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99 lines
11 KiB
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<document id="7C2AA7C52EB54CA38176ED18975D7491" ID-CLB-Dataset="280654" ID-DOI="10.3161/15081109ACC2023.25.1.002" ID-GBIF-Dataset="78082210-95c4-4565-8b3f-734a661e613d" ID-ISSN="1733-5329" ID-Zenodo-Dep="10265140" IM.bibliography_approvedBy="jonas" IM.illustrations_approvedBy="jonas" IM.materialsCitations_approvedBy="felipe" IM.metadata_approvedBy="jonas" IM.tables_approvedBy="jonas" IM.taxonomicNames_approvedBy="jonas" IM.treatments_approvedBy="jonas" checkinTime="1701773713024" checkinUser="felipe" docAuthor="Volleth, Marianne, Mayer, Frieder, Heller, Klaus-Gerhard, Müller, Stefan & Fahr, Jakob" docDate="2023" docId="038607610E0D0A4F9932FE1F1D17972B" docLanguage="en" docName="ActaChiropterol.25.1.35-52.pdf" docOrigin="Acta Chiropterologica 25 (1)" docStyle="DocumentStyle:D17EC282BABB8B0847763DCC9F0C3514.3:ActaChiropterol.2016-.journal_article" docStyleId="D17EC282BABB8B0847763DCC9F0C3514" docStyleName="ActaChiropterol.2016-.journal_article" docStyleVersion="3" docTitle="Nycticeinops schlieffenii" docType="treatment" docVersion="6" lastPageNumber="44" masterDocId="FFBF7F190E040A459A46FFF21C5A9405" masterDocTitle="Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe" masterLastPageNumber="52" masterPageNumber="35" pageNumber="44" updateTime="1701801424038" updateUser="jonas">
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<mods:titleInfo id="F40691CA43CC98DAFF5A26A538F71F51">
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<mods:title id="BBA0F5F712AE1935171BCF6D8FFDE028">Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe</mods:title>
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<mods:namePart id="1151A7BD0AD9E2DBB03E15F0A4B530D7">Volleth, Marianne</mods:namePart>
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<mods:affiliation id="A747D754AE9A0B462C17F737412C5AA8">Department of Human Genetics, Otto-von-Guericke University, Leipziger Str. 44, 39120 Magdeburg, Germany & Present address: Triesdorf Bahnhof 8, 91732 Merkendorf, Germany & Corresponding author: E-mail: mvolleth 19 @ gmail. com</mods:affiliation>
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<mods:nameIdentifier id="0FCDEF09E30A13467488674CA1B18924" type="email">mvolleth19@gmail.com</mods:nameIdentifier>
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<mods:namePart id="98BA8984E605A54DE2436F34F77CCBB4">Mayer, Frieder</mods:namePart>
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<mods:affiliation id="71578D0EF1B253C5F3473B8A04B9374F">Leibnitz Institute for Evolution and Biodiversity Science, Museum für Naturkunde, Invalidenstr. 43, 10115 Berlin, Germany</mods:affiliation>
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<mods:namePart id="E229E56981B3889CC72D41B0BFA87732">Heller, Klaus-Gerhard</mods:namePart>
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<mods:affiliation id="83200AC5616E1C4D843DDF7CBC131AA2">Triesdorf Bahnhof 8, 91732 Merkendorf, Germany</mods:affiliation>
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<mods:namePart id="A0033742B4CA082F818EF0BD10F0C81F">Müller, Stefan</mods:namePart>
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<mods:affiliation id="97BD4FAE2FAC713A0324E73AD5C60BAA">Institute of Human Genetics, Munich University Hospital, Ludwig-Maximilian University, Goethestr. 29, 80336 Munich, Germany</mods:affiliation>
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<mods:namePart id="7B22401DFC55C27079DE8C7E8A5932C1">Fahr, Jakob</mods:namePart>
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<mods:affiliation id="EAFB82843589BFD5F719CE8A5B53CA75">Department of Experimental Ecology and Conservation Genomics, University of Ulm, Albert-Einstein-Allee 11, 89069 Ulm, Germany & Present address: Niedersächsischer Landesbetrieb für Wasserwirtschaft, Küsten- und Naturschutz, Göttinger Chaussee 76 a, 30453 Hannover, Germany</mods:affiliation>
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<mods:title id="D026AE13FD33E58449F7DFA84A5F13BF">Acta Chiropterologica</mods:title>
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<mods:date id="9BABBDB7D294EAD1262D4104367E1E73">2023</mods:date>
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<mods:number id="7BABF70B4699560C7B961A7C61F7A790">2023-08-03</mods:number>
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<mods:number id="811DD1996F784A09E059C457A7601A60">25</mods:number>
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<treatment id="038607610E0D0A4F9932FE1F1D17972B" ID-DOI="http://doi.org/10.5281/zenodo.10261423" ID-Zenodo-Dep="10261423" LSID="urn:lsid:plazi:treatment:038607610E0D0A4F9932FE1F1D17972B" httpUri="http://treatment.plazi.org/id/038607610E0D0A4F9932FE1F1D17972B" lastPageId="10" lastPageNumber="44" pageId="9" pageNumber="44">
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<subSubSection id="C335E5FC0E0D0A4C9932FE1F191B9602" box="[884,1345,493,519]" pageId="9" pageNumber="44" type="nomenclature">
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<paragraph id="8B90B6770E0D0A4C9932FE1F191B9602" blockId="9.[884,1345,493,519]" box="[884,1345,493,519]" pageId="9" pageNumber="44">
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<heading id="D0D8011B0E0D0A4C9932FE1F191B9602" box="[884,1345,493,519]" centered="true" fontSize="11" level="2" pageId="9" pageNumber="44" reason="2">
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<taxonomicName id="4C2FCDF40E0D0A4C9932FE1F191B9602" ID-CoL="485JX" ID-ENA="2778573" authority="(Peters, 1859)" baseAuthorityName="Peters" baseAuthorityYear="1859" box="[884,1345,493,519]" class="Mammalia" family="Vespertilionidae" genus="Nycticeinops" kingdom="Animalia" order="Chiroptera" pageId="9" pageNumber="44" phylum="Chordata" rank="species" species="schlieffenii">
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<emphasis id="B95B6A650E0D0A4C9932FE1F18CF9602" box="[884,1173,493,519]" italics="true" pageId="9" pageNumber="44">Nycticeinops schlieffenii</emphasis>
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(Peters, 1859)
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</taxonomicName>
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</heading>
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</paragraph>
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</subSubSection>
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<subSubSection id="C335E5FC0E0D0A4F9909FDC01D17972B" lastPageId="10" lastPageNumber="45" pageId="9" pageNumber="44" type="biology_ecology">
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<paragraph id="8B90B6770E0D0A4C9909FDC018CE9764" blockId="9.[809,1422,562,1072]" pageId="9" pageNumber="44">
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The karyotype of
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<taxonomicName id="4C2FCDF40E0D0A4C9E7DFDC018BD9649" baseAuthorityName="Peters" baseAuthorityYear="1859" box="[1083,1255,562,588]" class="Mammalia" family="Vespertilionidae" genus="Nycticeinops" kingdom="Animalia" order="Chiroptera" pageId="9" pageNumber="44" phylum="Chordata" rank="species" species="schlieffenii">
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<emphasis id="B95B6A650E0D0A4C9E7DFDC018BD9649" box="[1083,1255,562,588]" italics="true" pageId="9" pageNumber="44">N. schlieffenii</emphasis>
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</taxonomicName>
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consisted of nine meta- to submetacentric and seven acrocentric autosomal pairs (2n = 34 and FNa = 50). The X chromosomes were medium-sized metacentrics with a G-banding pattern characteristic for vespertilionid state II. In addition to the ancestral four bi-armed pairs, 1/2, 3/4, 5/6 and 16/17, derived Robertsonian fusion chromosomes 7/11, 8/12, 9/13, 10/14 and 21/22 were observed (
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<figureCitation id="1314AAF20E0D0A4C9E69FCB518DC9764" box="[1071,1158,839,865]" captionStart="FIG" captionStartId="11.[151,164,1164,1185]" captionTargetBox="[473,1062,174,1134]" captionTargetId="figure-341@11.[389,1172,173,1150]" captionTargetPageId="11" captionText="FIG. 11. G-banded karyotype of a female N. schlieffenii, 2n = 34. Homology to MMY validated with painting probes from MMY, Tree shrew or black lemur is indicated by bold numbers. The remaining pairs were identified by G-band comparison with other vespertilionid species" figureDoi="http://doi.org/10.5281/zenodo.10265170" httpUri="https://zenodo.org/record/10265170/files/figure.png" pageId="9" pageNumber="44">Fig. 11</figureCitation>
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).
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</paragraph>
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<paragraph id="8B90B6770E0D0A4F9909FC9B1D17972B" blockId="9.[809,1422,562,1072]" lastBlockId="10.[151,764,686,814]" lastPageId="10" lastPageNumber="45" pageId="9" pageNumber="44">
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The SC close to the centromere of the acro-centric chromosome 15 was confirmed by AgNOR staining as nucleolus organizer region. The mean number of active NORs per cell was 1.9 (16 cell scored). Apart from the centromeres, C-positive heterochromatin was present in the proximal part of one of the two smallest acrocentric pairs, homologous to MMY24 or MMY25 (
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<figureCitation id="1314AAF20E0E0A4F9BB3FD221E0A96EF" box="[501,592,720,746]" captionStart="FIG" captionStartId="8.[809,822,1782,1803]" captionTargetBox="[809,1414,191,1725]" captionTargetId="figure-371@8.[809,1414,179,1762]" captionTargetPageId="8" captionText="FIG. 6. C-banded metaphase spreads of (A) P. brunnea, (B) N. happoldorum, and (C) N. schlieffenii. X and Y chromosomes and heterochromatic segments of interest are indicated, numbers refer to MMY homologies. In (B), arrows point to those heterochromatic segments which showed differences between the homologs and arrowheads point to C-positive segments on pairs NHA11 and NHA13. For further explanation see main text" figureDoi="http://doi.org/10.5281/zenodo.10265158" httpUri="https://zenodo.org/record/10265158/files/figure.png" pageId="10" pageNumber="45">Fig. 6C</figureCitation>
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). The chromosomes 1/2, 11, 12, and 15 were present in vespertilionid state II.
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</paragraph>
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</subSubSection>
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</treatment>
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</document> |