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	<title><![CDATA[BOL: Related items]]></title>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/researchlabs/view/43817/bioinfo-lab</guid>
  <pubDate>Fri, 04 Mar 2022 00:17:00 -0600</pubDate>
  <link></link>
  <title><![CDATA[Bioinfo Lab]]></title>
  <description><![CDATA[
<p>The Institute of Bioinformatics conducts internationally renowned research and provides profound education in bioinformatics. Its research focuses on development and application of machine learning and statistical methods in biology and medicine.</p>

<p>Contact:<br />Computer Science Building (Science Park 3)<br />Altenberger Str. 69, A-4040 Linz, Austria<br />Tel. +43 732 2468 4520 / Fax +43 732 2468 4539<br />E-mail secretary@bioinf.jku.at</p>

<p>http://www.bioinf.jku.at/</p>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/36525/installing-bandage-on-ubunty</guid>
	<pubDate>Tue, 08 May 2018 08:03:21 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/36525/installing-bandage-on-ubunty</link>
	<title><![CDATA[Installing Bandage on Ubunty !]]></title>
	<description><![CDATA[<p>The following instructions successfully build Bandage (https://github.com/rrwick/Bandage ) on a fresh installation of Ubuntu 14.04:</p><ol>
<li>Ensure the package lists are up-to-date:&nbsp;<code>sudo apt-get update</code></li>
<li>Install prerequisite packages:&nbsp;<code>sudo apt-get install build-essential git qtbase5-dev libqt5svg5-dev</code></li>
<li>Download the Bandage code from GitHub:&nbsp;<code>git clone https://github.com/rrwick/Bandage.git</code></li>
<li>Open a terminal in the Bandage directory.</li>
<li>Set the environment variable to specify that you will be using Qt 5, not Qt 4:&nbsp;<code>export QT_SELECT=5</code></li>
<li>Run qmake to generate a Makefile:&nbsp;<code>qmake</code></li>
<li>Build the program:&nbsp;<code>make</code></li>
<li><code>Bandage</code>&nbsp;should now be an executable file.</li>
<li>Optionally, copy the program into /usr/local/bin:&nbsp;<code>sudo make install</code>. The Bandage build directory can then be deleted.</li>
</ol><p>➜ Tools git:(master) ✗ sudo apt-get update<br />[sudo] password for urbe:&nbsp;<br />Hit:1 http://ppa.launchpad.net/webupd8team/atom/ubuntu xenial InRelease<br />Get:2 http://security.ubuntu.com/ubuntu xenial-security InRelease [107 kB]&nbsp;<br />Hit:3 http://ppa.launchpad.net/webupd8team/java/ubuntu xenial InRelease&nbsp;<br />Hit:4 http://be.archive.ubuntu.com/ubuntu xenial InRelease&nbsp;<br />Get:5 http://be.archive.ubuntu.com/ubuntu xenial-updates InRelease [109 kB]<br />Get:6 http://be.archive.ubuntu.com/ubuntu xenial-backports InRelease [107 kB]&nbsp;<br />Get:7 https://cran.rstudio.com/bin/linux/ubuntu xenial/ InRelease [3.590 B]&nbsp;<br />Hit:8 https://download.docker.com/linux/ubuntu xenial InRelease&nbsp;<br />Ign:9 http://download.opensuse.org/repositories/home:/sionescu/Debian ./ InRelease&nbsp;<br />Hit:10 http://download.opensuse.org/repositories/home:/sionescu/Debian ./ Release&nbsp;<br />Get:11 http://packages.cloud.google.com/apt cloud-sdk-xenial InRelease [6.372 B]<br />Get:12 http://security.ubuntu.com/ubuntu xenial-security/main amd64 Packages [484 kB]<br />Get:13 http://security.ubuntu.com/ubuntu xenial-security/main i386 Packages [433 kB]<br />Get:14 http://security.ubuntu.com/ubuntu xenial-security/main Translation-en [209 kB]<br />Get:15 http://security.ubuntu.com/ubuntu xenial-security/main amd64 DEP-11 Metadata [67,5 kB]<br />Get:16 http://security.ubuntu.com/ubuntu xenial-security/main DEP-11 64x64 Icons [68,0 kB]&nbsp;<br />Get:17 http://security.ubuntu.com/ubuntu xenial-security/universe amd64 DEP-11 Metadata [107 kB]<br />Get:18 http://security.ubuntu.com/ubuntu xenial-security/universe DEP-11 64x64 Icons [147 kB]<br />Get:19 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 Packages [769 kB]&nbsp;<br />Get:20 http://be.archive.ubuntu.com/ubuntu xenial-updates/main i386 Packages [710 kB]&nbsp;<br />Get:21 http://be.archive.ubuntu.com/ubuntu xenial-updates/main Translation-en [319 kB]<br />Get:22 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 DEP-11 Metadata [319 kB]<br />Get:24 http://be.archive.ubuntu.com/ubuntu xenial-updates/main DEP-11 64x64 Icons [228 kB]&nbsp;<br />Get:25 http://be.archive.ubuntu.com/ubuntu xenial-updates/universe amd64 DEP-11 Metadata [246 kB]<br />Err:11 http://packages.cloud.google.com/apt cloud-sdk-xenial InRelease&nbsp;<br />The following signatures couldn't be verified because the public key is not available: NO_PUBKEY 6A030B21BA07F4FB<br />Get:26 http://be.archive.ubuntu.com/ubuntu xenial-updates/universe DEP-11 64x64 Icons [331 kB]<br />Get:27 http://be.archive.ubuntu.com/ubuntu xenial-updates/multiverse amd64 DEP-11 Metadata [5.964 B]<br />Get:28 http://be.archive.ubuntu.com/ubuntu xenial-backports/main amd64 DEP-11 Metadata [3.328 B]<br />Get:29 http://be.archive.ubuntu.com/ubuntu xenial-backports/universe amd64 DEP-11 Metadata [5.088 B]<br />Fetched 4.779 kB in 2s (1.606 kB/s)&nbsp;<br />Reading package lists... Done<br />W: An error occurred during the signature verification. The repository is not updated and the previous index files will be used. GPG error: http://packages.cloud.google.com/apt cloud-sdk-xenial InRelease: The following signatures couldn't be verified because the public key is not available: NO_PUBKEY 6A030B21BA07F4FB<br />W: Failed to fetch http://packages.cloud.google.com/apt/dists/cloud-sdk-xenial/InRelease The following signatures couldn't be verified because the public key is not available: NO_PUBKEY 6A030B21BA07F4FB<br />W: Some index files failed to download. They have been ignored, or old ones used instead.<br />➜ Tools git:(master) ✗ sudo apt-get install build-essential git qtbase5-dev libqt5svg5-dev<br />Reading package lists... Done<br />Building dependency tree&nbsp;<br />Reading state information... Done<br />build-essential is already the newest version (12.1ubuntu2).<br />git is already the newest version (1:2.7.4-0ubuntu1.3).<br />The following packages were automatically installed and are no longer required:<br />bridge-utils containerd linux-headers-4.4.0-116 linux-headers-4.4.0-116-generic linux-headers-4.4.0-21 linux-headers-4.4.0-21-generic linux-image-4.4.0-116-generic linux-image-4.4.0-21-generic<br />linux-image-extra-4.4.0-116-generic linux-image-extra-4.4.0-21-generic linux-signed-image-4.4.0-116-generic runc ubuntu-fan<br />Use 'sudo apt autoremove' to remove them.<br />The following additional packages will be installed:<br />libdrm-dev libegl1-mesa-dev libgl1-mesa-dev libgles2-mesa libgles2-mesa-dev libglu1-mesa-dev libmirclient-dev libmircommon-dev libmircookie-dev libmircookie2 libmircore-dev libprotobuf-dev libprotobuf9v5<br />libqt5concurrent5 libqt5core5a libqt5dbus5 libqt5gui5 libqt5network5 libqt5opengl5 libqt5opengl5-dev libqt5printsupport5 libqt5sql5 libqt5sql5-sqlite libqt5svg5 libqt5test5 libqt5widgets5 libqt5xml5 libwayland-bin<br />libwayland-dev libx11-xcb-dev libxcb-dri2-0-dev libxcb-dri3-dev libxcb-glx0-dev libxcb-icccm4 libxcb-image0 libxcb-keysyms1 libxcb-present-dev libxcb-randr0 libxcb-randr0-dev libxcb-render-util0 libxcb-render0-dev<br />libxcb-shape0-dev libxcb-sync-dev libxcb-xfixes0-dev libxcb-xkb1 libxdamage-dev libxext-dev libxfixes-dev libxkbcommon-dev libxkbcommon-x11-0 libxshmfence-dev libxxf86vm-dev mesa-common-dev qt5-qmake<br />qtbase5-dev-tools qttranslations5-l10n x11proto-damage-dev x11proto-dri2-dev x11proto-fixes-dev x11proto-gl-dev x11proto-xext-dev x11proto-xf86vidmode-dev<br />Suggested packages:<br />libqt5libqgtk2 qt5-image-formats-plugins qtwayland5 libxext-doc libmysqlclient-dev libpq-dev libsqlite3-dev unixodbc-dev<br />The following NEW packages will be installed:<br />libdrm-dev libegl1-mesa-dev libgl1-mesa-dev libgles2-mesa libgles2-mesa-dev libglu1-mesa-dev libmirclient-dev libmircommon-dev libmircookie-dev libmircookie2 libmircore-dev libprotobuf-dev libprotobuf9v5<br />libqt5concurrent5 libqt5core5a libqt5dbus5 libqt5gui5 libqt5network5 libqt5opengl5 libqt5opengl5-dev libqt5printsupport5 libqt5sql5 libqt5sql5-sqlite libqt5svg5 libqt5svg5-dev libqt5test5 libqt5widgets5 libqt5xml5<br />libwayland-bin libwayland-dev libx11-xcb-dev libxcb-dri2-0-dev libxcb-dri3-dev libxcb-glx0-dev libxcb-icccm4 libxcb-image0 libxcb-keysyms1 libxcb-present-dev libxcb-randr0 libxcb-randr0-dev libxcb-render-util0<br />libxcb-render0-dev libxcb-shape0-dev libxcb-sync-dev libxcb-xfixes0-dev libxcb-xkb1 libxdamage-dev libxext-dev libxfixes-dev libxkbcommon-dev libxkbcommon-x11-0 libxshmfence-dev libxxf86vm-dev mesa-common-dev<br />qt5-qmake qtbase5-dev qtbase5-dev-tools qttranslations5-l10n x11proto-damage-dev x11proto-dri2-dev x11proto-fixes-dev x11proto-gl-dev x11proto-xext-dev x11proto-xf86vidmode-dev<br />0 upgraded, 64 newly installed, 0 to remove and 11 not upgraded.<br />Need to get 15,2 MB of archives.<br />After this operation, 78,5 MB of additional disk space will be used.<br />Do you want to continue? [Y/n] Y<br />Get:1 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5core5a amd64 5.5.1+dfsg-16ubuntu7.5 [1.817 kB]<br />Get:2 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5dbus5 amd64 5.5.1+dfsg-16ubuntu7.5 [175 kB]<br />Get:3 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5network5 amd64 5.5.1+dfsg-16ubuntu7.5 [540 kB]<br />Get:4 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-icccm4 amd64 0.4.1-1ubuntu1 [10,4 kB]<br />Get:5 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-image0 amd64 0.4.0-1build1 [12,3 kB]<br />Get:6 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-keysyms1 amd64 0.4.0-1 [8.406 B]<br />Get:7 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-randr0 amd64 1.11.1-1ubuntu1 [14,4 kB]<br />Get:8 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-render-util0 amd64 0.3.9-1 [9.638 B]<br />Get:9 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-xkb1 amd64 1.11.1-1ubuntu1 [29,2 kB]<br />Get:10 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxkbcommon-x11-0 amd64 0.5.0-1ubuntu2 [13,5 kB]<br />Get:11 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5gui5 amd64 5.5.1+dfsg-16ubuntu7.5 [2.290 kB]<br />Get:12 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5widgets5 amd64 5.5.1+dfsg-16ubuntu7.5 [2.252 kB]<br />Get:13 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libqt5svg5 amd64 5.5.1-2build1 [128 kB]<br />Get:14 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libqt5svg5-dev amd64 5.5.1-2build1 [9.724 B]<br />Get:15 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libdrm-dev amd64 2.4.83-1~16.04.1 [229 kB]<br />Get:16 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-dri2-dev all 2.8-2 [12,6 kB]<br />Get:17 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-gl-dev all 1.4.17-1 [17,9 kB]<br />Get:18 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-xext-dev all 7.3.0-1 [212 kB]<br />Get:19 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxext-dev amd64 2:1.3.3-1 [82,1 kB]<br />Get:20 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-xf86vidmode-dev all 2.3.1-2 [6.116 B]<br />Get:21 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxxf86vm-dev amd64 1:1.1.4-1 [13,3 kB]<br />Get:22 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-fixes-dev all 1:5.0-2ubuntu2 [14,2 kB]<br />Get:23 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxfixes-dev amd64 1:5.0.1-2 [10,9 kB]<br />Get:24 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 x11proto-damage-dev all 1:1.2.1-2 [8.286 B]<br />Get:25 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxdamage-dev amd64 1:1.1.4-2 [5.028 B]<br />Get:26 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-glx0-dev amd64 1.11.1-1ubuntu1 [26,9 kB]<br />Get:27 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-dri2-0-dev amd64 1.11.1-1ubuntu1 [8.384 B]<br />Get:28 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-dri3-dev amd64 1.11.1-1ubuntu1 [5.752 B]<br />Get:29 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-render0-dev amd64 1.11.1-1ubuntu1 [15,3 kB]<br />Get:30 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-randr0-dev amd64 1.11.1-1ubuntu1 [18,2 kB]<br />Get:31 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-shape0-dev amd64 1.11.1-1ubuntu1 [6.900 B]<br />Get:32 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-xfixes0-dev amd64 1.11.1-1ubuntu1 [11,2 kB]<br />Get:33 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-sync-dev amd64 1.11.1-1ubuntu1 [10,1 kB]<br />Get:34 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxcb-present-dev amd64 1.11.1-1ubuntu1 [6.618 B]<br />Get:35 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxshmfence-dev amd64 1.2-1 [3.676 B]<br />Get:36 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libx11-xcb-dev amd64 2:1.6.3-1ubuntu2 [9.730 B]<br />Get:37 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libwayland-bin amd64 1.12.0-1~ubuntu16.04.3 [18,4 kB]<br />Get:38 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libwayland-dev amd64 1.12.0-1~ubuntu16.04.3 [92,4 kB]<br />Get:39 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libmircore-dev amd64 0.26.3+16.04.20170605-0ubuntu1.1 [23,7 kB]<br />Get:40 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libprotobuf9v5 amd64 2.6.1-1.3 [326 kB]<br />Get:41 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libprotobuf-dev amd64 2.6.1-1.3 [473 kB]<br />Get:42 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libxkbcommon-dev amd64 0.5.0-1ubuntu2 [231 kB]<br />Get:43 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libmircommon-dev amd64 0.26.3+16.04.20170605-0ubuntu1.1 [14,9 kB]<br />Get:44 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libmircookie2 amd64 0.26.3+16.04.20170605-0ubuntu1.1 [22,5 kB]<br />Get:45 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libmircookie-dev amd64 0.26.3+16.04.20170605-0ubuntu1.1 [5.152 B]<br />Get:46 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libmirclient-dev amd64 0.26.3+16.04.20170605-0ubuntu1.1 [42,6 kB]<br />Get:47 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libegl1-mesa-dev amd64 17.2.8-0ubuntu0~16.04.1 [19,9 kB]<br />Get:48 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libgles2-mesa amd64 17.2.8-0ubuntu0~16.04.1 [13,4 kB]<br />Get:49 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libgles2-mesa-dev amd64 17.2.8-0ubuntu0~16.04.1 [40,2 kB]<br />Get:50 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 mesa-common-dev amd64 17.2.8-0ubuntu0~16.04.1 [525 kB]<br />Get:51 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libgl1-mesa-dev amd64 17.2.8-0ubuntu0~16.04.1 [4.456 B]<br />Get:52 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 libglu1-mesa-dev amd64 9.0.0-2.1 [202 kB]<br />Get:53 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5concurrent5 amd64 5.5.1+dfsg-16ubuntu7.5 [24,3 kB]<br />Get:54 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5opengl5 amd64 5.5.1+dfsg-16ubuntu7.5 [128 kB]<br />Get:55 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5printsupport5 amd64 5.5.1+dfsg-16ubuntu7.5 [174 kB]<br />Get:56 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5sql5 amd64 5.5.1+dfsg-16ubuntu7.5 [104 kB]<br />Get:57 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5test5 amd64 5.5.1+dfsg-16ubuntu7.5 [84,5 kB]<br />Get:58 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5xml5 amd64 5.5.1+dfsg-16ubuntu7.5 [91,8 kB]<br />Get:59 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 qt5-qmake amd64 5.5.1+dfsg-16ubuntu7.5 [1.192 kB]<br />Get:60 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 qtbase5-dev-tools amd64 5.5.1+dfsg-16ubuntu7.5 [1.056 kB]<br />Get:61 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 qtbase5-dev amd64 5.5.1+dfsg-16ubuntu7.5 [931 kB]<br />Get:62 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5opengl5-dev amd64 5.5.1+dfsg-16ubuntu7.5 [31,5 kB]<br />Get:63 http://be.archive.ubuntu.com/ubuntu xenial-updates/main amd64 libqt5sql5-sqlite amd64 5.5.1+dfsg-16ubuntu7.5 [33,0 kB]<br />Get:64 http://be.archive.ubuntu.com/ubuntu xenial/main amd64 qttranslations5-l10n all 5.5.1-2build1 [1.210 kB]<br />Fetched 15,2 MB in 4s (3.099 kB/s)&nbsp;<br />Extracting templates from packages: 100%<br />Selecting previously unselected package libqt5core5a:amd64.<br />(Reading database ... 480949 files and directories currently installed.)<br />Preparing to unpack .../libqt5core5a_5.5.1+dfsg-16ubuntu7.5_amd64.deb ...<br />Unpacking libqt5core5a:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Selecting previously unselected package libqt5dbus5:amd64.<br />Preparing to unpack .../libqt5dbus5_5.5.1+dfsg-16ubuntu7.5_amd64.deb ...<br />Unpacking libqt5dbus5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Selecting previously unselected package libqt5network5:amd64.<br />Preparing to unpack .../libqt5network5_5.5.1+dfsg-16ubuntu7.5_amd64.deb ...<br />Unpacking libqt5network5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Selecting previously unselected package libxcb-icccm4:amd64.<br />Preparing to unpack .../libxcb-icccm4_0.4.1-1ubuntu1_amd64.deb ...<br />Unpacking libxcb-icccm4:amd64 (0.4.1-1ubuntu1) ...<br />Selecting previously unselected package libxcb-image0:amd64.<br />Preparing to unpack .../libxcb-image0_0.4.0-1build1_amd64.deb ...<br />Unpacking libxcb-image0:amd64 (0.4.0-1build1) ...<br />Selecting previously unselected package libxcb-keysyms1:amd64.<br />Preparing to unpack .../libxcb-keysyms1_0.4.0-1_amd64.deb ...<br />Unpacking libxcb-keysyms1:amd64 (0.4.0-1) ...<br />Selecting previously unselected package libxcb-randr0:amd64.<br />Preparing to unpack .../libxcb-randr0_1.11.1-1ubuntu1_amd64.deb ...<br />Unpacking libxcb-randr0:amd64 (1.11.1-1ubuntu1) ...<br />Selecting previously unselected package libxcb-render-util0:amd64.<br />Preparing to unpack .../libxcb-render-util0_0.3.9-1_amd64.deb ...<br />Unpacking libxcb-render-util0:amd64 (0.3.9-1) ...<br />Selecting previously unselected package libxcb-xkb1:amd64.<br />Preparing to unpack .../libxcb-xkb1_1.11.1-1ubuntu1_amd64.deb ...<br />Unpacking libxcb-xkb1:amd64 (1.11.1-1ubuntu1) ...<br />Selecting previously unselected package libxkbcommon-x11-0:amd64.<br />Preparing to unpack .../libxkbcommon-x11-0_0.5.0-1ubuntu2_amd64.deb ...<br />Unpacking libxkbcommon-x11-0:amd64 (0.5.0-1ubuntu2) ...<br />Selecting previously unselected package libqt5gui5:amd64.<br />Preparing to unpack .../libqt5gui5_5.5.1+dfsg-16ubuntu7.5_amd64.deb ...<br />Unpacking libqt5gui5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Selecting previously unselected package libqt5widgets5:amd64.<br />Preparing to unpack .../libqt5widgets5_5.5.1+dfsg-16ubuntu7.5_amd64.deb ...<br />Unpacking libqt5widgets5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Selecting previously unselected package libqt5svg5:amd64.<br />Preparing to unpack .../libqt5svg5_5.5.1-2build1_amd64.deb ...<br />Unpacking libqt5svg5:amd64 (5.5.1-2build1) ...<br />Selecting previously unselected package libqt5svg5-dev:amd64.<br />Preparing to unpack .../libqt5svg5-dev_5.5.1-2build1_amd64.deb ...<br />Unpacking libqt5svg5-dev:amd64 (5.5.1-2build1) ...<br />Selecting previously unselected package libdrm-dev:amd64.<br />Preparing to unpack .../libdrm-dev_2.4.83-1~16.04.1_amd64.deb ...<br />Unpacking libdrm-dev:amd64 (2.4.83-1~16.04.1) ...<br />Selecting previously unselected package x11proto-dri2-dev.<br />Preparing to unpack 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(17.2.8-0ubuntu0~16.04.1) ...<br />Setting up libgles2-mesa:amd64 (17.2.8-0ubuntu0~16.04.1) ...<br />Setting up libgles2-mesa-dev:amd64 (17.2.8-0ubuntu0~16.04.1) ...<br />Setting up mesa-common-dev:amd64 (17.2.8-0ubuntu0~16.04.1) ...<br />Setting up libgl1-mesa-dev:amd64 (17.2.8-0ubuntu0~16.04.1) ...<br />Setting up libglu1-mesa-dev:amd64 (9.0.0-2.1) ...<br />Setting up libqt5concurrent5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5opengl5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5printsupport5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5sql5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5test5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5xml5:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up qt5-qmake:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up qtbase5-dev-tools (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up qtbase5-dev:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5opengl5-dev:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up libqt5sql5-sqlite:amd64 (5.5.1+dfsg-16ubuntu7.5) ...<br />Setting up qttranslations5-l10n (5.5.1-2build1) ...<br />Processing triggers for libc-bin (2.23-0ubuntu10) ...<br />➜ Tools git:(master) ✗ git clone https://github.com/rrwick/Bandage.git<br />Cloning into 'Bandage'...<br />remote: Counting objects: 7813, done.<br />remote: Total 7813 (delta 0), reused 0 (delta 0), pack-reused 7813<br />Receiving objects: 100% (7813/7813), 27.43 MiB | 16.33 MiB/s, done.<br />Resolving deltas: 100% (5973/5973), done.<br />Checking connectivity... done.<br />➜ Tools git:(master) ✗ cd Bandage&nbsp;<br />➜ Bandage git:(master) ls<br />Bandage.pro BandageTests.pro blast build_scripts command_line COPYING graph images ogdf program README.md tests ui<br />➜ Bandage git:(master) export QT_SELECT=5<br />➜ Bandage git:(master) qmake<br />➜ Bandage git:(master) ✗ make<br />/home/urbe/anaconda3/bin/uic ui/mainwindow.ui -o ui_mainwindow.h<br />/home/urbe/anaconda3/bin/uic ui/settingsdialog.ui -o ui_settingsdialog.h<br />/home/urbe/anaconda3/bin/uic ui/aboutdialog.ui -o ui_aboutdialog.h<br />/home/urbe/anaconda3/bin/uic ui/enteroneblastquerydialog.ui -o ui_enteroneblastquerydialog.h<br />/home/urbe/anaconda3/bin/uic ui/blastsearchdialog.ui -o ui_blastsearchdialog.h<br />/home/urbe/anaconda3/bin/uic ui/myprogressdialog.ui -o ui_myprogressdialog.h<br />/home/urbe/anaconda3/bin/uic ui/pathspecifydialog.ui -o ui_pathspecifydialog.h<br />/home/urbe/anaconda3/bin/uic ui/querypathsdialog.ui -o ui_querypathsdialog.h<br />/home/urbe/anaconda3/bin/uic ui/blasthitfiltersdialog.ui -o ui_blasthitfiltersdialog.h<br />/home/urbe/anaconda3/bin/uic ui/changenodenamedialog.ui -o ui_changenodenamedialog.h<br />/home/urbe/anaconda3/bin/uic ui/graphinfodialog.ui -o ui_graphinfodialog.h<br />/home/urbe/anaconda3/bin/uic ui/changenodedepthdialog.ui -o ui_changenodedepthdialog.h<br />g++ -c -pipe -O2 -std=gnu++0x -Wall -W -D_REENTRANT -fPIC -DQT_NO_DEBUG -DQT_SVG_LIB -DQT_WIDGETS_LIB -DQT_GUI_LIB -DQT_CORE_LIB -I. -Iui -I/usr/include -I../../anaconda3/include/qt -I../../anaconda3/include/qt/QtSvg -I../../anaconda3/include/qt/QtWidgets -I../../anaconda3/include/qt/QtGui -I../../anaconda3/include/qt/QtCore -I. -I. -I../../anaconda3/mkspecs/linux-g++ -o main.o program/main.cpp<br />g++ -c -pipe -O2 -std=gnu++0x -Wall -W -D_REENTRANT -fPIC -DQT_NO_DEBUG -DQT_SVG_LIB -DQT_WIDGETS_LIB -DQT_GUI_LIB -DQT_CORE_LIB -I. -Iui -I/usr/include -I../../anaconda3/include/qt -I../../anaconda3/include/qt/QtSvg -I../../anaconda3/include/qt/QtWidgets -I../../anaconda3/include/qt/QtGui -I../../anaconda3/include/qt/QtCore -I. -I. -I../../anaconda3/mkspecs/linux-g++ -o settings.o program/settings.cpp<br />....</p><p>...<br />g++ -Wl,-O1 -Wl,-rpath,/home/urbe/anaconda3/lib -o Bandage main.o settings.o globals.o graphlayoutworker.o debruijnnode.o debruijnedge.o graphicsitemnode.o graphicsitemedge.o mainwindow.o graphicsviewzoom.o settingsdialog.o mygraphicsview.o mygraphicsscene.o aboutdialog.o enteroneblastquerydialog.o blasthit.o blastqueries.o blastsearchdialog.o infotextwidget.o assemblygraph.o verticalscrollarea.o myprogressdialog.o nodewidthvisualaid.o verticallabel.o load.o image.o commoncommandlinefunctions.o mytablewidget.o buildblastdatabaseworker.o colourbutton.o blastquery.o runblastsearchworker.o blastsearch.o path.o pathspecifydialog.o graphlocation.o tablewidgetitemint.o tablewidgetitemdouble.o tablewidgetitemshown.o memory.o querypathspushbutton.o querypathsdialog.o blastquerypath.o blasthitfiltersdialog.o scinot.o changenodenamedialog.o querypathsequencecopybutton.o querypaths.o info.o reduce.o Graph.o GraphAttributes.o FMMMLayout.o geometry.o ClusterGraphAttributes.o FruchtermanReingold.o NMM.o GmlParser.o simple_graph_alg.o basic.o XmlParser.o String.o Hashing.o PoolMemoryAllocator.o GraphCopy.o CombinatorialEmbedding.o OgmlParser.o ClusterGraph.o Math.o EdgeAttributes.o NodeAttributes.o MAARPacking.o Multilevel.o numexcept.o Set.o Ogml.o DinoXmlParser.o DinoXmlScanner.o DinoTools.o DinoLineBuffer.o System.o QuadTreeNM.o QuadTreeNodeNM.o Constraint.o MultilevelGraph.o graphinfodialog.o tablewidgetitemname.o changenodedepthdialog.o qrc_images.o moc_graphlayoutworker.o moc_mainwindow.o moc_graphicsviewzoom.o moc_settingsdialog.o moc_mygraphicsview.o moc_mygraphicsscene.o moc_aboutdialog.o moc_enteroneblastquerydialog.o moc_blastquery.o moc_blastsearchdialog.o moc_infotextwidget.o moc_assemblygraph.o moc_verticalscrollarea.o moc_myprogressdialog.o moc_nodewidthvisualaid.o moc_verticallabel.o moc_mytablewidget.o moc_buildblastdatabaseworker.o moc_colourbutton.o moc_runblastsearchworker.o moc_pathspecifydialog.o moc_querypathspushbutton.o moc_querypathsdialog.o moc_blasthitfiltersdialog.o moc_changenodenamedialog.o moc_querypathsequencecopybutton.o moc_graphinfodialog.o moc_changenodedepthdialog.o -L/usr/lib -L/home/urbe/anaconda3/lib -lQt5Svg -lQt5Widgets -lQt5Gui -lQt5Core -lGL -lpthread&nbsp;<br />➜ Bandage git:(master) ✗ ls&nbsp;<br />aboutdialog.o DinoTools.o Makefile moc_infotextwidget.cpp moc_verticalscrollarea.o scinot.o<br />assemblygraph.o DinoXmlParser.o Math.o moc_infotextwidget.o MultilevelGraph.o Set.o<br />Bandage DinoXmlScanner.o memory.o moc_mainwindow.cpp Multilevel.o settingsdialog.o<br />Bandage.pro EdgeAttributes.o moc_aboutdialog.cpp moc_mainwindow.o mygraphicsscene.o settings.o<br />BandageTests.pro enteroneblastquerydialog.o moc_aboutdialog.o moc_mygraphicsscene.cpp mygraphicsview.o simple_graph_alg.o<br />basic.o FMMMLayout.o moc_assemblygraph.cpp moc_mygraphicsscene.o myprogressdialog.o String.o<br />blast FruchtermanReingold.o moc_assemblygraph.o moc_mygraphicsview.cpp mytablewidget.o System.o<br />blasthitfiltersdialog.o geometry.o moc_blasthitfiltersdialog.cpp moc_mygraphicsview.o NMM.o tablewidgetitemdouble.o<br />blasthit.o globals.o moc_blasthitfiltersdialog.o moc_myprogressdialog.cpp NodeAttributes.o tablewidgetitemint.o<br />blastqueries.o GmlParser.o moc_blastquery.cpp moc_myprogressdialog.o nodewidthvisualaid.o tablewidgetitemname.o<br />blastquery.o graph moc_blastquery.o moc_mytablewidget.cpp numexcept.o tablewidgetitemshown.o<br />blastquerypath.o GraphAttributes.o moc_blastsearchdialog.cpp moc_mytablewidget.o ogdf tests<br />blastsearchdialog.o GraphCopy.o moc_blastsearchdialog.o moc_nodewidthvisualaid.cpp Ogml.o ui<br />blastsearch.o graphicsitemedge.o moc_buildblastdatabaseworker.cpp moc_nodewidthvisualaid.o OgmlParser.o ui_aboutdialog.h<br />buildblastdatabaseworker.o graphicsitemnode.o moc_buildblastdatabaseworker.o moc_pathspecifydialog.cpp path.o ui_blasthitfiltersdialog.h<br />build_scripts graphicsviewzoom.o moc_changenodedepthdialog.cpp moc_pathspecifydialog.o pathspecifydialog.o ui_blastsearchdialog.h<br />changenodedepthdialog.o graphinfodialog.o moc_changenodedepthdialog.o moc_querypathsdialog.cpp PoolMemoryAllocator.o ui_changenodedepthdialog.h<br />changenodenamedialog.o graphlayoutworker.o moc_changenodenamedialog.cpp moc_querypathsdialog.o program ui_changenodenamedialog.h<br />ClusterGraphAttributes.o graphlocation.o moc_changenodenamedialog.o moc_querypathsequencecopybutton.cpp qrc_images.cpp ui_enteroneblastquerydialog.h<br />ClusterGraph.o Graph.o moc_colourbutton.cpp moc_querypathsequencecopybutton.o qrc_images.o ui_graphinfodialog.h<br />colourbutton.o Hashing.o moc_colourbutton.o moc_querypathspushbutton.cpp QuadTreeNM.o ui_mainwindow.h<br />CombinatorialEmbedding.o image.o moc_enteroneblastquerydialog.cpp moc_querypathspushbutton.o QuadTreeNodeNM.o ui_myprogressdialog.h<br />command_line images moc_enteroneblastquerydialog.o moc_runblastsearchworker.cpp querypathsdialog.o ui_pathspecifydialog.h<br />commoncommandlinefunctions.o info.o moc_graphicsviewzoom.cpp moc_runblastsearchworker.o querypathsequencecopybutton.o ui_querypathsdialog.h<br />Constraint.o infotextwidget.o moc_graphicsviewzoom.o moc_settingsdialog.cpp querypaths.o ui_settingsdialog.h<br />COPYING load.o moc_graphinfodialog.cpp moc_settingsdialog.o querypathspushbutton.o verticallabel.o<br />debruijnedge.o MAARPacking.o moc_graphinfodialog.o moc_verticallabel.cpp README.md verticalscrollarea.o<br />debruijnnode.o main.o moc_graphlayoutworker.cpp moc_verticallabel.o reduce.o XmlParser.o<br />DinoLineBuffer.o mainwindow.o moc_graphlayoutworker.o moc_verticalscrollarea.cpp runblastsearchworker.o<br />➜ Bandage git:(master) ✗ ./Bandage</p>]]></description>
	<dc:creator>Jit</dc:creator>
</item>
<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/bookmarks/view/36723/hapsembler-an-assembler-for-highly-polymorphic-genomes</guid>
	<pubDate>Tue, 22 May 2018 04:09:53 -0500</pubDate>
	<link>https://bioinformaticsonline.com/bookmarks/view/36723/hapsembler-an-assembler-for-highly-polymorphic-genomes</link>
	<title><![CDATA[Hapsembler: An Assembler for Highly Polymorphic Genomes]]></title>
	<description><![CDATA[Hapsembler is a haplotype-specific genome assembly toolkit that is designed for genomes that are rich in SNPs and other types of polymorphism. Hapsembler can be used to assemble reads from a variety of platforms including Illumina and Roche/454. 

http://compbio.cs.toronto.edu/hapsembler/<p>Address of the bookmark: <a href="http://compbio.cs.toronto.edu/hapsembler/" rel="nofollow">http://compbio.cs.toronto.edu/hapsembler/</a></p>]]></description>
	<dc:creator>Jit</dc:creator>
</item>
<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/37225/installing-trinity</guid>
	<pubDate>Tue, 03 Jul 2018 04:31:15 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/37225/installing-trinity</link>
	<title><![CDATA[Installing Trinity !]]></title>
	<description><![CDATA[
<p>Download this https://github.com/trinityrnaseq/trinityrnaseq/releases/tag/Trinity-v2.6.6</p>

<p>➜ cd trinityrnaseq-Trinity-v2.6.6</p>

<p>➜  trinityrnaseq-Trinity-v2.6.6 git:(master) ✗ make<br />Using gnu compiler for Inchworm and Chrysalis<br />cd Inchworm &amp;&amp; (test -e configure || autoreconf) \<br />                &amp;&amp; sh ./configure --prefix=`pwd`  &amp;&amp; make install<br />checking for a BSD-compatible install... /usr/bin/install -c<br />checking whether build environment is sane... yes<br />checking for a thread-safe mkdir -p... /bin/mkdir -p<br />checking for gawk... gawk<br />checking whether make sets $(MAKE)... yes<br />checking for g++... g++<br />checking whether the C++ compiler works... yes<br />checking for C++ compiler default output file name... a.out<br />checking for suffix of executables... <br />checking whether we are cross compiling... no<br />checking for suffix of object files... o<br />checking whether we are using the GNU C++ compiler... yes<br />checking whether g++ accepts -g... yes<br />checking for style of include used by make... GNU<br />checking dependency style of g++... gcc3<br />checking for library containing cos... none required<br />configure: creating ./config.status<br />config.status: creating Makefile<br />config.status: creating src/Makefile<br />config.status: creating config.h<br />config.status: config.h is unchanged<br />config.status: executing depfiles commands<br />make[1]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />Making install in src<br />make[2]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/src'<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT Fasta_entry.o -MD -MP -MF .deps/Fasta_entry.Tpo -c -o Fasta_entry.o Fasta_entry.cpp<br />mv -f .deps/Fasta_entry.Tpo .deps/Fasta_entry.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT IRKE_run.o -MD -MP -MF .deps/IRKE_run.Tpo -c -o IRKE_run.o IRKE_run.cpp<br />mv -f .deps/IRKE_run.Tpo .deps/IRKE_run.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT sequenceUtil.o -MD -MP -MF .deps/sequenceUtil.Tpo -c -o sequenceUtil.o sequenceUtil.cpp<br />mv -f .deps/sequenceUtil.Tpo .deps/sequenceUtil.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT IRKE.o -MD -MP -MF .deps/IRKE.Tpo -c -o IRKE.o IRKE.cpp<br />mv -f .deps/IRKE.Tpo .deps/IRKE.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT KmerCounter.o -MD -MP -MF .deps/KmerCounter.Tpo -c -o KmerCounter.o KmerCounter.cpp<br />mv -f .deps/KmerCounter.Tpo .deps/KmerCounter.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT string_util.o -MD -MP -MF .deps/string_util.Tpo -c -o string_util.o string_util.cpp<br />mv -f .deps/string_util.Tpo .deps/string_util.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT Fasta_reader.o -MD -MP -MF .deps/Fasta_reader.Tpo -c -o Fasta_reader.o Fasta_reader.cpp<br />mv -f .deps/Fasta_reader.Tpo .deps/Fasta_reader.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT stacktrace.o -MD -MP -MF .deps/stacktrace.Tpo -c -o stacktrace.o stacktrace.cpp<br />mv -f .deps/stacktrace.Tpo .deps/stacktrace.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT argProcessor.o -MD -MP -MF .deps/argProcessor.Tpo -c -o argProcessor.o argProcessor.cpp<br />mv -f .deps/argProcessor.Tpo .deps/argProcessor.Po<br />g++ -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2   -o inchworm Fasta_entry.o IRKE_run.o sequenceUtil.o IRKE.o KmerCounter.o string_util.o Fasta_reader.o stacktrace.o argProcessor.o  <br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT cigar_tweaker.o -MD -MP -MF .deps/cigar_tweaker.Tpo -c -o cigar_tweaker.o cigar_tweaker.cpp<br />mv -f .deps/cigar_tweaker.Tpo .deps/cigar_tweaker.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT SAM_entry.o -MD -MP -MF .deps/SAM_entry.Tpo -c -o SAM_entry.o SAM_entry.cpp<br />mv -f .deps/SAM_entry.Tpo .deps/SAM_entry.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT SAM_reader.o -MD -MP -MF .deps/SAM_reader.Tpo -c -o SAM_reader.o SAM_reader.cpp<br />mv -f .deps/SAM_reader.Tpo .deps/SAM_reader.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT Cigar.o -MD -MP -MF .deps/Cigar.Tpo -c -o Cigar.o Cigar.cpp<br />mv -f .deps/Cigar.Tpo .deps/Cigar.Po<br />g++ -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2   -o cigar_tweaker cigar_tweaker.o SAM_entry.o sequenceUtil.o SAM_reader.o Cigar.o string_util.o stacktrace.o Fasta_reader.o Fasta_entry.o  <br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT pull_reads_with_kmers.o -MD -MP -MF .deps/pull_reads_with_kmers.Tpo -c -o pull_reads_with_kmers.o pull_reads_with_kmers.cpp<br />mv -f .deps/pull_reads_with_kmers.Tpo .deps/pull_reads_with_kmers.Po<br />g++ -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2   -o pull_reads_with_kmers pull_reads_with_kmers.o Fasta_reader.o Fasta_entry.o sequenceUtil.o KmerCounter.o string_util.o stacktrace.o argProcessor.o  <br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT FastaToDeBruijn.o -MD -MP -MF .deps/FastaToDeBruijn.Tpo -c -o FastaToDeBruijn.o FastaToDeBruijn.cpp<br />FastaToDeBruijn.cpp: In function ‘void createGraphPerRecord(std::vector &gt;, int, bool, ArgProcessor)’:<br />FastaToDeBruijn.cpp:199:39: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />                 if (seq_region.size() &lt; kmer_length) { continue; }  // can be e<br />                                       ^<br />mv -f .deps/FastaToDeBruijn.Tpo .deps/FastaToDeBruijn.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT DeBruijnGraph.o -MD -MP -MF .deps/DeBruijnGraph.Tpo -c -o DeBruijnGraph.o DeBruijnGraph.cpp<br />mv -f .deps/DeBruijnGraph.Tpo .deps/DeBruijnGraph.Po<br />g++ -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2   -o FastaToDeBruijn FastaToDeBruijn.o argProcessor.o Fasta_reader.o Fasta_entry.o sequenceUtil.o string_util.o stacktrace.o DeBruijnGraph.o  <br />g++ -DHAVE_CONFIG_H -I. -I..    -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2 -MT fastaToKmerCoverageStats.o -MD -MP -MF .deps/fastaToKmerCoverageStats.Tpo -c -o fastaToKmerCoverageStats.o fastaToKmerCoverageStats.cpp<br />fastaToKmerCoverageStats.cpp: In function ‘void populate_kmer_counter_from_reads(KmerCounter&amp;, std::__cxx11::string&amp;)’:<br />fastaToKmerCoverageStats.cpp:226:18: warning: unused variable ‘kmer_length’ [-Wunused-variable]<br />     unsigned int kmer_length = kcounter.get_kmer_length();<br />                  ^<br />mv -f .deps/fastaToKmerCoverageStats.Tpo .deps/fastaToKmerCoverageStats.Po<br />g++ -std=c++0x -pedantic -fopenmp -Wall -Wextra -Wno-deprecated -m64 -g -O2   -o fastaToKmerCoverageStats fastaToKmerCoverageStats.o argProcessor.o Fasta_reader.o Fasta_entry.o sequenceUtil.o string_util.o stacktrace.o KmerCounter.o  <br />make[3]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/src'<br />test -z "/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/bin" || /bin/mkdir -p "/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/bin"<br />  /usr/bin/install -c inchworm cigar_tweaker pull_reads_with_kmers FastaToDeBruijn fastaToKmerCoverageStats '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/bin'<br />make[3]: Nothing to be done for 'install-data-am'.<br />make[3]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/src'<br />make[2]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm/src'<br />make[2]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />make[3]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />make[3]: Nothing to be done for 'install-exec-am'.<br />make[3]: Nothing to be done for 'install-data-am'.<br />make[3]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />make[2]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />make[1]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Inchworm'<br />cd Chrysalis &amp;&amp; make UNSUPPORTED=yes <br />make[1]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Chrysalis'<br />./MakeDepend.cc: In member function ‘bool makefile_builder::dependency::operator&lt;(const makefile_builder::dependency&amp;) const’:<br />./MakeDepend.cc:93:47: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />                dependent_ == other.dependent_ &amp;&amp;<br />                                               ^<br />./MakeDepend.cc: In member function ‘bool makefile_builder::subdir_and_target::operator&lt;(const makefile_builder::subdir_and_target&amp;) const’:<br />./MakeDepend.cc:130:41: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />                subdir_ == other.subdir_ &amp;&amp;<br />                                         ^<br />./MakeDepend.cc: In function ‘int main(int, char**)’:<br />./MakeDepend.cc:223:20: warning: deprecated conversion from string constant to ‘char*’ [-Wwrite-strings]<br />   char * options = "Ad:g:u:fh";<br />                    ^<br />./MakeDepend.cc: In member function ‘void makefile_builder::DumpDependencies(const string&amp;)’:<br />./MakeDepend.cc:491:46: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />       if ( ! this-&gt;FileIsSource( dependent ) &amp;&amp; ! this-&gt;FileIsHeader( dependent<br />                                              ^<br />./MakeDepend.cc:493:44: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />            this-&gt;FileIsHeader( dependent ) &amp;&amp; this-&gt;FileIsSource( provider ) ) <br />                                            ^<br />./MakeDepend.cc: In member function ‘bool makefile_builder::FileIsHeader(const string&amp;) const’:<br />./MakeDepend.cc:1339:32: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />   return ( filename.size() &gt; 2 &amp;&amp;<br />                                ^<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:04 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./aligns/KmerAlignCore.cc -o obj/aligns/KmerAlignCore.o<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:06 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/AACodons.cc -o obj/analysis/AACodons.o<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:09 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/BreakTransByPairs.cc -o obj/analysis/BreakTransByPairs.o<br />./analysis/BreakTransByPairs.cc: In function ‘int main(int, char**)’:<br />./analysis/BreakTransByPairs.cc:105:14: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />   for (i=0; i &gt; DeBruijnGraph::get_candidate_weldmers(kmer_int_type_t, int)’:<br />./analysis/DeBruijnGraph.cc:473:23: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (int i = 0; i &lt; left_extensions.size(); i++) {<br />                       ^<br />./analysis/DeBruijnGraph.cc:476:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (int j = 0; j &lt; right_extensions.size(); j++) {<br />                           ^<br />./analysis/DeBruijnGraph.cc: In member function ‘void DeBruijnGraph::recursively_construct_kmer_extensions(kmer_int_type_t, std::vector&amp;, std::vector &gt;&amp;, char, std::map&amp;, int)’:<br />./analysis/DeBruijnGraph.cc:513:23: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (int i = 0; i &lt; adjacent_kmers.size(); i++) {<br />                       ^<br />./analysis/DeBruijnGraph.cc:527:41: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         if (kmer_extension_chars.size() == flank_extension_length) {<br />                                         ^<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:30 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/sequenceUtil.cc -o obj/analysis/sequenceUtil.o<br />./analysis/sequenceUtil.cc: In function ‘bool contains_non_gatc(std::__cxx11::string)’:<br />./analysis/sequenceUtil.cc:33:20: warning: array subscript has type ‘char’ [-Wchar-subscripts]<br />  if (_base_to_int[c] &gt; 3)<br />                    ^<br />./analysis/sequenceUtil.cc: In function ‘kmer_int_type_t kmer_to_intval(std::__cxx11::string)’:<br />./analysis/sequenceUtil.cc:264:26: warning: array subscript has type ‘char’ [-Wchar-subscripts]<br />  int val = _base_to_int[c];<br />                          ^<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:31 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/stacktrace.cc -o obj/analysis/stacktrace.o<br />/bin/rm -f lib_BubbleUpClustering_temp.a<br />ar -qc  lib_BubbleUpClustering_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/BubbleUpClustering.o obj/analysis/DNAVector.o obj/analysis/DeBruijnGraph.o obj/analysis/KmerTable.o obj/analysis/NonRedKmerTable.o obj/analysis/sequenceUtil.o obj/analysis/stacktrace.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./BubbleUpClustering<br />g++ -ggdb3    -fopenmp  -o ./BubbleUpClustering  obj/analysis/BubbleUpClustering.o -L. -lm -pthread     -l_BubbleUpClustering_temp<br />/bin/rm lib_BubbleUpClustering_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:32 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/Chrysalis.cc -o obj/analysis/Chrysalis.o<br />./analysis/Chrysalis.cc: In function ‘int main(int, char**)’:<br />./analysis/Chrysalis.cc:384:28: warning: ignoring return value of ‘int system(const char*)’, declared with attribute warn_unused_result [-Wunused-result]<br />     system(command.c_str());<br />                            ^<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:35 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/TranscriptomeGraph.cc -o obj/analysis/TranscriptomeGraph.o<br />./analysis/TranscriptomeGraph.cc: In function ‘int TranscriptomeGraph(vecDNAVector&amp;, FILE*, int, bool)’:<br />./analysis/TranscriptomeGraph.cc:668:20: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (i=0; i&lt;=d.isize()-k; i++) {<br />                    ^<br />/bin/rm -f lib_Chrysalis_temp.a<br />ar -qc  lib_Chrysalis_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/Chrysalis.o obj/analysis/DNAVector.o obj/analysis/TranscriptomeGraph.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./Chrysalis<br />g++ -ggdb3    -fopenmp  -o ./Chrysalis  obj/analysis/Chrysalis.o -L. -lm -pthread     -l_Chrysalis_temp<br />/bin/rm lib_Chrysalis_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:39 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/CreateIwormFastaBundle.cc -o obj/analysis/CreateIwormFastaBundle.o<br />/bin/rm -f lib_CreateIwormFastaBundle_temp.a<br />ar -qc  lib_CreateIwormFastaBundle_temp.a obj/analysis/AACodons.o obj/analysis/CreateIwormFastaBundle.o obj/analysis/DNAVector.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./CreateIwormFastaBundle<br />g++ -ggdb3    -fopenmp  -o ./CreateIwormFastaBundle  obj/analysis/CreateIwormFastaBundle.o -L. -lm -pthread     -l_CreateIwormFastaBundle_temp<br />/bin/rm lib_CreateIwormFastaBundle_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:42 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/GraphFromFasta.cc -o obj/analysis/GraphFromFasta.o<br />./analysis/GraphFromFasta.cc: In function ‘bool SimpleHalves(const DNAVector&amp;)’:<br />./analysis/GraphFromFasta.cc:255:15: warning: suggest parentheses around ‘&amp;&amp;’ within ‘||’ [-Wparentheses]<br />               &amp;&amp; <br />               ^<br />./analysis/GraphFromFasta.cc: In function ‘void report_iworm_graph(std::map&lt;int, Pool&gt;&amp;, std::map&amp;)’:<br />./analysis/GraphFromFasta.cc:631:31: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />             for (int j = 0; j &lt; adjacent_nodes.size(); j++) {<br />                               ^<br />./analysis/GraphFromFasta.cc: In function ‘int main(int, char**)’:<br />./analysis/GraphFromFasta.cc:1164:30: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (i=0; i bubble_up_cluster_growth(std::map&amp;, std::map&amp;)’:<br />./GraphFromFasta_MPI.cc:706:23: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (int i = 0; i &lt; pool_vec.size(); i++) {<br />                       ^<br />./GraphFromFasta_MPI.cc:727:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (int i = 0; i &lt; pool_vec.size(); i++) {<br />                           ^<br />./GraphFromFasta_MPI.cc:834:23: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (int i = 0; i &lt; pool_vec.size(); i++) {<br />                       ^<br />./GraphFromFasta_MPI.cc: In function ‘void add_unclustered_iworm_contigs(svec&amp;, vecDNAVector&amp;)’:<br />./GraphFromFasta_MPI.cc:1144:30: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (size_t i = 0; i &lt; p.size(); i++) {<br />                              ^<br />./GraphFromFasta_MPI.cc: In function ‘int main(int, char**)’:<br />./GraphFromFasta_MPI.cc:1453:60: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />             if (iworm_counter % 1000 == 0 || iworm_counter == dna.size()-1) {<br />                                                            ^<br />./GraphFromFasta_MPI.cc:1458:24: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />             for (j=0; j&lt;=d.isize()-k; j++) {<br />                        ^<br />./GraphFromFasta_MPI.cc:1479:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />                     if (c == i)<br />                           ^<br />./GraphFromFasta_MPI.cc:1503:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />                     if (c == i)<br />                           ^<br />./GraphFromFasta_MPI.cc:2235:24: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />             for (j=0; j&lt;=d.isize()-k; j++) {<br />                        ^<br />./GraphFromFasta_MPI.cc:2264:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />                     if (c == i) {<br />                           ^<br />./GraphFromFasta_MPI.cc:2359:27: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />                     if (c == i) {<br />                           ^<br />./GraphFromFasta_MPI.cc:2475:16: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (i=0; i&lt;clustered_pools.isize(); i++) {<br />                ^<br />./GraphFromFasta_MPI.cc:2483:30: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (size_t j = 0; j &lt; p.size(); j++) {<br />                              ^<br />./GraphFromFasta_MPI.cc:2496:30: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />         for (size_t j = 0; j &lt; p.size(); j++) {<br />                              ^<br />/bin/rm -f lib_GraphFromFasta_MPI_temp.a<br />ar -qc  lib_GraphFromFasta_MPI_temp.a obj/GraphFromFasta_MPI.o obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/DeBruijnGraph.o obj/analysis/KmerTable.o obj/analysis/NonRedKmerTable.o obj/analysis/sequenceUtil.o obj/analysis/stacktrace.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./GraphFromFasta_MPI<br />g++ -ggdb3    -fopenmp  -o ./GraphFromFasta_MPI  obj/GraphFromFasta_MPI.o -L. -lm -pthread     -l_GraphFromFasta_MPI_temp<br />/bin/rm lib_GraphFromFasta_MPI_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:53 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/IsoformAugment.cc -o obj/analysis/IsoformAugment.o<br />./analysis/IsoformAugment.cc: In function ‘int main(int, char**)’:<br />./analysis/IsoformAugment.cc:87:16: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (j=0; j&lt;matchesLeft.isize(); j++) {<br />                ^<br />./analysis/IsoformAugment.cc:122:16: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (j=0; j&lt;matches.isize(); j++) {<br />                ^<br />/bin/rm -f lib_IsoformAugment_temp.a<br />ar -qc  lib_IsoformAugment_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/IsoformAugment.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./IsoformAugment<br />g++ -ggdb3    -fopenmp  -o ./IsoformAugment  obj/analysis/IsoformAugment.o -L. -lm -pthread     -l_IsoformAugment_temp<br />/bin/rm lib_IsoformAugment_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:27:56 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/JoinTransByPairs.cc -o obj/analysis/JoinTransByPairs.o<br />./analysis/JoinTransByPairs.cc: In function ‘int main(int, char**)’:<br />./analysis/JoinTransByPairs.cc:293:14: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />   for (i=0; i&lt;dna.size(); i++) {<br />              ^<br />./analysis/JoinTransByPairs.cc:341:14: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />   for (i=0; i&lt;dna.size(); i++) {<br />              ^<br />/bin/rm -f lib_JoinTransByPairs_temp.a<br />ar -qc  lib_JoinTransByPairs_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/JoinTransByPairs.o obj/analysis/KmerTable.o obj/analysis/NonRedKmerTable.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./JoinTransByPairs<br />g++ -ggdb3    -fopenmp  -o ./JoinTransByPairs  obj/analysis/JoinTransByPairs.o -L. -lm -pthread     -l_JoinTransByPairs_temp<br />/bin/rm lib_JoinTransByPairs_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:00 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/QuantifyGraph.cc -o obj/analysis/QuantifyGraph.o<br />/bin/rm -f lib_QuantifyGraph_temp.a<br />ar -qc  lib_QuantifyGraph_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/KmerTable.o obj/analysis/NonRedKmerTable.o obj/analysis/QuantifyGraph.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./QuantifyGraph<br />g++ -ggdb3    -fopenmp  -o ./QuantifyGraph  obj/analysis/QuantifyGraph.o -L. -lm -pthread     -l_QuantifyGraph_temp<br />/bin/rm lib_QuantifyGraph_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:03 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/ReadsToTranscripts.cc -o obj/analysis/ReadsToTranscripts.o<br />/bin/rm -f lib_ReadsToTranscripts_temp.a<br />ar -qc  lib_ReadsToTranscripts_temp.a obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/NonRedKmerTable.o obj/analysis/ReadsToTranscripts.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./ReadsToTranscripts<br />g++ -ggdb3    -fopenmp  -o ./ReadsToTranscripts  obj/analysis/ReadsToTranscripts.o -L. -lm -pthread     -l_ReadsToTranscripts_temp<br />/bin/rm lib_ReadsToTranscripts_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:09 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./ReadsToTranscripts_MPI.cc -o obj/ReadsToTranscripts_MPI.o<br />/bin/rm -f lib_ReadsToTranscripts_MPI_temp.a<br />ar -qc  lib_ReadsToTranscripts_MPI_temp.a obj/ReadsToTranscripts_MPI.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/NonRedKmerTable.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./ReadsToTranscripts_MPI<br />g++ -ggdb3    -fopenmp  -o ./ReadsToTranscripts_MPI  obj/ReadsToTranscripts_MPI.o -L. -lm -pthread     -l_ReadsToTranscripts_MPI_temp<br />/bin/rm lib_ReadsToTranscripts_MPI_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:14 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./ReadsToTranscripts_MPI_chang.cc -o obj/ReadsToTranscripts_MPI_chang.o<br />/bin/rm -f lib_ReadsToTranscripts_MPI_chang_temp.a<br />ar -qc  lib_ReadsToTranscripts_MPI_chang_temp.a obj/ReadsToTranscripts_MPI_chang.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/NonRedKmerTable.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./ReadsToTranscripts_MPI_chang<br />g++ -ggdb3    -fopenmp  -o ./ReadsToTranscripts_MPI_chang  obj/ReadsToTranscripts_MPI_chang.o -L. -lm -pthread     -l_ReadsToTranscripts_MPI_chang_temp<br />/bin/rm lib_ReadsToTranscripts_MPI_chang_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:18 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/RunButterfly.cc -o obj/analysis/RunButterfly.o<br />./analysis/RunButterfly.cc: In member function ‘void JobControl::ClearFiles()’:<br />./analysis/RunButterfly.cc:107:25: warning: ignoring return value of ‘int system(const char*)’, declared with attribute warn_unused_result [-Wunused-result]<br />       system(rm.c_str());<br />                         ^<br />./analysis/RunButterfly.cc: In member function ‘void JobControl::Submit()’:<br />./analysis/RunButterfly.cc:77:27: warning: ignoring return value of ‘int system(const char*)’, declared with attribute warn_unused_result [-Wunused-result]<br />    system(theCmmd.c_str());<br />                           ^<br />./analysis/RunButterfly.cc:85:27: warning: ignoring return value of ‘int system(const char*)’, declared with attribute warn_unused_result [-Wunused-result]<br />    system(theCmmd.c_str());   <br />                           ^<br />/bin/rm -f lib_RunButterfly_temp.a<br />ar -qc  lib_RunButterfly_temp.a obj/analysis/RunButterfly.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./RunButterfly<br />g++ -ggdb3    -fopenmp  -o ./RunButterfly  obj/analysis/RunButterfly.o -L. -lm -pthread     -l_RunButterfly_temp<br />/bin/rm lib_RunButterfly_temp.a<br />g++  -W -Wall -Wno-unused -Wno-deprecated -ansi -pedantic -Wno-long-long -fno-nonansi-builtins -Wctor-dtor-privacy -Wsign-promo -Woverloaded-virtual -Wendif-labels  -O3  -ggdb3 -DMAKE_DATE='"Die Jul  3 11:28:23 CEST 2018  "' -DMAKE_OS_RELEASE='"4.4.0-128-generic"' -DMAKE_RELEASE='"3.0"' -DNEW_MAKEFILE -imacros system/BigFileDefines.h -pthread  -ftemplate-depth-30 -fno-strict-aliasing -mieee-fp -iquote . -ISpines   -fopenmp        -c ./analysis/TranscriptomeFromVaryK.cc -o obj/analysis/TranscriptomeFromVaryK.o<br />./analysis/TranscriptomeFromVaryK.cc: In function ‘int main(int, char**)’:<br />./analysis/TranscriptomeFromVaryK.cc:216:16: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />     for (j=0; j&lt;=d.lsize()-k; j++) {<br />                ^<br />./analysis/TranscriptomeFromVaryK.cc:218:22: warning: comparison between signed and unsigned integer expressions [-Wsign-compare]<br />       for (int x=j; x&lt;j+k; x++) {<br />                      ^<br />/bin/rm -f lib_TranscriptomeFromVaryK_temp.a<br />ar -qc  lib_TranscriptomeFromVaryK_temp.a obj/aligns/KmerAlignCore.o obj/analysis/AACodons.o obj/analysis/DNAVector.o obj/analysis/KmerTable.o obj/analysis/NonRedKmerTable.o obj/analysis/TranscriptomeFromVaryK.o obj/base/ErrorHandling.o obj/base/FileParser.o obj/base/StringUtil.o obj/util/mutil.o<br />./checkLock ./TranscriptomeFromVaryK<br />g++ -ggdb3    -fopenmp  -o ./TranscriptomeFromVaryK  obj/analysis/TranscriptomeFromVaryK.o -L. -lm -pthread     -l_TranscriptomeFromVaryK_temp<br />/bin/rm lib_TranscriptomeFromVaryK_temp.a<br />make[1]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/Chrysalis'<br />cd trinity-plugins &amp;&amp; make trinity_essentials<br />make[1]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins'<br />tar xvf seqtk-trinity.v0.0.2.tar.gz<br />seqtk-trinity-0.0.2/<br />seqtk-trinity-0.0.2/.gitignore<br />seqtk-trinity-0.0.2/LICENSE<br />seqtk-trinity-0.0.2/Makefile<br />seqtk-trinity-0.0.2/README.md<br />seqtk-trinity-0.0.2/khash.h<br />seqtk-trinity-0.0.2/kseq.h<br />seqtk-trinity-0.0.2/seqtk.c<br />seqtk-trinity-0.0.2/testing/<br />seqtk-trinity-0.0.2/testing/newformat_1.fq<br />seqtk-trinity-0.0.2/testing/newformat_2.fq<br />seqtk-trinity-0.0.2/testing/oldformat_1.fq<br />seqtk-trinity-0.0.2/testing/oldformat_2.fq<br />cd seqtk-trinity-0.0.2 &amp;&amp; make<br />make[2]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/seqtk-trinity-0.0.2'<br />gcc -g -Wall -O2 -Wno-unused-function seqtk.c -o seqtk-trinity -lz -lm<br />seqtk.c: In function ‘stk_comp’:<br />seqtk.c:444:16: warning: variable ‘lc’ set but not used [-Wunused-but-set-variable]<br />    int la, lb, lc, na, nb, nc, cnt[11];<br />                ^<br />make[2]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/seqtk-trinity-0.0.2'<br />mv seqtk-trinity-0.0.2/seqtk-trinity ./BIN/.<br />tar -zxvf "ParaFly-0.1.0".tar.gz &amp;&amp; \<br />cd "ParaFly-0.1.0" &amp;&amp; sh ./configure --prefix=`pwd` &amp;&amp; make install &amp;&amp; \<br />cp bin/ParaFly ../BIN/<br />ParaFly-0.1.0/<br />ParaFly-0.1.0/LICENSE<br />ParaFly-0.1.0/Makefile<br />ParaFly-0.1.0/Makefile.am<br />ParaFly-0.1.0/Makefile.in<br />ParaFly-0.1.0/README.md<br />ParaFly-0.1.0/aclocal.m4<br />ParaFly-0.1.0/bin/<br />ParaFly-0.1.0/bin/ParaFly<br />ParaFly-0.1.0/config.h<br />ParaFly-0.1.0/config.h.in<br />ParaFly-0.1.0/config.log<br />ParaFly-0.1.0/config.status<br />ParaFly-0.1.0/configure<br />ParaFly-0.1.0/configure.ac<br />ParaFly-0.1.0/depcomp<br />ParaFly-0.1.0/install-sh<br />ParaFly-0.1.0/missing<br />ParaFly-0.1.0/src/<br />ParaFly-0.1.0/src/.deps/<br />ParaFly-0.1.0/src/.deps/ParaFly.Po<br />ParaFly-0.1.0/src/.deps/argProcessor.Po<br />ParaFly-0.1.0/src/Makefile<br />ParaFly-0.1.0/src/Makefile.am<br />ParaFly-0.1.0/src/Makefile.in<br />ParaFly-0.1.0/src/ParaFly.cpp<br />ParaFly-0.1.0/src/argProcessor.cpp<br />ParaFly-0.1.0/src/argProcessor.hpp<br />ParaFly-0.1.0/stamp-h1<br />ParaFly-0.1.0/test/<br />ParaFly-0.1.0/test/Makefile<br />ParaFly-0.1.0/test/cmds.txt<br />ParaFly-0.1.0/test/rand_exit.pl<br />checking for a BSD-compatible install... /usr/bin/install -c<br />checking whether build environment is sane... yes<br />checking for a thread-safe mkdir -p... /bin/mkdir -p<br />checking for gawk... gawk<br />checking whether make sets $(MAKE)... yes<br />checking for g++... g++<br />checking for C++ compiler default output file name... a.out<br />checking whether the C++ compiler works... yes<br />checking whether we are cross compiling... no<br />checking for suffix of executables... <br />checking for suffix of object files... o<br />checking whether we are using the GNU C++ compiler... yes<br />checking whether g++ accepts -g... yes<br />checking for style of include used by make... GNU<br />checking dependency style of g++... gcc3<br />checking for library containing cos... none required<br />configure: creating ./config.status<br />config.status: creating Makefile<br />config.status: creating src/Makefile<br />config.status: creating config.h<br />config.status: config.h is unchanged<br />config.status: executing depfiles commands<br />make[2]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />Making install in src<br />make[3]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/src'<br />g++ -DHAVE_CONFIG_H -I. -I..    -pedantic -fopenmp -Wall -Wextra -Wno-long-long -Wno-deprecated -m64 -g -O2 -MT ParaFly.o -MD -MP -MF .deps/ParaFly.Tpo -c -o ParaFly.o ParaFly.cpp<br />mv -f .deps/ParaFly.Tpo .deps/ParaFly.Po<br />g++ -DHAVE_CONFIG_H -I. -I..    -pedantic -fopenmp -Wall -Wextra -Wno-long-long -Wno-deprecated -m64 -g -O2 -MT argProcessor.o -MD -MP -MF .deps/argProcessor.Tpo -c -o argProcessor.o argProcessor.cpp<br />mv -f .deps/argProcessor.Tpo .deps/argProcessor.Po<br />g++ -pedantic -fopenmp -Wall -Wextra -Wno-long-long -Wno-deprecated -m64 -g -O2   -o ParaFly ParaFly.o argProcessor.o  <br />make[4]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/src'<br />test -z "/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/bin" || /bin/mkdir -p "/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/bin"<br />  /usr/bin/install -c ParaFly '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/bin'<br />make[4]: Nothing to be done for 'install-data-am'.<br />make[4]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/src'<br />make[3]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0/src'<br />make[3]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />make[4]: Entering directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />make[4]: Nothing to be done for 'install-exec-am'.<br />make[4]: Nothing to be done for 'install-data-am'.<br />make[4]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />make[3]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />make[2]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins/ParaFly-0.1.0'<br />ln -sf Trimmomatic-0.36 Trimmomatic<br />make[1]: Leaving directory '/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity-plugins'<br />sh ./util/support_scripts/trinity_install_tests.sh<br />~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~</p>

<p>Performing Unit Tests of Build<br /> <br />~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~<br />Inchworm:                has been Installed Properly<br />Chrysalis:               has been Installed Properly<br />QuantifyGraph:           has been Installed Properly<br />GraphFromFasta:          has been Installed Properly<br />ReadsToTranscripts:      has been Installed Properly<br />parafly:                 has been Installed Properly<br />➜  trinityrnaseq-Trinity-v2.6.6 git:(master) ✗<br />➜  trinityrnaseq-Trinity-v2.6.6 git:(master) ✗ ./Trinity</p>

<p>###############################################################################<br />#</p>

<p>     ______  ____   ____  ____   ____  ______  __ __<br />    |      ||    \ |    ||    \ |    ||      ||  |  |<br />    |      ||  D  ) |  | |  _  | |  | |      ||  |  |<br />    |_|  |_||    /  |  | |  |  | |  | |_|  |_||  ~  |<br />      |  |  |    \  |  | |  |  | |  |   |  |  |___, |<br />      |  |  |  .  \ |  | |  |  | |  |   |  |  |     |<br />      |__|  |__|\_||____||__|__||____|  |__|  |____/</p>

<p>#<br />#<br /># Required:<br />#<br />#  --seqType &lt;string&gt;      :type of reads: ('fa' or 'fq')<br />#<br />#  --max_memory       :suggested max memory to use by Trinity where limiting can be enabled. (jellyfish, sorting, etc)<br />#                            provided in Gb of RAM, ie.  '--max_memory 10G'<br />#<br />#  If paired reads:<br />#      --left      :left reads, one or more file names (separated by commas, no spaces)<br />#      --right     :right reads, one or more file names (separated by commas, no spaces)<br />#<br />#  Or, if unpaired reads:<br />#      --single    :single reads, one or more file names, comma-delimited (note, if single file contains pairs, can use flag: --run_as_paired )<br />#<br />#  Or,<br />#      --samples_file          tab-delimited text file indicating biological replicate relationships.<br />#                                   ex.<br />#                                        cond_A    cond_A_rep1    A_rep1_left.fq    A_rep1_right.fq<br />#                                        cond_A    cond_A_rep2    A_rep2_left.fq    A_rep2_right.fq<br />#                                        cond_B    cond_B_rep1    B_rep1_left.fq    B_rep1_right.fq<br />#                                        cond_B    cond_B_rep2    B_rep2_left.fq    B_rep2_right.fq<br />#<br />#                      # if single-end instead of paired-end, then leave the 4th column above empty.<br />#<br />####################################<br />##  Misc:  #########################<br />#<br />#  --SS_lib_type           :Strand-specific RNA-Seq read orientation.<br />#                                   if paired: RF or FR,<br />#                                   if single: F or R.   (dUTP method = RF)<br />#                                   See web documentation.<br />#<br />#  --CPU                      :number of CPUs to use, default: 2<br />#  --min_contig_length        :minimum assembled contig length to report<br />#                                   (def=200)<br />#<br />#  --long_reads            :fasta file containing error-corrected or circular consensus (CCS) pac bio reads<br />#                                   (** note: experimental parameter **, this functionality continues to be under development)<br />#<br />#  --genome_guided_bam     :genome guided mode, provide path to coordinate-sorted bam file.<br />#                                   (see genome-guided param section under --show_full_usage_info)<br />#<br />#  --jaccard_clip                  :option, set if you have paired reads and<br />#                                   you expect high gene density with UTR<br />#                                   overlap (use FASTQ input file format<br />#                                   for reads).<br />#                                   (note: jaccard_clip is an expensive<br />#                                   operation, so avoid using it unless<br />#                                   necessary due to finding excessive fusion<br />#                                   transcripts w/o it.)<br />#<br />#  --trimmomatic                   :run Trimmomatic to quality trim reads<br />#                                        see '--quality_trimming_params' under full usage info for tailored settings.<br />#                                  <br />#<br />#  --no_normalize_reads            :Do *not* run in silico normalization of reads. Defaults to max. read coverage of 50.<br />#                                       see '--normalize_max_read_cov' under full usage info for tailored settings.<br />#                                       (note, as of Sept 21, 2016, normalization is on by default)<br />#     <br />#  --no_distributed_trinity_exec   :do not run Trinity phase 2 (assembly of partitioned reads), and stop after generating command list.<br />#<br />#<br />#  --output                :name of directory for output (will be<br />#                                   created if it doesn't already exist)<br />#                                   default( your current working directory: "/home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/trinity_out_dir" <br />#                                    note: must include 'trinity' in the name as a safety precaution! )<br />#             <br />#  --workdir               :where Trinity phase-2 assembly computation takes place (defaults to --output setting).<br />#                                  (can set this to a node-local drive or RAM disk)     <br />#  <br />#  --full_cleanup                  :only retain the Trinity fasta file, rename as ${output_dir}.Trinity.fasta<br />#<br />#  --cite                          :show the Trinity literature citation<br />#<br />#  --verbose                       :provide additional job status info during the run.<br />#<br />#  --version                       :reports Trinity version (Trinity-v2.6.6) and exits.<br />#<br />#  --show_full_usage_info          :show the many many more options available for running Trinity (expert usage).<br />#<br />#<br />###############################################################################<br />#<br />#  *Note, a typical Trinity command might be:<br />#<br />#        Trinity --seqType fq --max_memory 50G --left reads_1.fq  --right reads_2.fq --CPU 6<br />#<br />#<br />#    and for Genome-guided Trinity:<br />#<br />#        Trinity --genome_guided_bam rnaseq_alignments.csorted.bam --max_memory 50G<br />#                --genome_guided_max_intron 10000 --CPU 6<br />#<br />#     see: /home/urbe/Tools/trinityrnaseq-Trinity-v2.6.6/sample_data/test_Trinity_Assembly/<br />#          for sample data and 'runMe.sh' for example Trinity execution<br />#<br />#     For more details, visit: http://trinityrnaseq.github.io<br />#<br />###############################################################################</p>
]]></description>
	<dc:creator>Rahul Nayak</dc:creator>
</item>
<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/44703/the-role-of-lncrna-in-bioinformatics-unlocking-the-secrets-of-the-genome</guid>
	<pubDate>Sat, 07 Dec 2024 02:09:47 -0600</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/44703/the-role-of-lncrna-in-bioinformatics-unlocking-the-secrets-of-the-genome</link>
	<title><![CDATA[The Role of lncRNA in Bioinformatics: Unlocking the Secrets of the Genome]]></title>
	<description><![CDATA[<p>In the intricate dance of molecular biology, long non-coding RNAs (lncRNAs) have emerged as key players, capturing the interest of researchers worldwide. These RNA molecules, once dismissed as "junk," have proven to be vital in the regulation of gene expression, cellular processes, and the progression of diseases. The intersection of lncRNA studies and bioinformatics is transforming our understanding of these enigmatic molecules, offering profound insights into their structure, function, and therapeutic potential.</p><h3>What Are lncRNAs?</h3><p>lncRNAs are RNA transcripts longer than 200 nucleotides that do not code for proteins. Despite their non-coding nature, they play diverse roles in gene regulation, including chromatin remodeling, transcriptional control, and post-transcriptional processing. Unlike messenger RNAs (mRNAs), lncRNAs often function as scaffolds, decoys, or guides in cellular machinery, influencing biological processes such as cell differentiation, immune response, and even cancer metastasis.</p><h3>Challenges in lncRNA Research</h3><p>Identifying and understanding lncRNAs pose unique challenges:</p><ol>
<li><strong>High Sequence Variability</strong>: Unlike protein-coding genes, lncRNAs exhibit low sequence conservation across species, making functional predictions difficult.</li>
<li><strong>Low Expression Levels</strong>: lncRNAs are often expressed at low levels, complicating their detection in transcriptomic data.</li>
<li><strong>Diverse Functions</strong>: The multifunctional nature of lncRNAs requires advanced computational tools to decipher their roles in complex networks.</li>
</ol><h3>Bioinformatics: A Crucial Ally in lncRNA Research</h3><p>Bioinformatics bridges the gap between raw biological data and meaningful insights, making it indispensable in lncRNA research. Here&rsquo;s how:</p><h4>1. <strong>Identification and Annotation</strong></h4><p>High-throughput sequencing technologies like RNA-seq generate vast amounts of data. Bioinformatics tools such as <em>StringTie</em>, <em>Cufflinks</em>, and <em>HISAT2</em> help assemble and annotate lncRNAs from this data. Additionally, databases like NONCODE, LNCipedia, and Ensembl provide curated repositories of lncRNA sequences and annotations.</p><h4>2. <strong>Functional Prediction</strong></h4><p>Bioinformatics algorithms predict the potential functions of lncRNAs by analyzing their interactions with DNA, RNA, and proteins. Tools like LncRNA2Function and RIblast utilize sequence motifs and secondary structure predictions to hypothesize about the roles of specific lncRNAs.</p><h4>3. <strong>Network Construction</strong></h4><p>lncRNAs often act as regulatory hubs. Bioinformatics platforms such as Cytoscape enable the visualization of lncRNA-mediated networks, elucidating their roles in pathways like cell cycle regulation and apoptosis.</p><h4>4. <strong>Epigenetic Studies</strong></h4><p>lncRNAs are known to interact with chromatin-modifying complexes, influencing gene expression epigenetically. Tools like ChIP-seq and ATAC-seq, combined with computational pipelines, identify these interactions and map them to the genome.</p><h4>5. <strong>Clinical Applications</strong></h4><p>Bioinformatics aids in the discovery of lncRNA biomarkers for diseases like cancer and neurodegenerative disorders. Machine learning models analyze differential expression profiles, helping prioritize lncRNAs with therapeutic potential.</p><h3>Case Study: lncRNAs in Cancer Research</h3><p>lncRNAs such as HOTAIR and MALAT1 have been implicated in cancer progression. Bioinformatics analyses have revealed their roles in promoting metastasis and altering the tumor microenvironment. For example, transcriptome analysis in cancer patients identifies lncRNA expression signatures, enabling precision medicine approaches.</p><h3>Future Directions</h3><p>The fusion of bioinformatics with experimental biology is unlocking the secrets of lncRNAs. Advances in artificial intelligence, single-cell sequencing, and structural modeling promise to overcome current limitations. Here are some promising directions:</p><ul>
<li><strong>Integrative Analysis</strong>: Combining multi-omics data to understand the interplay of lncRNAs with other biomolecules.</li>
<li><strong>CRISPR Screens</strong>: Leveraging bioinformatics to design CRISPR-based functional screens for lncRNAs.</li>
<li><strong>Therapeutic Development</strong>: Using bioinformatics to design lncRNA-based therapeutics, including antisense oligonucleotides and RNA interference tools.</li>
</ul><h3>Conclusion</h3><p>lncRNAs are the hidden gems of the genome, and bioinformatics is the key to unearthing their full potential. As research progresses, lncRNAs could pave the way for novel diagnostics, targeted therapies, and personalized medicine, revolutionizing our approach to complex diseases.</p><p>The journey into the world of lncRNAs is only beginning, and bioinformatics will continue to play a pivotal role in decoding these molecular mysteries. Whether you&rsquo;re a researcher, clinician, or bioinformatics enthusiast, the study of lncRNAs offers a fascinating frontier of discovery.</p>]]></description>
	<dc:creator>LEGE</dc:creator>
</item>
<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/42633/protocol-for-de-novo-genome-assembly-using-illumina-reads</guid>
	<pubDate>Sat, 16 Jan 2021 21:42:11 -0600</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/42633/protocol-for-de-novo-genome-assembly-using-illumina-reads</link>
	<title><![CDATA[Protocol for De novo Genome Assembly using Illumina Reads]]></title>
	<description><![CDATA[<p>In this protocol, we address and describe the de novo assembly method for small to medium-sized genomes.</p><p><strong>What is de novo genome assembly?<br /></strong>The method of taking a large number of short DNA sequences and placing them back together to create a reflection of the original chromosomes from which the DNA originated relates to genome assembly. No previous knowledge of the source DNA sequence length, structure or composition is inferred by De novo genome assemblies. The DNA of the target organism is split up into millions of tiny parts and read on a sequencing computer in a genome sequencing experiment. Depending on the sequencing system used, these "reads" range from 20 to 1000 nucleotide base pairs (bp) in length. Usually, length reads of 36 - 150 bp are produced for Illumina style short read sequencing. These reads can be either &ldquo;single ended&rdquo; as described above or &ldquo;paired end.&rdquo;</p><p><strong>Why genome assembly?</strong><br />In basic research into why and how they live, as well as in applied topics, identifying the DNA sequence of an organism is useful. Awareness of a DNA sequence may be useful in virtually any biological research because of the relevance of DNA to living things. For example, it may be used in medicine to classify, diagnose and eventually improve genetic disorder therapies. Similarly, pathogens study can lead to treatments for infectious diseases.</p><p><strong>Raw NGS data</strong><br />Reads can be saved as a Fasta file as text or in a FastQ file with their attributes.&nbsp;FastQ is the most common read file format since this is what the Illumina sequencing pipeline creates. This will henceforth be the subject of our conversation.</p><p><strong>In a nutshell the protocol:</strong> <br />Get the sequence file(s) read from the sequencing machine (s). <br />Look at the readings - have an idea of what you have and what the standard is like. <br />If required, raw data cleanup/quality trimming. <br />Choose an adequate parameter set for assembly. <br />Assemble the data into scaffolds/contigs. <br />Examine the assembly performance and determine the efficiency of the assembly.</p><p><strong>Read Quality Control:</strong><br />Check the qualiy with fastQC.<br />Script<br />https://bioinformaticsonline.com/snippets/view/42540/install-fastqc-using-conda</p><p>Quality trimming/cleanup of read files.<br />This function trims adapters, barcodes and other contaminants from the reads.<br />Script<br />https://bioinformaticsonline.com/snippets/view/42542/trimmomatic-command</p><p><strong>Genome Assembly:</strong><br />The object of this portion of the protocol is to explain the method of assembling the reads trimmed by quality into draft contigs.</p><blockquote><p>spades.py -1 illumina_R1.fastq.gz -2 illumina_R2.fastq.gz --careful --cov-cutoff auto -o result_of_spades_assembly_all_illumina</p></blockquote><p>A significant range of short-read assemblers are available. Everyone with strengths and disadvantages of their own. <br /><em>Some of the assemblers available include:</em><br />Velvet<br />SOAP-denovo<br />MIRA<br />ALLPATHS</p><p>Next step is to assess the suitability and what to do with a draft package of contiguous details for the remainder of the study now.&nbsp;Few stuff you can note about the contigs you just created:&nbsp;They're the draft Contigs. Any mis-assemblies can occur.</p><p><strong>Mis-assembly checking and assembly metric tools:</strong><br />QUAST - Quality assessment tool for genome assembly http://bioinf.spbau.ru/quast<br />Mauve assembly metrics - http://code.google.com/p/ngopt/wiki/How_To_Score_Genome_Assemblies_with_Mauve<br />InGAP-SV - https://sites.google.com/site/nextgengenomics/ingap and http://ingap.sourceforge.net/<br />inGAP is also useful for finding structural variants between genomes from read mappings.</p><p><strong>Genome finishing tools:</strong><br />Semi-automated gap fillers:<br />Gap filler - http://www.baseclear.com/landingpages/basetools-a-wide-range-of-bioinformatics-solutions/gapfiller/</p><p>IMAGE (V2) - http://sourceforge.net/apps/mediawiki/image2/index.php?title=Main_Page</p><p><strong>Genome visualisers and editors:</strong><br />Artemis - http://www.sanger.ac.uk/resources/software/artemis/<br />IGV - http://www.broadinstitute.org/igv/</p><p><strong>Automated and semi automated annotation tools:</strong><br />Prokka - https://github.com/tseemann/prokka<br />RAST - http://www.nmpdr.org/FIG/wiki/view.cgi/FIG/RapidAnnotationServer<br />JCVI Annotation Service - http://www.jcvi.org/cms/research/projects/annotation-service/</p><p><strong>Frequent command use for the analysis are at:</strong></p><p>https://bioinformaticsonline.com/blog/view/38765/list-of-tools-frequently-used-while-genome-assembly<br />https://bioinformaticsonline.com/pages/view/42275/frequent-parameters-for-bioinformatics-tools</p>]]></description>
	<dc:creator>BioStar</dc:creator>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/bookmarks/view/43652/peregrine-shimmer-genome-assembly-toolkit</guid>
	<pubDate>Thu, 16 Dec 2021 02:50:19 -0600</pubDate>
	<link>https://bioinformaticsonline.com/bookmarks/view/43652/peregrine-shimmer-genome-assembly-toolkit</link>
	<title><![CDATA[Peregrine &amp; SHIMMER Genome Assembly Toolkit]]></title>
	<description><![CDATA[<p><span>Peregrine is a fast genome assembler for accurate long reads (length &gt; 10kb, accuracy &gt; 99%). It can assemble a human genome from 30x reads within 20 cpu hours from reads to polished consensus. It uses Sparse HIereachical MimiMizER (SHIMMER) for fast read-to-read overlaping without quadratic comparisions used in other OLC assemblers.</span></p><p>Address of the bookmark: <a href="https://github.com/cschin/Peregrine" rel="nofollow">https://github.com/cschin/Peregrine</a></p>]]></description>
	<dc:creator>Abhi</dc:creator>
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<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/39469/introduction-to-bioinformatics</guid>
	<pubDate>Wed, 05 Jun 2019 14:58:11 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/39469/introduction-to-bioinformatics</link>
	<title><![CDATA[Introduction to Bioinformatics]]></title>
	<description><![CDATA[<p><img src="https://edu.t-bio.info/wp-content/uploads/2017/07/Introduction-Course-Title-11.jpg" alt="Introduction to Bioinformatics Course" width="600" height="315.6" style="vertical-align: top; border: 0px; border: 0px;"></p><p>Introduction to bioinformatics is a course for biologists and clinicians that would like to learn more about the way bioinformatics is used in healthcare, biotech and pharmaceuitcal industry as well as basic research. The course covers many of the topics transformed by the emergence of big data and computational technologies. To learn more about the course, visit:&nbsp;<a href="https://edu.t-bio.info/course/introduction-bioinformatics/">https://edu.t-bio.info/course/introduction-bioinformatics/</a></p>]]></description>
	<dc:creator>eliabrodsky</dc:creator>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/researchlabs/view/40881/liu-lab</guid>
  <pubDate>Tue, 04 Feb 2020 06:27:02 -0600</pubDate>
  <link></link>
  <title><![CDATA[Liu Lab]]></title>
  <description><![CDATA[
<p>Shirley is a computational biologist with expertise in cancer epigenetics. Her research focuses on algorithm development and integrative mining from big data generated on microarrays, massively parallel sequencing, and other high throughput techniques to model the specificity and function of transcription factors, chromatin regulators and lncRNAs in tumor development, progression, drug response and resistance.</p>

<p>https://liulab-dfci.github.io/software/</p>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/pages/view/7674/useful-publications-and-websites-for-deep-sequencing-data-analysis</guid>
	<pubDate>Sun, 29 Dec 2013 22:30:45 -0600</pubDate>
	<link>https://bioinformaticsonline.com/pages/view/7674/useful-publications-and-websites-for-deep-sequencing-data-analysis</link>
	<title><![CDATA[Useful Publications and Websites for Deep Sequencing Data Analysis]]></title>
	<description><![CDATA[<h3>Global overview papers</h3><p>Next generation quantitative genetics in plants. Jim&eacute;nez-G&oacute;mez, Frontiers in Plant Science 2:77, 2011 <span style="text-decoration: underline;"><a href="http://www.frontiersin.org/Plant_Physiology/10.3389/fpls.2011.00077/full">Full Text</a> </span><em>[equally relevant to animal and microbial systems]</em></p><p>Sense from sequence reads: methods for alignment and assembly. Flicek &amp; Birney, Nat Methods 6(11 Suppl):S6-S12, 2009. <a href="http://www.nature.com/nmeth/journal/v6/n11s/full/nmeth.1376.html"><span style="text-decoration: underline;">Full Text</span></a></p><h3>Library construction and experimental design</h3><p>Statistical design and analysis of RNA sequencing data. Auer &amp; Doerge, Genetics 185(2):405-16, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2881125"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Biases in Illumina transcriptome sequencing caused by random hexamer priming. Hansen et al., Nucleic Acids Res. 38(12): e131, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2896536"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Analyzing and minimizing PCR amplification bias in Illumina sequencing libraries. Aird et al, Genome Biology 12:R18, 2011 <a href="http://genomebiology.com/2011/12/2/R18"><span style="text-decoration: underline;">Full Text</span></a></p><p>Amplification-free Illumina sequencing-library preparation facilitates improved mapping and assembly of GC-biased genomes. Kozarewa et al, Nature Methods 6(4):291-5, 2009 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2664327/"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Cost-effective, high-throughput DNA sequencing libraries for multiplexed target capture. Rohland &amp; Reich, Genome Research 22(5): 939&ndash;946. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3337438/"><span style="text-decoration: underline;">PubMedCentral</span></a></p><h3>Data formats, data management, and alignment software tools<span style="text-decoration: underline;"> </span></h3><p>The Sequence Alignment/Map format and SAMtools. Li et al, Bioinformatics 25(16):2078-9, 2009 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2723002"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>SAM format specification <a href="http://samtools.sourceforge.net/SAM1.pdf"><span style="text-decoration: underline;">file</span></a></p><p>Efficient storage of high throughput sequencing data using reference-based compression. Fritz et al, Genome Res 21(5):734-40, 2011. <a href="http://genome.cshlp.org/content/21/5/734.long"><span style="text-decoration: underline;">Full Text</span></a></p><p>Compression of DNA sequence reads in FASTQ format. Deorowicz &amp; Grabowski, Bioinformatics 27(6):860-2, 2011. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21252073"><span style="text-decoration: underline;">PubMed</span></a></p><p>Fast and accurate short read alignment with Burrows-Wheeler transform. Li &amp; Durbin, Bioinformatics 25(14):1754-60, 2009. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2705234"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Improving SNP discovery by base alignment quality. Li H, Bioinformatics 27(8):1157-8, 2011. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21320865"><span style="text-decoration: underline;">PubMed</span></a></p><p>BEDTools: a flexible suite of utilities for comparing genomic features. Quinlan and Hall, Bioinformatics 26:841-842, 2010. <a href="http://bioinformatics.oxfordjournals.org/content/26/6/841.full.pdf+html"><span style="text-decoration: underline;">Publisher Website</span></a></p><h3>Data quality assessment, filtering, and correction</h3><p>SolexaQA: At-a-glance quality assessment of Illumina second-generation sequencing data. Cox et al, BMC Bioinformatics 11:485, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2956736"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>TileQC: a system for tile-based quality control of Solexa data. Dolan &amp; Denver, BMC Bioinformatics 9:250, 2008 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2443380"><span style="text-decoration: underline;">PubMedCentral</span></a> <em>[requires a reference sequence]</em></p><p>Quake: quality-aware detection and correction of sequencing errors. Kelley et al, Genome Biol 11(11):R116, 2010. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21114842"> <span style="text-decoration: underline;">PubMed</span></a></p><p>FastQC: a quality control tool for high-throughput sequence data. <a href="http://www.bioinformatics.bbsrc.ac.uk/projects/fastqc/"><span style="text-decoration: underline;">Home Page</span></a></p><p>FASTX-toolkit: FASTQ/A short-reads pre-processing tools <a href="http://hannonlab.cshl.edu/fastx_toolkit/"><span style="text-decoration: underline;">Home Page</span></a></p><p>Reference-free validation of short read data. Schr&ouml;der et al, PLoS One 5(9):e12681, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2943903"> <span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Correction of sequencing errors in a mixed set of reads. Salmela, Bioinformatics 26(10):1284, 2010. <a href="http://bioinformatics.oxfordjournals.org/content/26/10/1284.long"><span style="text-decoration: underline;">Full Text</span></a> <em>[includes error correction of SOLiD reads in colorspace]</em></p><p>Repeat-aware modeling and correction of short read errors. Yang et al, BMC Bioinformatics 12(Supp1):S52, 2011 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3044310"> <span style="text-decoration: underline;">PubMedCentral</span></a> <em>[requires a reference sequence]</em></p><p>HiTEC: accurate error correction in high-throughput sequencing data. Ilie et al, Bioinformatics 27(3):295, 2011 <a href="http://bioinformatics.oxfordjournals.org/content/27/3/295.long"><span style="text-decoration: underline;">Full Text</span></a></p><p>Error correction of high-throughput sequencing datasets with non-uniform coverage. Medvedev et al., Bioinformatics 27(13):i137-41, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3117386"><span style="text-decoration: underline;">PubMedCentral</span></a></p><h3>De novo assembly<span style="text-decoration: underline;"> </span></h3><p>Velvet: algorithms for de novo short read assembly using de Bruijn graphs. Zerbino &amp; Birney, Genome Res 18(5):821-9, 2008. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2336801">u&gt;PubMedCentral</a></p><p>Assembly of large genomes using second-generation sequencing. Schatz et al, Genome Res 20(9):1165-73, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2928494"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>High-quality draft assemblies of mammalian genomes from massively parallel sequence data. Gnerre et al, PNAS 108(4): 1513-18, 2011 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3029755"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Genome assembly has a major impact on gene content: a comparison of annotation in two <em>Bos taurus </em> assemblies. Florea&nbsp; et al., PLoS One 6(6):e21400, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3120881/"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Artemis: an integrated platform for visualization and analysis of high-throughput sequence-based experimental data. Carver et al, Bioinformatics 28(4):464 - 469, 2012 <span style="text-decoration: underline;"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3278759/">PubMedCentral</a></span></p><p>Efficient de novo assembly of large genomes using compressed data structures. Simpson &amp; Durbin, Genome Research 22:549-556, 2012 <span style="text-decoration: underline;"><a href="http://genome.cshlp.org/content/22/3/549.full">Full Text</a></span> <em>[Describes the String Graph Assembler (SGA), which assembled a human genome in less than 6 days using 54 Gb of RAM and a 123-processor compute cluster for calculation of an FM-index of the 1.2 billion reads]</em></p><p>Readjoiner: a fast and memory efficient string graph-based sequence assembler. Gonnella &amp; Kurtz, BMC Bioinformatics 13: 82, 2012 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507659"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Assemblathon 1: A competitive assessment of de novo short read assembly methods. Earl et al, Genome Research 21:2224-2241, 2011 <span style="text-decoration: underline;"><a href="http://genome.cshlp.org/content/early/2011/09/16/gr.126599.111.full.pdf+html">Full Text</a></span></p><h3>Chromatin immunoprecipation analysis: ChIP-seq</h3><p>ChIP-seq: advantages and challenges of a maturing technology. Park, Nat Rev Genet. 10:669-80, 2009 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3191340/"><span style="text-decoration: underline;">PubMed</span></a></p><p>ChIP-seq and Beyond: new and improved methodologies to detect and characterize protein-DNA interactions. Furey, Nat Rev Genet 13: 840&ndash;852, 2012 <a href="http://www.nature.com/nrg/journal/v13/n12/full/nrg3306.html"> <span style="text-decoration: underline;">Publisher Web Site</span></a></p><p>MuMoD: a Bayesian approach to detect multiple modes of protein&ndash;DNA binding from genome-wide ChIP data. Narlikar, Nucleic Acids Res 41:21&ndash;32, 2013 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3592440/"><span style="text-decoration: underline;">PubMed</span></a></p><h3>Transcriptome analysis</h3><h3>Assembly and comparison to genome</h3><p>Full-length transcriptome assembly from RNA-Seq data without a reference genome. Grabherr et al, Nature Biotechnology 29:644 - 652, 2011. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21572440"><span style="text-decoration: underline;">PubMed</span></a> <em>[The software is called <a href="http://trinityrnaseq.sourceforge.net/"><span style="text-decoration: underline;">Trinity</span></a>, and is available on Sourceforge.]</em></p><p>Comprehensive analysis of RNA-Seq data reveals extensive RNA editing in a human transcriptome. Peng et al, Nature Biotechnology 30:253 - 260, 2012. <span style="text-decoration: underline;"><a href="http://www.ncbi.nlm.nih.gov/pubmed/22327324">PubMed</a></span> <em>[Several comments on this paper question whether the reported differences are in fact evidence of editing or are simply sequencing errors - the authors stand by their conclusions, but the controversy demonstrates the importance of robust data analysis methods.] </em></p><p>Optimization of de novo transcriptome assembly from next-generation sequencing data. Surget-Groba &amp; Montoya-Burgos, Genome Res 20(10):1432-40, 2010. <a href="http://genome.cshlp.org/content/20/10/1432.long"><span style="text-decoration: underline;">Full Text</span></a></p><p>Rnnotator: an automated <em>de novo</em> transcriptome assembly pipeline from stranded RNA-Seq reads. Martin et al, BMC Genomics 11:663, 2010 <a href="http://www.biomedcentral.com/1471-2164/11/663"><span style="text-decoration: underline;">Full Text</span></a></p><p><em>De novo</em> assembly and analysis of RNA-seq data. Robertson et al, Nature Methods 7:909-912, 2010 <a href="http://www.nature.com/nmeth/journal/v7/n11/full/nmeth.1517.html"><span style="text-decoration: underline;">Full Text</span></a> <em>[describes Trans-ABySS, a pipeline to use the ABySS parallel assembler for de novo transcriptome analysis]</em></p><h3>Differential expression analysis</h3><p>R-SAP: a multi-threading computational pipeline for the characterization of high-throughput RNA-sequencing data. Mittal &amp; McDonald, Nucleic Acids Res, 2012 <span style="text-decoration: underline;"><a href="http://nar.oxfordjournals.org/content/early/2012/01/28/nar.gks047.long">Full Text</a></span></p><p>Targeted RNA sequencing reveals the deep complexity of the human transcriptome. Mercer et al, Nature Biotechnology 30:99 - 104, 2012 <span style="text-decoration: underline;"><a href="http://www.nature.com/nbt/journal/v30/n1/full/nbt.2024.html"> Publisher Website</a></span></p><p>Differential gene and transcript expression analysis of RNA-Seq experiments with TopHat and Cufflinks. Trapnell et al, Nature Protocols 7:562 - 578, 2012 <span style="text-decoration: underline;"><a href="http://www.nature.com/nprot/journal/v7/n3/full/nprot.2012.016.html"> Publisher Website</a></span></p><p>Characterization and improvement of RNA-Seq precision in quantitative transcript expression profiling. Łabaj et al, Bioinformatics 27:i383 - i391, 2011 <span style="text-decoration: underline;"><a href="http://bioinformatics.oxfordjournals.org/content/27/13/i383.full.pdf+html"> Full Text</a></span></p><p>Improving RNA-Seq expression estimates by correcting for fragment bias. Roberts et al, Genome Biol 12:R22, 2011 <span style="text-decoration: underline;"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3129672/">PubMed Central</a></span></p><p>Cloud-scale RNA-sequencing differential expression analysis with Myrna. Langmead et al, Genome Biol 11:R83, 2010 <a href="http://genomebiology.com/2010/11/8/R83"><span style="text-decoration: underline;">Full Text</span></a></p><p>From RNA-seq reads to differential expression results. Oshlack et al, Genome Biol 11(12):220, 2010 <a href="http://genomebiology.com/content/11/12/220"><span style="text-decoration: underline;">Full Text</span></a></p><p>DEGseq: an R package for identifying differentially expressed genes from RNA-seq data. Wang et al., Bioinformatics. 26(1):136-8. 2010 <a href="http://www.ncbi.nlm.nih.gov/pubmed/19855105"><span style="text-decoration: underline;"> PubMed</span></a></p><p>DEseq: Differential expression analysis for sequence count data. Anders and Huber, Genome Biology 11:R106, 2010 <a href="http://genomebiology.com/2010/11/10/R106"><span style="text-decoration: underline;">Full Text</span></a></p><p>edgeR: a Bioconductor package for differential expression analysis of digital gene expression data. Robinson et al., Bioinformatics 26(1):139-40 2010 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2796818"> <span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Two-stage Poisson model for testing RNA-seq data. Auer and Doerge, SAGMB 10(1), article 26 <a href="http://www.bepress.com/sagmb/vol10/iss1/art26/"><span style="text-decoration: underline;">Full Text</span></a></p><p>Experimental design, preprocessing, normalization and differential expression analysis of small RNA sequencing experiments. McCormick et al., Silence2(1):2, 2011 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3055805"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>RNA-Seq gene expression estimation with read mapping uncertainty. Li et al, Bioinformatics 26:493-500, 2010 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2820677">PubMedCentral</a> <em>[describes the RSEM software package]</em></p><h3>Comparing genomes and assemblies; variant detection<span style="text-decoration: underline;"> </span></h3><p>Versatile and open software for comparing large genomes. Kurtz et al, Genome Biol (5(2):R12, 2004. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC395750"><span style="text-decoration: underline;">PubMedCentral</span></a> <em>[describes the MUMmer software for full-genome alignment &amp; comparisons]</em></p><p>Searching for SNPs with cloud computing. Langmead et al, Genome Biol 10(11):R134, 2009 <a href="http://genomebiology.com/content/10/11/R134"><span style="text-decoration: underline;">Full Text</span></a></p><p>Calling SNPs without a reference sequence. Ratan et al, BMC Bioinformatics 11:130, 2010 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2851604"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Microindel detection in short-read sequence data. Krawitz et al, Bioinformatics 26(6):722-9, 2010. <a href="http://bioinformatics.oxfordjournals.org/content/26/6/722.long"><span style="text-decoration: underline;">Full Text</span></a></p><p>vipR: variant identification in pooled DNA using R. Altmann et al., Bioinformatics 27: i77-i84, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3117388"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Geoseq: a tool for dissecting deep-sequencing datasets. Gurtowski et al, BMC Bioinformatics 11:506, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2972303/"><span style="text-decoration: underline;">PubMedCentral</span></a> <em>[Geoseq is a web service that allows searching deep sequencing datasets with a reference sequence of a gene of interest]</em></p><p>Detecting and annotating genetic variations using the HugeSeq pipeline. Lam et al, Nature Biotechnology 30:226 - 229, 2012 <span style="text-decoration: underline;"><a href="http://www.nature.com/nbt/journal/v30/n3/full/nbt.2134.html">Publisher Website</a></span>, <span style="text-decoration: underline;"><a href="http://hugeseq.snyderlab.org/">Home Page</a></span></p><p>Genome-wide LORE1 retrotransposon mutagenesis and high-throughput insertion detection in <em>Lotus japonicus</em>. Urbański et al, Plant J 64:731-741, 2012. <span style="text-decoration: underline;"><a href="http://onlinelibrary.wiley.com/doi/10.1111/j.1365-313X.2011.04827.x/abstract">Publisher Website</a></span> <em>[This paper describes a 2-dimensional pooling strategy with barcoding to allow use of Illumina sequencing to screen for retrotransposon insertion mutations, and includes a software package called FSTpoolit for analysis of the resulting sequence reads.]</em></p><h3>Genotyping by sequencing</h3><p>Genome-wide genetic marker discovery and genotyping using next-generation sequencing. Davey et al., Nat Rev Genet 12(7):499-510, 2011 <a href="http://www.ncbi.nlm.nih.gov/pubmed/21681211"><span style="text-decoration: underline;">PubMed</span></a> <em>[A review of methods available at the time]</em></p><p>A robust, simple genotyping-by-sequencing (GBS) approach for high diversity species. Elshire et al., PLoS One 6(5):e19379, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3087801"><span style="text-decoration: underline;">Full Text</span></a></p><p>Development of high-density genetic maps for barley and wheat using a novel two-enzyme genotyping-by-sequencing approach. Poland et al., PLoS One 7(2): e32253, 2012. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3289635/"><span style="text-decoration: underline;">Full Text</span></a></p><p>Double digest RADseq: an inexpensive method for de novo SNP discovery and genotyping in model and non-model species. Peterson et al, PLoS One 7(5):e37135, . 2012. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365034/"><span style="text-decoration: underline;">Full Text</span></a></p><p>Imputation of unordered markers and the impact on genomic selection accuracy. Rutkowski et al, G3 3(3):427-39, 2013. <a href="http://www.g3journal.org/content/3/3/427.long"><span style="text-decoration: underline;">Full Text</span></a></p><p>Diversity Arrays Technology (DArT) and next-generation sequencing combined: genome-wide, high-throughput, highly informative genotyping for molecular breeding of <em>Eucalyptus</em>. Sansaloni et al., BMC Proceedings 5(Suppl 7):P54, 2011 <span style="text-decoration: underline;"><a href="http://www.biomedcentral.com/1753-6561/5/S7/P54">Full Text</a></span></p><p>High-throughput genotyping by whole-genome resequencing. Huang et al., Genome Res 19(6):1068-76, 2009. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2694477"><span style="text-decoration: underline;">Full Text</span></a></p><p>Multiplexed shotgun genotyping for rapid and efficient genetic mapping. Andolfatto et al. Genome Res 21(4):610-7, 2011. <a href="http://genome.cshlp.org/content/21/4/610.long"><span style="text-decoration: underline;">Full Text</span></a></p><h3>Restriction-site Associated DNA (RAD) markers</h3><p>Rapid SNP discovery and genetic mapping using sequenced RAD markers. Baird et al, PLoS One 3(10):e3376, 2008 <span style="text-decoration: underline;"><a href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0003376">Full Text</a></span></p><p>Linkage mapping and comparative genomics using next-generation RAD sequencing of a non-model organism. Baxter et al., PLoS One 6(4):e19315, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3082572"><span style="text-decoration: underline;">Full Text</span></a></p><p>Genome evolution and meiotic maps by massively parallel DNA sequencing: spotted gar, an outgroup for the teleost genome duplication. Amores et al, Genetics 188(4):799-808, 2011. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21828280"><span style="text-decoration: underline;"> PubMed</span></a></p><p>Construction and application for QTL analysis of a Restriction-site Associated DNA (RAD) linkage map in barley. Chutimanitsakun et al, BMC Genomics 4; 12:4, 2011. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3023751"><span style="text-decoration: underline;">Full Text</span></a></p><p>RAD tag sequencing as a source of SNP markers in <em>Cynara cardunculus </em>L. Scaglione et al., BMC Genomics 13:3, 2012. <span style="text-decoration: underline;"><a href="http://www.biomedcentral.com/1471-2164/13/3">Full Text</a></span></p><p>Paired-end RAD-seq for de novo assembly and marker design without available reference. Willing et al., Bioinformatics 27(16):2187-93, 2011. <a href="http://bioinformatics.oxfordjournals.org/content/27/16/2187.long"><span style="text-decoration: underline;">Publisher Website</span></a></p><p>Local de novo assembly of RAD paired-end contigs using short sequencing reads. Etter et al., PLOS ONE 6(4): e18561, 2011. <a href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0018561"><span style="text-decoration: underline;">Full Text</span></a></p><p>Stacks: building and genotyping loci de novo from short-read sequences. Catchen et al., G3: Genes, Genomes, Genetics, 1:171-182, 2011. <span style="text-decoration: underline;"> Full Text</span>, <a href="http://creskolab.uoregon.edu/stacks/"><span style="text-decoration: underline;">Home Page</span></a></p><p>Rainbow: an integrated tool for efficient clustering and assembling RAD-seq reads. Chong et al, Bioinformatics 28(21):2732-7, 2012. <a href="http://bioinformatics.oxfordjournals.org/content/28/21/2732.long"> <span style="text-decoration: underline;">Publisher Website</span></a></p><p>UK RAD Sequencing Wiki page, with bibliography and RADTools software download <a href="https://www.wiki.ed.ac.uk/display/RADSequencing/Home"><span style="text-decoration: underline;">Home Page</span></a></p><h3>Workspace environments</h3><p><span style="text-decoration: underline;">Papers</span></p><p>Galaxy: a comprehensive approach for supporting accessible, reproducible, and transparent computational research in the life sciences. Goecks et al, Genome Biol 11(8):R86, 2010 <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2945788"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>Galaxy Cloudman: Delivering compute clusters. BMC Bioinformatics 11(Suppl. 12):S4, 2010 <a href="http://www.biomedcentral.com/content/pdf/1471-2105-11-S12-S4.pdf"><span style="text-decoration: underline;">Full Text</span></a></p><p><a href="http://www.broadinstitute.org/gsa/wiki/index.php/The_Genome_Analysis_Toolkit"><span style="text-decoration: underline;">The Genome Analysis Toolkit</span></a>: a MapReduce framework for analyzing next-generation DNA sequencing data. McKenna et al, Genome Res 20(9):1297-303, 2010. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2928508"><span style="text-decoration: underline;">PubMedCentral</span></a></p><p>A framework for variation discovery and genotyping using next-generation DNA sequencing data. DePristo et al., Nat Genet 43(5):491-8, 2011. <a href="http://www.ncbi.nlm.nih.gov/pubmed/21478889"><span style="text-decoration: underline;"> PubMed</span></a></p><p><span style="text-decoration: underline;">Online resources</span></p><p>The <a href="http://cran.r-project.org/"><span style="text-decoration: underline;">R statistical computing</span></a> environment includes<a href="http://www.bioconductor.org/"><span style="text-decoration: underline;"> Bioconductor</span></a>, a specialized set of tools for analysis of microarray and high-throughput sequencing data. Introductory materials from on-line or short workshops are widely available online; examples are <span style="text-decoration: underline;"><a href="http://bioconductor.org/help/course-materials/2012/Evomics2012/Bioconductor-tutorial.pdf">Evomics2012 Bioconductor-tutorial.pdf</a></span>, and <a href="http://bcb.dfci.harvard.edu/%7Eaedin/courses/Bioconductor/"><span style="text-decoration: underline;">Intro to Bioconductor</span></a>. Materials from an advanced course on high-throughput genetic data analysis are at <span style="text-decoration: underline;"><a href="http://bioconductor.org/help/course-materials/2012/SeattleFeb2012/">Seattle 2012 materials</a></span>. Thomas Girke of UC-Riverside has written a very complete set of manuals describing the use of R and Bioconductor for analysis of genomic datasets, available at <a href="http://manuals.bioinformatics.ucr.edu/home/R_BioCondManual">R and Bioconductor Manuals</a>. <br /> <a href="http://cran.r-project.org/manuals.html"><span style="text-decoration: underline;">Manuals</span></a> and contributed <a href="http://cran.r-project.org/other-docs.html"><span style="text-decoration: underline;">documentation</span></a> for R are available at the R-project.org website, and video tutorials are also available on Youtube; those posted by Tutorlol are brief, clear, and to the point. <br /> Materials from a series of mini-courses in R taught in 2010 at UCLA are available:</p><ul>
<li><a href="http://scc.stat.ucla.edu/page_attachments/0000/0141/10S-basicR.pdf">Intro to programming and graphics</a></li>
<li><a href="http://scc.stat.ucla.edu/page_attachments/0000/0143/S10_RProgII.pdf">Data manipulation and functions</a></li>
<li><a href="http://scc.stat.ucla.edu/page_attachments/0000/0185/Graphics_course.pdf">Graphics for exploratory data analysis</a></li>
<li><a href="http://scc.stat.ucla.edu/page_attachments/0000/0147/20100503_IntroStats.pdf">Introductory statistics</a></li>
<li><a href="http://scc.stat.ucla.edu/page_attachments/0000/0188/reg_R_1_09S_slides.pdf">Linear regression</a></li>
</ul><p><a href="http://a-little-book-of-r-for-bioinformatics.readthedocs.org/en/latest/"> <span style="text-decoration: underline;">A Little Book of R for Bioinformatics</span></a> is an on-line resource with information and exercises to provide practice in bioinformatics analysis of DNA sequences and other biological data in R. <br /> Many books on specific topics in R programming are also available through Amazon or other vendors.</p><h3>Cloud computing resources</h3><p>The case for cloud computing in genome informatics. Lincoln Stein, Genome Biol. 11(5):207, 2010 <a href="http://www.ncbi.nlm.nih.gov/pubmed/20441614"><span style="text-decoration: underline;">Pubmed</span></a></p><p>Galaxy Cloudman: delivering cloud compute clusters. Afgan et al, BMC Bioinformatics <span style="text-decoration: underline;">11</span>(Suppl 12):S4, 2010 <a href="http://www.biomedcentral.com/1471-2105/11/S12/S4"><span style="text-decoration: underline;">Full Text</span></a></p><p><a href="http://cloudbiolinux.com/">CloudBioLinux</a> is an open-source project that provides a bioinformatics Linux system for cloud computing, pre-configured with a variety of software tools installed and ready to use.</p><p>A <a href="https://github.com/chapmanb/cloudbiolinux/blob/master/doc/intro/gettingStarted_CloudBioLinux.pdf?raw=true"><span style="text-decoration: underline;">tutorial</span></a> on getting started with CloudBioLinux on the Amazon Web Services Elastic Compute Cloud (EC2)</p><p><a href="http://userwww.service.emory.edu/%7Eeafgan/content/ppt/EnisAfgan_BOSC_2010.pdf"><span style="text-decoration: underline;">Deploying Galaxy on the Cloud</span></a>  slides from a presentation by Enis Afgan (Emory University) at the <br /> &nbsp;Bioinformatics Open Source Conference in Boston, July 2010</p><p>A <a href="http://screencast.g2.bx.psu.edu/cloud/"><span style="text-decoration: underline;"> screencast</span></a> that provides a step-by-step guide to starting a Galaxy cluster in the EC2 environment</p><p>A <a href="https://bitbucket.org/galaxy/galaxy-central/wiki/cloud"><span style="text-decoration: underline;">webpage</span></a> that has the same information in text form, and is the basis for the screencast</p><p>The iPlant Collaborative, an NSF-funded project to create computational resources for plant biology research, provides access to cloud computing resources through <span style="text-decoration: underline;"><a href="http://www.iplantcollaborative.org/discover/atmosphere">Atmosphere</a></span></p><p>SeqWare Query Engine: storing and searching sequence data in the cloud. OConnor et al, BMC Bioinformatics <strong>11</strong>(Suppl 12)<strong>:</strong>S2, 2010 <a href="http://www.biomedcentral.com/1471-2105/11/S12/S2"><span style="text-decoration: underline;">Full Text</span></a></p><p>An overview of the Hadoop/MapReduce/HBase framework and its current applications in bioinformatics. Taylor, BMC Bioinformatics <strong>11</strong>(Suppl 12)<strong>:</strong>S1, 2010 <a href="http://www.biomedcentral.com/1471-2105/11/S12/S1"><span style="text-decoration: underline;">Full Text</span></a></p><h3>Links to Linux command-line tutorials and resources</h3><p>Tutorials for AWK, a powerful tool for handling data tables</p><ul>
<li>A set of <a href="http://people.bu.edu/scottm/AWK.NOTES"><span style="text-decoration: underline;">awk notes</span></a> from Boston University</li>
<li>Bruce Barnett's <a href="http://www.grymoire.com/Unix/Awk.html"><span style="text-decoration: underline;">awk tutorial</span></a></li>
<li>Greg Goebel's <a href="http://www.vectorsite.net/tsawk.html"><span style="text-decoration: underline;">awk tutorial</span></a></li>
<li><a href="http://teaching.software-carpentry.org/2013/01/16/1433/"><span style="text-decoration: underline;">Executing an awk command from R</span></a> to simplify data exploratory analysis, from Lex Nederbragt</li>
</ul><p>Tutorials for bash shell scripting</p><ul>
<li>A <a href="http://www.linuxconfig.org/bash-scripting-tutorial"><span style="text-decoration: underline;">tutorial</span></a> at linuxconfig.org</li>
<li>A <a href="http://www.hypexr.org/bash_tutorial.php"><span style="text-decoration: underline;">Getting Started With Bash</span></a> tutorial at hypexr.org</li>
<li>Mendel Cooper's <a href="http://tldp.org/LDP/abs/html/"><span style="text-decoration: underline;">Advanced Bash Shell-Scripting Guide</span></a></li>
</ul><p>Tutorials for sed, the command-line stream editor</p><ul>
<li>A <a href="http://www.panix.com/%7Eelflord/unix/sed.html"><span style="text-decoration: underline;">tutorial</span></a> at Rutgers</li>
<li>Peteris Krumins claims to have the <a href="http://www.catonmat.net/blog/worlds-best-introduction-to-sed/"><span style="text-decoration: underline;"> World's Best Introduction to Sed</span></a>; take a look and judge for yourself.</li>
<li>Bruce Barnett's <a href="http://www.grymoire.com/Unix/Sed.html"><span style="text-decoration: underline;">sed tutorial</span></a>.</li>
</ul><h3>Links to other useful sites</h3><p>The<a href="http://seqanswers.com/"><span style="text-decoration: underline;"> SEQanswers</span></a> online community has forums on several topics related to sequencing; the bioinformatics forum is the most active.</p><p>The SEQanswers <span style="text-decoration: underline;"><a href="http://seqanswers.com/wiki/Software">Software Wiki</a></span> is a list of software for analysis of sequencing data</p><p><a href="http://biostar.stackexchange.com/">Biostar</a> is another online community for questions and answers on bioinformatics and computational genomics.</p><p>Information on file formats used by the University of California - Santa Cruz Genome Browser is on the <a href="http://genome.ucsc.edu/FAQ/FAQformat"><span style="text-decoration: underline;"> FAQ list</span></a></p><p>A manual for the Integrated Genome Browser visualization tool is <a href="http://wiki.transvar.org/confluence/display/igbman/Home"><span style="text-decoration: underline;">here</span></a></p><p>Course materials for a short course entitled <a href="http://bioconductor.org/help/course-materials/2010/SeattleIntro/"><span style="text-decoration: underline;">Introduction to R and Bioconductor</span></a>, held in Seattle in Dec 2010</p><p><a href="http://great.stanford.edu/"><span style="text-decoration: underline;">Genomic Regions Enrichment of Annotations Tool</span></a> - A web service to test for over-representation of specific ontology categories among genes near ChIP-seq peaks</p><p><a href="http://www.animalgenome.org/bioinfo/resources/nextgensoft.html"><span style="text-decoration: underline;">Next-gen-seq software</span></a> - a list of software packages, both commercial and open-source, related to analysis of deep sequencing datasets</p><p><a href="http://www.cbcb.umd.edu/software/"><span style="text-decoration: underline;">Software</span></a> from the Center for Bioinformatics and Computational Biology, University of Maryland - many useful programs, all open-source</p><p><a href="http://bioinformatics.psb.ugent.be/plaza/"><span style="text-decoration: underline;"> PLAZA</span></a>: a comparative genomics resource to study gene and genome evolution in plants; described by Proost et al, Plant Cell 21:3718, 2010 <a href="http://www.plantcell.org/content/21/12/3718.full"><span style="text-decoration: underline;">Full Text</span></a></p><p>The European Bioinformatics Institute provides tools <a href="http://www.ebi.ac.uk/Tools/rcloud/"><span style="text-decoration: underline;">ArrayExpressHTS</span><span style="text-decoration: underline;"> and R-Cloud</span></a> for analysis of transcriptome data</p>]]></description>
	<dc:creator>Rahul Nayak</dc:creator>
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