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<TITLE> EMBOSS: gbasezvalue </TITLE>
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gbasezvalue
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<H2> Function </H2>
Extracts conserved oligomers per position using Z-score
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<H2>Description</H2>
<p>
This function calculates and extracts conserved oligomers per position using<br />
Z-score, in regions around the start/stop codons. The oligomers are returned<br />
in ranking order up to "-limit" number.<br />
<br />
G-language SOAP service is provided by the<br />
Institute for Advanced Biosciences, Keio University.<br />
The original web service is located at the following URL:<br />
<br />
http://www.g-language.org/wiki/soap<br />
<br />
WSDL(RPC/Encoded) file is located at:<br />
<br />
http://soap.g-language.org/g-language.wsdl<br />
<br />
Documentation on G-language Genome Analysis Environment methods are<br />
provided at the Document Center<br />
<br />
http://ws.g-language.org/gdoc/<br />
<br />
</p>
<H2>Usage</H2>
Here is a sample session with gbasezvalue
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% gbasezvalue refseqn:NC_000913
Extracts conserved oligomers per position using Z-score
Program compseq output file (optional) [nc_000913.gbasezvalue]:
</pre></td></tr></table>
Go to the <a href="#input">input files</a> for this example<br>
Go to the <a href="#output">output files</a> for this example<br><br>
<h2>Command line arguments</h2>
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<th align="left">Qualifier</th>
<th align="left">Type</th>
<th align="left">Description</th>
<th align="left">Allowed values</th>
<th align="left">Default</th>
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<th align="left" colspan=5>Standard (Mandatory) qualifiers</th>
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<td>[-sequence]<br>(Parameter 1)</td>
<td>seqall</td>
<td>Nucleotide sequence(s) filename and optional format, or reference (input USA)</td>
<td>Readable sequence(s)</td>
<td><b>Required</b></td>
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<td>[-outfile]<br>(Parameter 2)</td>
<td>outfile</td>
<td>Program compseq output file (optional)</td>
<td>Output file</td>
<td><i><*></i>.gbasezvalue</td>
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<th align="left" colspan=5>Additional (Optional) qualifiers</th>
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<td colspan=5>(none)</td>
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<th align="left" colspan=5>Advanced (Unprompted) qualifiers</th>
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<td>-limit</td>
<td>integer</td>
<td>Rank threshold for showing the conserved oligomer</td>
<td>Any integer value</td>
<td>5</td>
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<td>-position</td>
<td>selection</td>
<td>Either 'start' (around start codon) or 'end' (around stop codon) to create the PWM</td>
<td>Choose from selection list of values</td>
<td>start</td>
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<td>-patlen</td>
<td>integer</td>
<td>Length of oligomer to count</td>
<td>Any integer value</td>
<td>3</td>
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<td>-upstream</td>
<td>integer</td>
<td>Length upstream of specified position to create PWM</td>
<td>Any integer value</td>
<td>30</td>
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<td>-downstream</td>
<td>integer</td>
<td>Length downstream of specified position to create PWM</td>
<td>Any integer value</td>
<td>30</td>
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<td>-[no]accid</td>
<td>boolean</td>
<td>Include to use sequence accession ID as query</td>
<td>Boolean value Yes/No</td>
<td>Yes</td>
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<h2 id="input">Input file format</h2>
<p>
The database definitions for following commands are available at<br />
http://soap.g-language.org/kbws/embossrc<br />
<br />
gbasezvalue reads one or more nucleotide sequences.<br />
<br />
</p>
<h2 id="output">Output file format</h3>
<p>
The output from gbasezvalue is to a plain text file.<br />
<br />
File: nc_000913.gbasezvalue<br />
<br />
<table width="90%"><tr><td bgcolor="#CCFFCC">
Sequence: NC_000913<br />
position:-30,1,taa,-0.76525<br />
2,aga,-0.79101<br />
3,tta,-1.14174<br />
4,cta,-1.18831<br />
5,aat,-1.86652<br />
position:-29,1,cta,-0.18368<br />
2,aat,-0.71851<br />
3,gac,-1.26182<br />
4,taa,-1.39455<br />
<br />
<font color=red>[Part of this file has been deleted for brevity]</font><br />
<br />
position:29,1,gct,1.66288<br />
2,act,1.26637<br />
3,tat,0.66721<br />
4,cct,-0.43158<br />
5,tgt,-0.59254<br />
position:30,1,ctg,3.12072<br />
2,att,0.04193<br />
3,ctc,-0.12416<br />
4,cta,-0.38461<br />
5,tta,-0.76413<br />
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<h2>Data files</h2>
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None.
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<h2>Notes</h2>
<p>
None.
</p>
<h2>References</h2>
<pre>
Arakawa, K., Mori, K., Ikeda, K., Matsuzaki, T., Konayashi, Y., and
Tomita, M. (2003) G-language Genome Analysis Environment: A Workbench
for Nucleotide Sequence Data Mining, Bioinformatics, 19, 305-306.
Arakawa, K. and Tomita, M. (2006) G-language System as a Platform for
large-scale analysis of high-throughput omics data, J. Pest Sci.,
31, 7.
Arakawa, K., Kido, N., Oshita, K., Tomita, M. (2010) G-language Genome
Analysis Environment with REST and SOAP Web Service Interfaces,
Nucleic Acids Res., 38, W700-W705.
</pre>
<h2>Warnings</h2>
<p>
None.
</p>
<h2>Diagnostic Error Messages</h2>
<p>
None.
</p>
<h2>Exit status</h2>
<p>
It always exits with a status of 0.
</p>
<h2>Known bugs</h2>
<p>
None.
</p>
<h2>See also</h2>
<table border cellpadding=4 bgcolor="#FFFFF0"><tr><th>Program name</th>
<th>Description</th></tr>
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<td><a href="gbase_counter.html">gbase_counter</a></td>
<td>Creates a position weight matrix of oligomers around start codon</td>
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<td><a href="gview_cds.html">gview_cds</a></td>
<td>Displays a graph of nucleotide contents around start and stop codons</td>
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<h2>Author(s)</h2>
<pre>
Hidetoshi Itaya (celery@g-language.org)
Institute for Advanced Biosciences, Keio University
252-0882 Japan
Kazuharu Arakawa (gaou@sfc.keio.ac.jp)
Institute for Advanced Biosciences, Keio University
252-0882 Japan</pre>
<h2>History</h2>
2012 - Written by Hidetoshi Itaya
<h2>Target users</h2>
This program is intended to be used by everyone and everything, from
naive users to embedded scrips.
<h2>Comments</h2>
None.
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