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<document id="447A954BE4509A79653F4E014C08AB63" ID-DOI="10.1007/s13127-023-00633-8" ID-ISSN="1618-1077" ID-Zenodo-Dep="12765007" IM.bibliography_approvedBy="julia" IM.illustrations_approvedBy="julia" IM.taxonomicNames_approvedBy="julia" IM.treatments_approvedBy="julia" checkinTime="1721248065677" checkinUser="felipe" docAuthor="Tilic, Ekin &amp; Rouse, Greg W." docDate="2024" docId="03CE1244FFEDFFF56F8ECEDA5FEAFBBE" docLanguage="en" docName="OrgDivEvol.24.67-83.pdf" docOrigin="Organisms Diversity &amp; Evolution 24 (1)" docSource="http://dx.doi.org/10.1007/s13127-023-00633-8" docStyle="DocumentStyle:92260E183F2ECC5FAA0643175D3F67A1.1:OrgDivEvol.2010-.journal_article.open" docStyleId="92260E183F2ECC5FAA0643175D3F67A1" docStyleName="OrgDivEvol.2010-.journal_article.open" docStyleVersion="1" docTitle="Veneriserva pygoclava Rossi 1984" docType="treatment" docVersion="1" lastPageNumber="75" masterDocId="FFF76A3CFFE5FFFD6F06CC2A5E41FFE9" masterDocTitle="Hardly Venuss servant-morphological adaptations of Veneriserva to an endoparasitic lifestyle and its phylogenetic position within Dorvilleidae (Annelida)" masterLastPageNumber="83" masterPageNumber="67" pageNumber="75" updateTime="1721754235023" updateUser="julia" zenodo-license-document="CC-BY-4.0">
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<mods:title id="09FD44103061BAE4B667CBAB7B9E0A68">Hardly Venuss servant-morphological adaptations of Veneriserva to an endoparasitic lifestyle and its phylogenetic position within Dorvilleidae (Annelida)</mods:title>
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<mods:namePart id="47BF14907347FCD329D8E85A771F1FFF">Tilic, Ekin</mods:namePart>
<mods:affiliation id="59DEB6E5D4DA4C7F8F5FBFC263F455FD">Department of Marine Zoology, Senckenberg Research &amp; Institute of Evolutionary Biology and Animal Ecology, Rheinische Friedrich Wilhelms Universität, Bonn, Germany</mods:affiliation>
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<mods:namePart id="1721CECA297A3A593061FC2128C92B23">Rouse, Greg W.</mods:namePart>
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<treatment id="03CE1244FFEDFFF56F8ECEDA5FEAFBBE" LSID="urn:lsid:plazi:treatment:03CE1244FFEDFFF56F8ECEDA5FEAFBBE" httpUri="http://treatment.plazi.org/id/03CE1244FFEDFFF56F8ECEDA5FEAFBBE" lastPageNumber="75" pageId="8" pageNumber="75">
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<paragraph id="8BD8A352FFEDFFF56F8ECEDA5C8CFCE2" blockId="8.[136,717,752,779]" box="[136,717,752,779]" pageId="8" pageNumber="75">
<heading id="D090143EFFEDFFF56F8ECEDA5C8CFCE2" bold="true" box="[136,717,752,779]" fontSize="11" level="1" pageId="8" pageNumber="75" reason="1">
<emphasis id="B9137F40FFEDFFF56F8ECEDA5C8CFCE2" bold="true" box="[136,717,752,779]" pageId="8" pageNumber="75">
Mitochondrial genome of
<taxonomicName id="4C67D8D1FFEDFFF56EC5CEDA5C8CFCE2" ID-CoL="7FLXC" authority="Rossi, 1984" authorityName="Rossi" authorityYear="1984" box="[451,717,752,779]" class="Polychaeta" family="Dorvilleidae" genus="Veneriserva" kingdom="Animalia" order="Eunicida" pageId="8" pageNumber="75" phylum="Annelida" rank="species" species="pygoclava">
<emphasis id="B9137F40FFEDFFF56EC5CEDA5C8CFCE2" bold="true" box="[451,717,752,779]" italics="true" pageId="8" pageNumber="75">Veneriserva pygoclava</emphasis>
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The mitochondrial genome of
<taxonomicName id="4C67D8D1FFEDFFF56EDFCF1F5C92FCA5" box="[473,723,820,844]" class="Polychaeta" family="Dorvilleidae" genus="Veneriserva" kingdom="Animalia" order="Eunicida" pageId="8" pageNumber="75" phylum="Annelida" rank="species" species="pygoclava">
<emphasis id="B9137F40FFEDFFF56EDFCF1F5C92FCA5" box="[473,723,820,844]" italics="true" pageId="8" pageNumber="75">Veneriserva pygoclava</emphasis>
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was found to span a length of 15,709 base pairs (bp) (
<figureCitation id="135CBFD7FFEDFFF56D97CF7F5C85FC87" box="[657,708,853,878]" captionStart="Fig" captionStartId="13.[136,165,1546,1567]" captionTargetBox="[144,1444,155,1498]" captionTargetId="figure-125@13.[143,1444,154,1499]" captionTargetPageId="13" captionText="Fig. 8 Mitochondrial genome map of Veneriserva pygoclava. The inner ring presents the GC content graph. The complete, fully annotated mitochondrial genome is accessible via the NCBI GenBank database under the accession number: OR449961" figureDoi="http://doi.org/10.5281/zenodo.12765021" httpUri="https://zenodo.org/record/12765021/files/figure.png" pageId="8" pageNumber="75">Fig. 8</figureCitation>
). The GC content is measured at 27.4%. In our analysis, we have successfully identified a total of 13 protein-coding genes (cox1, cox2, cox3, nad1, nad2, nad3, nad4, nad4l, nad5, nad6, cytb, atp6, and atp8), accompanied by two rRNAs and a set of 22 tRNAs. The arrangement of these mitochondrial genes presents a deviation from the typical pattern observed in the majority of annelids.
</paragraph>
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