94 lines
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94 lines
10 KiB
XML
<document id="FECB144E0B9D223276563DA0D652AEFC" ID-CLB-Dataset="7983" ID-DOI="10.11646/zootaxa.4876.1.1" ID-GBIF-Dataset="4ee8b608-7c73-4980-9e86-3e3719e91c7f" ID-ISSN="1175-5326" ID-Zenodo-Dep="4423612" ID-ZooBank="190EC586-E14B-4AEF-A5EF-3DA401656159" IM.metadata_approvedBy="felipe" IM.tables_requiresApprovalFor="existingObjects,plazi" IM.taxonomicNames_approvedBy="felipe" checkinTime="1610025002304" checkinUser="plazi" docAuthor="Moreira, Camila Do Nascimento, Ventura, Karen, Percequillo, Alexandre Reis & Yonenaga-Yassuda, Yatiyo" docDate="2020" docId="03A587ED3239FFD283E9F8902FF3FF3E" docLanguage="en" docName="zootaxa.4876.1.1.pdf" docOrigin="Zootaxa 4876 (1)" docStyle="DocumentStyle:5EBBA59367AD13919D70D935FA04F6A3.14:Zootaxa.2013-.monograph" docStyleId="5EBBA59367AD13919D70D935FA04F6A3" docStyleName="Zootaxa.2013-.monograph" docStyleVersion="14" docTitle="Cerradomys goytaca" docType="treatment" docVersion="8" lastPageNumber="7" masterDocId="FF9CFF95323FFFD5837EFFC72C2BFFC7" masterDocTitle="A review on the cytogenetics of the tribe Oryzomyini (Rodentia: Cricetidae: Sigmodontinae), with the description of new karyotypes" masterLastPageNumber="111" masterPageNumber="1" pageNumber="7" updateTime="1698923325624" updateUser="ExternalLinkService">
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<mods:titleInfo id="B24D61A1832EAD6D86324DD12D38310C">
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<mods:title id="5CA8998180FE8C52209E3927C68C9E24">A review on the cytogenetics of the tribe Oryzomyini (Rodentia: Cricetidae: Sigmodontinae), with the description of new karyotypes</mods:title>
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<mods:namePart id="A5F2FA3754610B873C7129F7D6F47841">Moreira, Camila Do Nascimento</mods:namePart>
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<mods:namePart id="45DCBEB4B566034955AA11BE2885BC16">Ventura, Karen</mods:namePart>
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<mods:namePart id="1731682608849C4DB4C9D4601B354399">Percequillo, Alexandre Reis</mods:namePart>
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<mods:nameIdentifier id="E6B46209F77018EA9A3722D4DD939266" type="email">cmoreirabio@gmail.com</mods:nameIdentifier>
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<mods:namePart id="6E5563C26A6E1B1CB6D5F4C0C926A7BB">Yonenaga-Yassuda, Yatiyo</mods:namePart>
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<mods:title id="6443FFF3CF3B9AFDC0E967C13E6D62F6">Zootaxa</mods:title>
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<mods:date id="204B074884317F4509FE95679A6363F0">2020</mods:date>
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<mods:number id="C09AAEB70B0D9380611732E5C88C453A">2020-11-06</mods:number>
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<mods:number id="5A6DD1CB771F02E849A58FDCD0F724A5">4876</mods:number>
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<treatment id="03A587ED3239FFD283E9F8902FF3FF3E" ID-DOI="http://doi.org/10.5281/zenodo.4566298" ID-GBIF-Taxon="179917806" ID-Zenodo-Dep="4566298" LSID="urn:lsid:plazi:treatment:03A587ED3239FFD283E9F8902FF3FF3E" httpUri="http://treatment.plazi.org/id/03A587ED3239FFD283E9F8902FF3FF3E" lastPageId="7" lastPageNumber="7" pageId="6" pageNumber="7">
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<subSubSection id="C31665703239FFD383E9F8902DA9F8B6" box="[151,386,1879,1905]" pageId="6" pageNumber="7" type="nomenclature">
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<paragraph id="8BB336FB3239FFD383E9F8902DA9F8B6" blockId="6.[151,1437,1879,2014]" box="[151,386,1879,1905]" pageId="6" pageNumber="7">
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<heading id="D0FB81973239FFD383E9F8902DA9F8B6" box="[151,386,1879,1905]" fontSize="11" level="2" pageId="6" pageNumber="7" reason="5">
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<taxonomicName id="4C0C4D783239FFD383E9F8902DA9F8B6" ID-CoL="T4SB" baseAuthorityName="Tavares, Pessoa & Goncalves" baseAuthorityYear="2011" box="[151,386,1879,1905]" class="Mammalia" family="Cricetidae" genus="Cerradomys" higherTaxonomySource="GBIF" kingdom="Animalia" order="Rodentia" pageId="6" pageNumber="7" phylum="Chordata" rank="species" species="goytaca">
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<emphasis id="B978EAE93239FFD383E9F8902DA9F8B6" box="[151,386,1879,1905]" italics="true" pageId="6" pageNumber="7">Cerradomys goytaca</emphasis>
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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="C31665703239FFD283B9F8BB2FF3FF3E" lastPageId="7" lastPageNumber="8" pageId="6" pageNumber="7" type="description">
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<paragraph id="8BB336FB3239FFD283B9F8BB2FF3FF3E" blockId="6.[151,1437,1879,2014]" lastBlockId="7.[151,1437,150,249]" lastPageId="7" lastPageNumber="8" pageId="6" pageNumber="7">
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Karyotype: 2n = 54 and FN = 66. Autosomal complement: seven metacentric and submetacentric pairs (three large and four small), and 19 acrocentric pairs (one large and the remaining medium to small). Sex chromosomes: X, a large subtelocentric; Y, was a medium acrocentric (
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<bibRefCitation id="EF9D4B0A3239FFD3819DF8042F90F81A" author="Tavares, W. C. & Pessoa, L. M. & Goncalves, P. R." box="[739,955,1987,2014]" pageId="6" pageNumber="7" pagination="645 - 658" refId="ref74464" refString="Tavares, W. C., Pessoa, L. M. & Goncalves, P. R. (2011) New species of Cerradomys from coastal sandy plains of southeastern Brazil (Cricetidae: Sigmodontinae). Journal of Mammalogy, 92 (3), 645 - 658. https: // doi. org / 10.1644 / 10 - MAMM- 096.1" type="journal article" year="2011">
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Tavares
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<emphasis id="B978EAE93239FFD3803DF8032F58F81A" box="[835,883,1987,2013]" italics="true" pageId="6" pageNumber="7">et al</emphasis>
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. 2011
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</bibRefCitation>
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, pp. 651,
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<figureCitation id="13372A7E3239FFD38759F8042840F81A" box="[1063,1131,1987,2013]" captionStart="FIGURE 4" captionStartId="16.[151,250,1537,1561]" captionTargetBox="[151,1436,430,1507]" captionTargetId="figure-130@16.[151,1436,417,1514]" captionTargetPageId="16" captionText="FIGURE 4. Karyotype of Euryoryzomys sp., male with 2n = 58 and FN = 92. (A) Conventional staining (JAP 228); (B) C-banding (JAP 228); (C) G-banding (JAP 228); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (JAP 228), arrows indicate the hybridization of interstitial telomeric sequence." figureDoi="http://doi.org/10.5281/zenodo.4423625" httpUri="https://zenodo.org/record/4423625/files/figure.png" pageId="6" pageNumber="7">Fig. 4</figureCitation>
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). The same diploid number was reported by
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<bibRefCitation id="EF9D4B0A3238FFD2822CFF502E7AFF76" author="Bonvicino, C. R. & Casado, F. & Weklser, M." box="[338,593,151,177]" pageId="7" pageNumber="8" pagination="525 - 540" refId="ref65164" refString="Bonvicino, C. R., Casado, F. & Weklser, M. (2014) A new species of Cerradomys (Mammalia: Rodentia: Cricetidae) from Central Brazil, with remarks on the taxonomy of the genus. Zoologia, 31 (6), 525 - 540. https: // doi. org / 10.1590 / S 1984 - 46702014000600002" type="journal article" year="2014">
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Bonvicino
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<emphasis id="B978EAE93238FFD282B0FF502DD4FF76" box="[462,511,151,177]" italics="true" pageId="7" pageNumber="8">et al</emphasis>
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. (2014
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</bibRefCitation>
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, pp. 529,
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<figureCitation id="13372A7E3238FFD281C1FF502F3AFF76" box="[703,785,151,177]" captionStart="FIGURE 10" captionStartId="37.[151,250,1304,1328]" captionTargetBox="[151,1436,194,1256]" captionTargetId="figure-17@37.[151,1436,181,1263]" captionTargetPageId="37" captionText="FIGURE 10. Karyotype of Neacomys sp. 2, male with 2n = 54 and FN = 62. (A) Conventional staining (JAP 63); (B) C-banding (JAP 63); (C) G-banding (JAP 63); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (JAP 63)." figureDoi="http://doi.org/10.5281/zenodo.4423639" httpUri="https://zenodo.org/record/4423639/files/figure.png" pageId="7" pageNumber="8">Fig. 10</figureCitation>
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), but the authors reported a different fundamental number of 62 and 63, due to a presence of two small acrocentric pairs instead of two small submetacentrics, and due to a pericentric inversion involving one chromosome of a small autosome pair.
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</paragraph>
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</subSubSection>
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</treatment>
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</document> |