125 lines
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125 lines
15 KiB
XML
<document id="B2384183926E7BB01499EA58C1C5897E" ID-DOI="10.1590/1982-0224-2020-0115" ID-ISSN="1982-0224" ID-Zenodo-Dep="10992653" IM.bibliography_requiresApprovalFor="GgImagineBatch" IM.illustrations_approvedBy="valdenar" IM.metadata_approvedBy="valdenar" IM.tables_requiresApprovalFor="operationResults" IM.taxonomicNames_approvedBy="valdenar" IM.treatments_approvedBy="valdenar" checkinTime="1712844201828" checkinUser="felipe" docAuthor="Santos, Dayane Petik dos, Felicetti, Denise, Baumgärtner, Lucas, Margarido, Vladimir Pavan, Blanco, Daniel Rodrigues, Moreira-Filho, Orlando & Lui, Roberto Laridondo" docDate="2021" docId="03B68793FFFDEE50E102FA55FC1AF8CC" docLanguage="en" docName="NeotropIchthyol.2021.19.1.e200115.pdf" docOrigin="Neotropical Ichthyology (e 200115) 19 (1)" docSource="http://dx.doi.org/10.1590/1982-0224-2020-0115" docStyle="DocumentStyle:FC0C3FD10650AF21F8DA93D98D275823.1:NeotropIchthyol.2020-.journal_article" docStyleId="FC0C3FD10650AF21F8DA93D98D275823" docStyleName="NeotropIchthyol.2020-.journal_article" docStyleVersion="1" docTitle="Trachelyopterus coriaceus" docType="treatment" docVersion="4" lastPageNumber="5" masterDocId="FF8FFFEBFFF9EE54E304FF8CFF8FFFD7" masterDocTitle="Contributions to the taxonomy of Trachelyopterus (Siluriformes): comparative cytogenetic analysis in three species of Auchenipteridae" masterLastPageNumber="12" masterPageNumber="1" pageNumber="5" updateTime="1713980589654" updateUser="ExternalLinkService" zenodo-license-document="CC-BY-4.0">
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<mods:title id="0422079D8A2C78BCD823003D0DFFE36A">Contributions to the taxonomy of Trachelyopterus (Siluriformes): comparative cytogenetic analysis in three species of Auchenipteridae</mods:title>
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<mods:namePart id="23FC4F9F64EDD58743453BC87E8630CB">Santos, Dayane Petik dos</mods:namePart>
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<mods:affiliation id="CF5996C9A705332EBC461AF4EC27FBBF">Universidade Estadual do Oeste do Paraná, Centro de Ciências Biológicas e da Saúde, R. Universitária, 1619, Universitário, 85819 - 170 Cascavel, PR, Brazil. (DPS) petikdayane @ gmail. com; (DF) denisefelicetti @ gmail. com; (LB) baumgartner. lb @ gmail. com; (VMP) vladimir. margarido @ unioeste. br; (RLL) roberto. lui @ unioeste. br (corresponding author)</mods:affiliation>
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<mods:namePart id="E8F127F18F98B2A95C21DF94D744BECA">Felicetti, Denise</mods:namePart>
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<mods:affiliation id="24BAE6A730DAF57F4232C5EDEAEEE804">Universidade Estadual do Oeste do Paraná, Centro de Ciências Biológicas e da Saúde, R. Universitária, 1619, Universitário, 85819 - 170 Cascavel, PR, Brazil. (DPS) petikdayane @ gmail. com; (DF) denisefelicetti @ gmail. com; (LB) baumgartner. lb @ gmail. com; (VMP) vladimir. margarido @ unioeste. br; (RLL) roberto. lui @ unioeste. br (corresponding author)</mods:affiliation>
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<mods:nameIdentifier id="1C9DBB522177921E199508EB47748771" type="email">petikdayane@gmail.com</mods:nameIdentifier>
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<mods:namePart id="8C828392E79C51C000D44B10564AB0B8">Baumgärtner, Lucas</mods:namePart>
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<mods:affiliation id="0A6D83F5BC34351001EF77EAC4EA9945">Universidade Estadual do Oeste do Paraná, Centro de Ciências Biológicas e da Saúde, R. Universitária, 1619, Universitário, 85819 - 170 Cascavel, PR, Brazil. (DPS) petikdayane @ gmail. com; (DF) denisefelicetti @ gmail. com; (LB) baumgartner. lb @ gmail. com; (VMP) vladimir. margarido @ unioeste. br; (RLL) roberto. lui @ unioeste. br (corresponding author)</mods:affiliation>
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<mods:nameIdentifier id="86C17F1179F6C9C3BA53D2F4DA652D5C" type="email">petikdayane@gmail.com</mods:nameIdentifier>
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<mods:namePart id="7E624A5D7C154B91D94C07496CE1895A">Margarido, Vladimir Pavan</mods:namePart>
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<mods:affiliation id="09A05D8EBAE3C265E0F992DE1C0921D3">Universidade Estadual do Oeste do Paraná, Centro de Ciências Biológicas e da Saúde, R. Universitária, 1619, Universitário, 85819 - 170 Cascavel, PR, Brazil. (DPS) petikdayane @ gmail. com; (DF) denisefelicetti @ gmail. com; (LB) baumgartner. lb @ gmail. com; (VMP) vladimir. margarido @ unioeste. br; (RLL) roberto. lui @ unioeste. br (corresponding author)</mods:affiliation>
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<mods:nameIdentifier id="8C89B109B51B9E511A394DB1FAE1BB2A" type="email">petikdayane@gmail.com</mods:nameIdentifier>
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<mods:namePart id="782EFA3D2907D078BE5B04FF56063B1D">Blanco, Daniel Rodrigues</mods:namePart>
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<mods:affiliation id="06D3927EAF357158A72B7495EB4A3D15">Universidade Tecnológica Federal do Paraná, Prolongamento da Rua Cerejeira, s / n, 85892 - 000 Santa Helena, PR, Brazil. danielrblanco @ utfpr. edu. br.</mods:affiliation>
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<mods:nameIdentifier id="E23B3C60DD2B7350A35F7A648AA6AFBF" type="email">Brazil.danielrblanco@utfpr.edu.br</mods:nameIdentifier>
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<mods:namePart id="5E4D11C195302BAE1A68060EBFCA978A">Moreira-Filho, Orlando</mods:namePart>
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<mods:affiliation id="6C9390AECE94A8ACB0A4F81C9B418222">Universidade Federal de São Carlos, Departamento de Genética e Evolução, Rodovia Washington LuÍs, Km 235, 13565 - 905 São Carlos, SP, Brazil. omfilho @ ufscar. br.</mods:affiliation>
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<mods:namePart id="E31549A185C4B09E6CAB5110C4D3360E">Lui, Roberto Laridondo</mods:namePart>
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<mods:affiliation id="9CEC6D0F52820A2D0EBBD3DCC7422434">Universidade Estadual do Oeste do Paraná, Centro de Ciências Biológicas e da Saúde, R. Universitária, 1619, Universitário, 85819 - 170 Cascavel, PR, Brazil. (DPS) petikdayane @ gmail. com; (DF) denisefelicetti @ gmail. com; (LB) baumgartner. lb @ gmail. com; (VMP) vladimir. margarido @ unioeste. br; (RLL) roberto. lui @ unioeste. br (corresponding author)</mods:affiliation>
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<mods:nameIdentifier id="C47D3C56B1D7265E6AE20A1FF1BCEA44" type="email">petikdayane@gmail.com</mods:nameIdentifier>
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<mods:title id="F7314C3F0B02D94CA9E34E2DE902090A">Neotropical Ichthyology</mods:title>
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<mods:part id="14B004335AFADA6A32E7536FC62C57F2">
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<mods:date id="3398E05E34A2EF43D331F85A720CE076">2021</mods:date>
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<mods:title id="D3AB02235B6746A22CC7806F64AF00D9">e 200115</mods:title>
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<mods:number id="524FDA1648BB9CD97599EC250C41184B">2021-03-31</mods:number>
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<mods:number id="9EA06D79436A8CE545F75D44E22F5AA9">19</mods:number>
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<mods:url id="F0333A54A441930A0434F11BC36813B4">http://dx.doi.org/10.1590/1982-0224-2020-0115</mods:url>
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<mods:identifier id="8AFA76EF06D55470E0524707A115C142" type="DOI">10.1590/1982-0224-2020-0115</mods:identifier>
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<treatment id="03B68793FFFDEE50E102FA55FC1AF8CC" ID-DOI="http://doi.org/10.5281/zenodo.11061601" ID-Zenodo-Dep="11061601" LSID="urn:lsid:plazi:treatment:03B68793FFFDEE50E102FA55FC1AF8CC" httpUri="http://treatment.plazi.org/id/03B68793FFFDEE50E102FA55FC1AF8CC" lastPageNumber="5" pageId="4" pageNumber="5">
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<emphasis id="B96BEA97FFFDEE50E102FA55FBF1FA27" bold="true" box="[518,1150,1496,1521]" pageId="4" pageNumber="5">
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<subSubSection id="C305650EFFFDEE50E102FA55FCDAFA26" box="[518,853,1496,1521]" pageId="4" pageNumber="5" type="nomenclature">
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<paragraph id="8BA03685FFFDEE50E102FA55FCDAFA26" blockId="4.[486,1461,1496,1819]" box="[518,853,1496,1521]" pageId="4" pageNumber="5">
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<taxonomicName id="4C1F4D06FFFDEE50E102FA55FCC2FA27" ID-CoL="57P7S" box="[518,845,1496,1521]" family="Auchenipteridae" genus="Trachelyopterus" kingdom="Animalia" order="Siluriformes" pageId="4" pageNumber="5" phylum="Chordata" rank="species" species="coriaceus">Trachelyopterus coriaceus</taxonomicName>
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:
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<subSubSection id="C305650EFFFDEE50E061FA54FC1AF8CC" pageId="4" pageNumber="5" type="description">
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<paragraph id="8BA03685FFFDEE50E061FA54FC1AF8CC" blockId="4.[486,1461,1496,1819]" pageId="4" pageNumber="5">
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Araguaia River basin. Diploid number was 58 chromosomes and karyotype was composed of 20 metacentric, 18 submetacentric, 12 subtelocentric, and 8 acrocentric (
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<figureCitation id="13242A00FFFDEE50E070F9AFFC40F9EC" box="[884,975,1571,1595]" captionStart="FIGURE 1" captionStartId="5.[136,209,1014,1034]" captionTargetBox="[137,1459,171,955]" captionTargetId="figure-107@5.[136,1459,171,958]" captionTargetPageId="5" captionText="FIGURE 1 | Karyotypes of A. Parauchenipterus striatulus, B. Parauchenipterus galeatus and C. Trachelyopterus coriaceus. Giemsa stained karyotypes. The chromosome pairs marked with silver nitrate are in the boxes; D, E, F. C-banding sequentially karyotypes; G, H, I. Karyotypes hybridized with 5S rDNA and 18S rDNA probes. G. rDNA probe 18S (rhodamine, red signal), 5S rDNA probe (FITC, green signal). H, I. rDNA probe 18S (FITC, green signal), 5S rDNA probe (rhodamine, red signal)." figureDoi="http://doi.org/10.5281/zenodo.10992655" httpUri="https://zenodo.org/record/10992655/files/figure.png" pageId="4" pageNumber="5">Fig. 1C</figureCitation>
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). AgNO
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<subScript id="179B34C0FFFDEE50E73CF9BFFBCFF996" attach="left" box="[1080,1088,1587,1601]" fontSize="6" pageId="4" pageNumber="5">3</subScript>
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staining revealed simple NORs allocated in terminal region on the short arm of the submetacentric chromosome pair 23 (
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<figureCitation id="13242A00FFFDEE50E112F9E2FDE0F951" box="[534,623,1646,1670]" captionStart="FIGURE 1" captionStartId="5.[136,209,1014,1034]" captionTargetBox="[137,1459,171,955]" captionTargetId="figure-107@5.[136,1459,171,958]" captionTargetPageId="5" captionText="FIGURE 1 | Karyotypes of A. Parauchenipterus striatulus, B. Parauchenipterus galeatus and C. Trachelyopterus coriaceus. Giemsa stained karyotypes. The chromosome pairs marked with silver nitrate are in the boxes; D, E, F. C-banding sequentially karyotypes; G, H, I. Karyotypes hybridized with 5S rDNA and 18S rDNA probes. G. rDNA probe 18S (rhodamine, red signal), 5S rDNA probe (FITC, green signal). H, I. rDNA probe 18S (FITC, green signal), 5S rDNA probe (rhodamine, red signal)." figureDoi="http://doi.org/10.5281/zenodo.10992655" httpUri="https://zenodo.org/record/10992655/files/figure.png" pageId="4" pageNumber="5">Fig. 1C</figureCitation>
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, in box). C-banding evidenced pale heterochromatin in terminal regions on almost all karyotype pairs (
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<figureCitation id="13242A00FFFDEE50E038F91FFC00F97C" box="[828,911,1683,1707]" captionStart="FIGURE 1" captionStartId="5.[136,209,1014,1034]" captionTargetBox="[137,1459,171,955]" captionTargetId="figure-107@5.[136,1459,171,958]" captionTargetPageId="5" captionText="FIGURE 1 | Karyotypes of A. Parauchenipterus striatulus, B. Parauchenipterus galeatus and C. Trachelyopterus coriaceus. Giemsa stained karyotypes. The chromosome pairs marked with silver nitrate are in the boxes; D, E, F. C-banding sequentially karyotypes; G, H, I. Karyotypes hybridized with 5S rDNA and 18S rDNA probes. G. rDNA probe 18S (rhodamine, red signal), 5S rDNA probe (FITC, green signal). H, I. rDNA probe 18S (FITC, green signal), 5S rDNA probe (rhodamine, red signal)." figureDoi="http://doi.org/10.5281/zenodo.10992655" httpUri="https://zenodo.org/record/10992655/files/figure.png" pageId="4" pageNumber="5">Fig. 1F</figureCitation>
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). 18S rDNA-FISH also revealed only the pair 23 with these sites, corresponding to what was evidenced by the AgNO
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<geoCoordinate id="EE2B5042FFFDEE50E7EEF945FA94F907" box="[1258,1307,1720,1751]" degrees="3. 5" direction="south" orientation="latitude" pageId="4" pageNumber="5" precision="5555" value="-3.5">
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<subScript id="179B34C0FFFDEE50E7EEF945FB7DF900" attach="left" box="[1258,1266,1737,1751]" fontSize="6" pageId="4" pageNumber="5">3</subScript>
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. 5S
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rDNA-FISH probe detected these sites on the short arm of the metacentric pair 3 and on the long arm of the submetacentric pair 16 (
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<figureCitation id="13242A00FFFDEE50E038F88FFC08F8CC" box="[828,903,1795,1819]" captionStart="FIGURE 1" captionStartId="5.[136,209,1014,1034]" captionTargetBox="[137,1459,171,955]" captionTargetId="figure-107@5.[136,1459,171,958]" captionTargetPageId="5" captionText="FIGURE 1 | Karyotypes of A. Parauchenipterus striatulus, B. Parauchenipterus galeatus and C. Trachelyopterus coriaceus. Giemsa stained karyotypes. The chromosome pairs marked with silver nitrate are in the boxes; D, E, F. C-banding sequentially karyotypes; G, H, I. Karyotypes hybridized with 5S rDNA and 18S rDNA probes. G. rDNA probe 18S (rhodamine, red signal), 5S rDNA probe (FITC, green signal). H, I. rDNA probe 18S (FITC, green signal), 5S rDNA probe (rhodamine, red signal)." figureDoi="http://doi.org/10.5281/zenodo.10992655" httpUri="https://zenodo.org/record/10992655/files/figure.png" pageId="4" pageNumber="5">Fig. 1I</figureCitation>
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).
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</paragraph>
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</emphasis>
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</treatment>
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