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109 lines
14 KiB
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<document id="5AF06E27AAC43CAAF6350E8DEB162879" 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="03A587ED321EFFF483E9FC842FE1FAF6" 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="Neacomys spinosus" docType="treatment" docVersion="8" lastPageNumber="34" 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="34" updateTime="1698923325624" updateUser="ExternalLinkService">
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<mods:title id="6FC364118A4EE01E8D93B78E34C7A95A">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="8ABF072794BB76C15BE4E6113EC5464E">Moreira, Camila Do Nascimento</mods:namePart>
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<mods:namePart id="94C3A6AABBB32D7A74D5941F807E981C">Ventura, Karen</mods:namePart>
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<mods:namePart id="7258A7D7C4EFA02F70601126BAEF4C01">Percequillo, Alexandre Reis</mods:namePart>
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<mods:nameIdentifier id="54D956F0F329AEFB06A47F5A41EB33EE" type="email">cmoreirabio@gmail.com</mods:nameIdentifier>
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<mods:namePart id="654AC7EC99731A5DC1C8E3078E040B08">Yonenaga-Yassuda, Yatiyo</mods:namePart>
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<mods:title id="6FA35FB00DCB8DE4C79B7E1F7FFA6BD0">Zootaxa</mods:title>
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<mods:date id="F99B64BFDC8C731BDA8CC8F2B89867FD">2020</mods:date>
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<mods:number id="9D976156513A8D8566C1C1699B197024">2020-11-06</mods:number>
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<mods:number id="D022DD313D9FA288087F90152585C392">4876</mods:number>
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<treatment id="03A587ED321EFFF483E9FC842FE1FAF6" ID-DOI="http://doi.org/10.5281/zenodo.4566557" ID-GBIF-Taxon="179917888" ID-Zenodo-Dep="4566557" LSID="urn:lsid:plazi:treatment:03A587ED321EFFF483E9FC842FE1FAF6" httpUri="http://treatment.plazi.org/id/03A587ED321EFFF483E9FC842FE1FAF6" lastPageNumber="34" pageId="33" pageNumber="34">
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<subSubSection id="C3166570321EFFF483E9FC842D5AFC9B" box="[151,369,835,860]" pageId="33" pageNumber="34" type="nomenclature">
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<paragraph id="8BB336FB321EFFF483E9FC842D5AFC9B" blockId="33.[151,1436,835,1329]" box="[151,369,835,860]" pageId="33" pageNumber="34">
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<heading id="D0FB8197321EFFF483E9FC842D5AFC9B" box="[151,369,835,860]" fontSize="11" level="2" pageId="33" pageNumber="34" reason="5">
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<taxonomicName id="4C0C4D78321EFFF483E9FC842D5AFC9B" baseAuthorityName="Thomas" baseAuthorityYear="1882" box="[151,369,835,860]" class="Mammalia" family="Muridae" genus="Neacomys" kingdom="Animalia" order="Rodentia" pageId="33" pageNumber="34" phylum="Chordata" rank="species" species="spinosus">
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<emphasis id="B978EAE9321EFFF483E9FC842D5AFC9B" box="[151,369,835,860]" italics="true" pageId="33" pageNumber="34">Neacomys spinosus</emphasis>
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<subSubSection id="C3166570321EFFF483B9FCA02FE1FAF6" pageId="33" pageNumber="34" type="description">
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<paragraph id="8BB336FB321EFFF483B9FCA02FE1FAF6" blockId="33.[151,1436,835,1329]" pageId="33" pageNumber="34">
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Karyotype: 2n = 64 and FN = 68. Autosomal complement: three small metacentric pairs, and 28 acrocentric pairs (one very large, and the remaining large to small decreasing in size). Sex chromosomes: X, a large subtelocentric; Y, a small acrocentric (
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<bibRefCitation id="EF9D4B0A321EFFF482B4FC682EFEFC0E" author="Gardner, A. L. & Patton, J. L." box="[458,725,943,969]" pageId="33" pageNumber="34" pagination="1 - 48" refId="ref67114" refString="Gardner, A. L. & Patton, J. L. (1976) Karyotypic variation in Oryzomyine rodents (Cricetinae) with comments on chromosomal evolution in the Neotropical Cricetine complex. Occasional papers of the Museum of Zoology, 49, 1 - 48." type="journal article" year="1976">Gardner & Patton 1976</bibRefCitation>
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, pp. 13,
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<figureCitation id="13372A7E321EFFF4804AFC682FA1FC0E" box="[820,906,943,969]" captionStart="FIGURE 6" captionStartId="23.[151,250,1625,1649]" captionTargetBox="[160,1430,712,1595]" captionTargetId="figure-177@23.[151,1436,705,1602]" captionTargetPageId="23" captionText="FIGURE 6. Distribution of diploid and fundamental number of karyotyped specimens of genus Hylaeamys. (□) H. megacephalus; (■) H. oniscus; (○) H. perenensis; (l) H. seuanezi; (ê) H. yunganus." figureDoi="http://doi.org/10.5281/zenodo.4423629" httpUri="https://zenodo.org/record/4423629/files/figure.png" pageId="33" pageNumber="34">Fig. 6E</figureCitation>
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;
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<bibRefCitation id="EF9D4B0A321EFFF480EBFC682875FC0E" author="Patton, J. L. & Silva, M. N. & Malcolm, J. R." box="[917,1118,943,969]" pageId="33" pageNumber="34" pagination="1 - 306" refId="ref71077" refString="Patton, J. L., Silva, M. N. & Malcolm, J. R. (2000) Mammals of the Rio Jurua and the evolutionary and ecological diversification of Amazonia. Bulletin of the American Museum of Natural History, 244, 1 - 306. https: // doi. org / 10.1206 / 0003 - 0090 (2000) 244 % 3 C 0001: MOTRJA % 3 E 2.0. CO; 2" type="journal article" year="2000">
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Patton
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<emphasis id="B978EAE9321EFFF4809AFC68283EFC0E" box="[996,1045,943,969]" italics="true" pageId="33" pageNumber="34">et al</emphasis>
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. 2000
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</bibRefCitation>
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, pp. 110, Fig. 75D). We also report this same karyotype for samples collected in
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<collectingRegion id="49C8F819321EFFF481A1FC142F5AFC2A" box="[735,881,979,1005]" country="Brazil" name="Mato Grosso" pageId="33" pageNumber="34">Mato Grosso</collectingRegion>
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and in the Rio Içá in Amazonas, states of
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<collectingCountry id="F31B766B321EFFF4862FFC1429B3FC2A" box="[1361,1432,979,1005]" name="Brazil" pageId="33" pageNumber="34">Brazil</collectingCountry>
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, plus a metacentric Y chromosome for the sample from Rio Içá (
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<figureCitation id="13372A7E321EFFF4800DFC302FE5FBD6" box="[883,974,1015,1041]" captionStart="FIGURE 8" captionStartId="34.[151,250,1926,1950]" captionTargetBox="[151,1436,646,1896]" captionTargetId="figure-259@34.[151,1436,633,1903]" captionTargetPageId="34" captionText="FIGURE 8. Karyotype of Neacomys spinosus, male with 2n = 64 and FN = 68. (A) Conventional staining (ICA 243); (B) Cbanding (ICA 243); (C) G-banding (M 968588); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (M 968588)." figureDoi="http://doi.org/10.5281/zenodo.4423635" httpUri="https://zenodo.org/record/4423635/files/figure.png" pageId="33" pageNumber="34">Fig. 8A</figureCitation>
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). Furthermore, we performed C-banding for the karyotype with a metacentric Y chromosome, and G-banding and FISH with telomeric sequences for the karyotype with an acrocentric Y. C-banding metaphase exhibited blocks of constitutive heterochromatin on the pericentromeric region of all autosomes. The X chromosome presented pericentromeric heterochromatic blocks and an interstitial lightly stained C-band on its long arm. The Y chromosome was entirely heterochromatic (
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<figureCitation id="13372A7E321EFFF4864BFB4029A4FB66" box="[1333,1423,1159,1185]" captionStart="FIGURE 8" captionStartId="34.[151,250,1926,1950]" captionTargetBox="[151,1436,646,1896]" captionTargetId="figure-259@34.[151,1436,633,1903]" captionTargetPageId="34" captionText="FIGURE 8. Karyotype of Neacomys spinosus, male with 2n = 64 and FN = 68. (A) Conventional staining (ICA 243); (B) Cbanding (ICA 243); (C) G-banding (M 968588); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (M 968588)." figureDoi="http://doi.org/10.5281/zenodo.4423635" httpUri="https://zenodo.org/record/4423635/files/figure.png" pageId="33" pageNumber="34">Fig. 8B</figureCitation>
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). G-banding was performed to allow the correct identification of all homologous pairs (
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<figureCitation id="13372A7E321EFFF48733FB6C288EFB02" box="[1101,1189,1195,1221]" captionStart="FIGURE 8" captionStartId="34.[151,250,1926,1950]" captionTargetBox="[151,1436,646,1896]" captionTargetId="figure-259@34.[151,1436,633,1903]" captionTargetPageId="34" captionText="FIGURE 8. Karyotype of Neacomys spinosus, male with 2n = 64 and FN = 68. (A) Conventional staining (ICA 243); (B) Cbanding (ICA 243); (C) G-banding (M 968588); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (M 968588)." figureDoi="http://doi.org/10.5281/zenodo.4423635" httpUri="https://zenodo.org/record/4423635/files/figure.png" pageId="33" pageNumber="34">Fig. 8C</figureCitation>
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). FISH with telomeric sequences revealed signals exclusively at the ends of all chromosome arms and no interstitial signals were observed (
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<figureCitation id="13372A7E321EFFF483DEFB342CD2FACA" box="[160,249,1267,1293]" captionStart="FIGURE 8" captionStartId="34.[151,250,1926,1950]" captionTargetBox="[151,1436,646,1896]" captionTargetId="figure-259@34.[151,1436,633,1903]" captionTargetPageId="34" captionText="FIGURE 8. Karyotype of Neacomys spinosus, male with 2n = 64 and FN = 68. (A) Conventional staining (ICA 243); (B) Cbanding (ICA 243); (C) G-banding (M 968588); (D) Metaphase plate after fluorescent in situ hybridization with telomeric probe (left) and DAPI staining (right) (M 968588)." figureDoi="http://doi.org/10.5281/zenodo.4423635" httpUri="https://zenodo.org/record/4423635/files/figure.png" pageId="33" pageNumber="34">Fig. 8D</figureCitation>
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). The same karyotype was also reported by
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<bibRefCitation id="EF9D4B0A321EFFF4819EFB342F8CFACA" author="Silva, W. O. & Pieczarka, J. C. & Costa, M. J. R. & Ferguson-Smith, M. A. & O'Brien, P. C. M. & Mendes-Oliveira, A. C. & Rossi, R. V. & Nagamachi, C. Y." box="[736,935,1267,1293]" pageId="33" pageNumber="34" pagination="184" refId="ref73860" refString="Silva, W. O., Pieczarka, J. C., Costa, M. J. R., Ferguson-Smith, M. A., O'Brien, P. C. M., Mendes-Oliveira, A. C., Rossi, R. V. & Nagamachi, C. Y. (2019) Chromosomal phylogeny and comparative chromosome painting among Neacomys species (Rodentia, Sigmodontinae) from eastern Amazonia. BMC evolutionary biology, 19 (1), 184. https: // doi. org / 10.1186 / s 12862 - 019 - 1515 - z" type="journal article" year="2019">
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<emphasis id="B978EAE9321EFFF4819EFB342F64FACA" box="[736,847,1267,1293]" italics="true" pageId="33" pageNumber="34">Silva et al</emphasis>
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. (2019)
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</bibRefCitation>
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for a sample from
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<collectingRegion id="49C8F819321EFFF48704FB342925FACA" box="[1146,1294,1267,1293]" country="Brazil" name="Mato Grosso" pageId="33" pageNumber="34">Mato Grosso</collectingRegion>
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,
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<collectingCountry id="F31B766B321EFFF48667FB34294BFACA" box="[1305,1376,1267,1293]" name="Brazil" pageId="33" pageNumber="34">Brazil</collectingCountry>
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, with a different morphology of the X chromosome, a medium submetacentric.
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</paragraph>
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