<?xml version="1.0" encoding="UTF-8"?>
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    <journal-meta>
                    <journal-id journal-id-type="publisher-id">IJG</journal-id>
        <journal-title-group>
            <journal-title>Comparative and Functional Genomics</journal-title>
        </journal-title-group>
        <issn pub-type="epub">1532-6268</issn>
        <issn pub-type="ppub">1531-6912</issn>
        <publisher>
            <publisher-name>Hindawi Publishing Corporation</publisher-name>
        </publisher>
    </journal-meta>
    <article-meta>
        <article-id pub-id-type="publisher-id">060964</article-id>
        <article-id pub-id-type="doi">10.1155/2007/60964</article-id>
        <article-id pub-id-type="publisher-id">60964</article-id>
        <article-categories>
            <subj-group subj-group-type="heading">
                <subject>Research Article</subject>
            </subj-group>
        </article-categories>
        <title-group>
            <article-title>Expression Divergence of Tandemly Arrayed Genes in Human and Mouse</article-title>
        </title-group>
        <contrib-group>
            <contrib contrib-type="author" id="U96890627">
                <name>
                    <surname>Shoja</surname>
                    <given-names>Valia</given-names>
                </name>
                <email>vshoja@vt.edu</email>
                <xref ref-type="aff" rid="I1"/>
            </contrib>
            <contrib contrib-type="author" id="U85309640">
                <name>
                    <surname>Murali</surname>
                    <given-names>T. M.</given-names>
                </name>
                <email>murali@cs.vt.edu</email>
                <xref ref-type="aff" rid="I1"/>
            </contrib>
            <contrib contrib-type="author" id="U32072584">
                <name>
                    <surname>Zhang</surname>
                    <given-names>Liqing</given-names>
                </name>
                <email>lqzhang@vt.edu</email>
                <xref ref-type="aff" rid="I1"/>
            </contrib>
            <contrib contrib-type="Academic Editor" id="U39264084">
                <name>
                    <surname>Denny</surname>
                    <given-names>Paul</given-names>
                </name>
            </contrib>
        </contrib-group>
        <aff id="I1">
            <addr-line>Department of Computer Science</addr-line>
            <addr-line>Virginia Tech</addr-line>
            <addr-line>Blacksburg, VA 24060</addr-line>
            <country>USA</country>
            <ext-link ext-link-type="domain-name">vt.edu</ext-link>
        </aff>
        <pub-date pub-type="publication-year">
            <year>2007</year>
        </pub-date>
        <pub-date pub-type="archival-date">
            <day>30</day>
            <month>10</month>
            <year>2007</year>
        </pub-date>
        <volume>2007</volume>
        <history>
            <date date-type="received">
                <day>04</day>
                <month>07</month>
                <year>2007</year>
            </date>
            <date date-type="accepted">
                <day>07</day>
                <month>09</month>
                <year>2007</year>
            </date>
        </history>
        <permissions>
            <copyright-year>2007</copyright-year>
            <copyright-holder>Copyright © 2007 </copyright-holder>
            <license license-type="open-access">
                <license-p>This is an open access article distributed under the <ext-link xlink:href="http://creativecommons.org/licenses/by/3.0/">Creative Commons Attribution License</ext-link>, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.</license-p>
            </license>
        </permissions>
        <abstract>
            <p>Tandemly arrayed genes (TAGs) account for about one third of the duplicated genes in eukaryotic genomes, yet there has not been any systematic study of their gene expression patterns. Taking advantage of recently published large-scale microarray data sets, we studied the expression divergence of 361 two-member TAGs in human and 212 two-member TAGs in mouse and examined the effect of sequence divergence, gene orientation, and chromosomal proximity on the divergence of TAG expression patterns. Our results show that there is a weak negative correlation between sequence divergence of TAG members and their expression similarity. There is also a weak negative correlation between chromosomal proximity of TAG members and their expression similarity. We did not detect any significant relationship between gene orientation and expression similarity. We also found that downstream TAG members do not show significantly narrower expression breadth than upstream members, contrary to what we predict based on TAG expression divergence hypothesis that we propose. Finally, we show that both chromosomal proximity and expression correlation in TAGs do not differ significantly from their neighboring non-TAG gene pairs, suggesting that tandem duplication is unlikely to be the cause for the higher-than-random expression association between neighboring genes on a chromosome in human and mouse.</p>
        </abstract>
        <funding-group>
            <award-group>
                <funding-source>A Support Program for Innovative Research Strategies</funding-source>
            </award-group>
        </funding-group>
        <counts>
            <ref-count count="29"/>
            <page-count count="8"/>
        </counts>
    </article-meta>
</front>
