, formerly Taobao Travel, is one of the biggest platform for China's online travel sector, on which there has over 10,000 merchants providing airplane tickets, vacation packages, hotel booking services, visa application services and tour guide services.<br>
As a <b>Intern Front-End Engineer</b>, I provided mobile-web and hybrid-apps development for our online travel business. Besides, I contribute to performance, UI rendering optimization and CSS library.
</li>
<li class="skill">
<span class="cbp_tmicon-phone"></span>
<span><b>JS</b></span>
<a href="https://github.com/kissyteam/kissy"><span class="i-kissy"></span></a>
<span class="link"><a target="_blank" href="http://alitrip.com">alitrip.com</a></span>
</li>
</ul>
</div>
</li> -->
<!--<li>
<div class="cbp_tmlabel">
<h2>SENOVA WebApp</h2>
<img src="images/senova.jpg">
<ul>
<li>《多媒体交互设计一》结课作业,以北汽“绅宝”为目标品牌,iPad 为主要平台进行的 App 设计,旨在用一种可交互的方式介绍“绅宝”车型。完全采用 Html5 技术开发,可添加至主屏幕离线运行。着力于触控交互体验的优化与优雅的动画设计。</li>
<li>Responsible : Front-End,Interaction,Product</li>
<li>Partner : ZOE-张瑜</li>
<li class="skill">
<span class="cbp_tmicon-html"></span>
<span class="fa fa-css3"></span>
<span><b>JS</b></span>
<span class="link"><a target="_blank" href="http://huangxuan.me/senova/">Link</a></span>
</li>
</ul>
</div>
</li>-->
<!-- <li>
<div class="cbp_tmlabel">
<h2 id="hslider">jQuery.HSlider</h2>
<time>2013.10</time>
<img src="images/work-hslider.jpg">
<ul>
<li>
HSlider, a full-page scrolling, touch-friendly jQuery slider plugin for mobile and modern desktop browser only. All its animations are powered by CSS3 with GPU acceleration and URL sharing with hash is supported.
</li>
<li class="skill">
<span class="fa fa-css3"></span>
<span><b>JS</b></span>
<span class="i-jquery"></span>
<span class="link"><a target="_blank" href="http://www.tudou.com/programs/view/Xa-pGW55N4g/">Github</a></span>
</li>
</ul>
</div>
</li> -->
<!-- <li>
<div class="cbp_tmlabel">
<h2>《真相不止一个》</h2>
<time>2013.10</time>
<img src="images/work-truth.jpg">
<ul>
<li>Motion Graphic Design, powered by Adobe After Effect and cooperate with amazing artist <a href="https://www.behance.net/psychofish">@Psycho_fish</a></li>
<li class="skill">
<span><b>Ae</b></span>
<span class="cbp_tmicon-video"></span>
<span class="link"><a target="_blank" href="http://www.tudou.com/programs/view/Xa-pGW55N4g/">View</a></span>
</li>
</ul>
</div>
</li>
<li>
<div class="cbp_tmlabel">
<h2>Intern @LxU Studio</h2>
<time>2013.06 - 08</time>
<img src="images/intern-lxu.jpg">
<ul>
<li>
As a <b>Intern Motion Graphic Designer</b>, I participated in several creative advertising virus videos for our clients including Baidu and Continental.
</li>
<li class="skill">
<span><b>Ae</b></span>
<span class="cbp_tmicon-video"></span>
<span class="link"><a target="_blank" href="http://weibo.com/lxustudio">@LxU</a></span>
</li>
</ul>
</div>
</li>
<li>
<div class="cbp_tmlabel">
<h2>Puzzled Hybrid</h2>
<time>2013.06</time>
<img src="images/work-puzzle.png">
<ul>
<li> This font is parts of the course work of <b>Design Basis</b>, which mix Serif fonts, Sans-serif fonts and...zebra-stripe! Why I design it like that is still a puzzle to me, and the intro video is available below.
<li class="skill">
<span class="cbp_tmicon-font"></span>
<span><b>Ps</b></span>
<span><b>Ae</b></span>
<span class="link"><a target="_blank" href="http://www.tudou.com/programs/view/DtG8SaFAoXU/">View</a></span>
</li>
</ul>
</div>
</li>
<li>
<div class="cbp_tmlabel">
<h2>Home - UI Design</h2>
<time>2012.11</time>
<img src="images/work-uihome.jpg">
<ul>
<li>
Participated in the students team with Huang Yi and Nie Ruijie as the UI Motion Designer. Won the first prize in 7th national IT application competition
</li>
<li class="skill">
<span><b>Fl</b></span>
<span class="link"><a target="_blank" href="http://animation.cuc.edu.cn/2c90943227f186ba0127f18a7ff10009/view/394">News</a></span>
</li>
</ul>
</div>
</li> -->
{% if site.duoshuo_username %}
<li>
<div class="cbp_tmlabel">
<!-- 多说评论框 start -->
<div class="comment">
<div class="ds-thread"
data-thread-key="{{site.duoshuo_username}}/portfolio"
data-title="{{page.title}}"
data-url="{{site.url}}{{site.baseurl}}{{page.url}}" >
</div>
</div>
<!-- 多说评论框 end -->
</div>
</li>
{% endif %}
</ul>
</div>
</div>
{% if site.duoshuo_username %}
<!-- 多说公共JS代码 start (一个网页只需插入一次) -->
<script type="text/javascript">
// dynamic User by Hux
var _user = '{{site.duoshuo_username}}';
// duoshuo comment query.
var duoshuoQuery = {short_name: _user };
(function() {
var ds = document.createElement('script');
ds.type = 'text/javascript';ds.async = true;
ds.src = (document.location.protocol == 'https:' ? 'https:' : 'http:') + '//static.duoshuo.com/embed.js';
ds.charset = 'UTF-8';
(document.getElementsByTagName('head')[0]
|| document.getElementsByTagName('body')[0]).appendChild(ds);
})();
</script>
<!-- 多说公共JS代码 end -->
{% endif %}
</body>
</html>
| MOAiOS/MOAiOS.github.io | portfolio/index.html | HTML | apache-2.0 | 10,112 |
<wicket:panel>
<div class="form-container">
<form wicket:id="exportForm">
<table>
<tr>
<td class="td-label"><strong><wicket:message
key="Settings.migration.export.entities">Entities</wicket:message><em>*</em></strong>
</td>
<td><input wicket:id="addElement" type="submit" value="+"
class="btn btn-primary btn-xs" /> <input
wicket:id="removeElement" type="submit" value="-"
class="btn btn-primary btn-xs" /></td>
</tr>
<tr>
<td class="td-label"></td>
<td><select wicket:id="listChoice" class="entityList" /></td>
</tr>
<tr>
<td class="td-label"><label><strong><wicket:message
key="Settings.migration.export.path">Export path</wicket:message><em>*</em></strong></label>
</td>
<td><input wicket:id="exportPath" type="text"
name="exportPath" style="height: 20px; width: 380px;" /></td>
</tr>
<tr>
<td>
<ul class="form-btns">
<li><input wicket:id="export" type="submit" name="export"
wicket:message="value:export" class="btn btn-primary btn-xs" />
</li>
<li><input wicket:id="exportAll" type="submit"
name="exportAll" wicket:message="value:exportAll"
class="btn btn-primary btn-xs" /></li>
</ul>
</td>
</tr>
</table>
</form>
<span wicket:id="feedback" class="feedbackPanelERROR" />
</div>
</wicket:panel>
| nextreports/nextreports-server | src/ro/nextreports/server/web/core/migration/ExportPanel.html | HTML | apache-2.0 | 1,394 |
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
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<title>Uses of Class org.apache.cassandra.cql3.UserTypes.Literal (apache-cassandra API)</title>
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| jasonwee/videoOnCloud | ahkl/apache-cassandra-3.5/javadoc/org/apache/cassandra/cql3/class-use/UserTypes.Literal.html | HTML | apache-2.0 | 4,598 |
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