119 lines
19 KiB
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119 lines
19 KiB
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<document id="63BA0C183CE894DC1843C1BBE0179031" ID-CLB-Dataset="164206" ID-DOI="10.1093/zoolinnean/zlac049" ID-GBIF-Dataset="e68e772f-ce7f-4254-a5c4-57779e7f4d28" ID-ISSN="0024-4082" ID-Zenodo-Dep="7184492" IM.materialsCitations_approvedBy="felipe" IM.metadata_approvedBy="felipe" IM.taxonomicNames_approvedBy="felipe" checkinTime="1665471245265" checkinUser="plazi" docAuthor="Just, Pavel, Šťáhlavský, František, Kovařík, František & Štundlová, Jana" docDate="2022" docId="03AACF58FFAB1F2CFBAB1039FB449741" docLanguage="en" docName="zlac049.pdf" docOrigin="Zoological Journal of the Linnean Society 196 (2)" docSource="https://academic.oup.com/zoolinnean/article/196/2/885/6632614" docStyle="DocumentStyle:36B3BD6A90C22AB4F7F465C853188CC8.7:ZoolJLinnSoc.2017-2023.journal_article" docStyleId="36B3BD6A90C22AB4F7F465C853188CC8" docStyleName="ZoolJLinnSoc.2017-2023.journal_article" docStyleVersion="7" docTitle="Gint banfasae Kovarik & Lowe 2019" docType="treatment" docVersion="6" lastPageNumber="889" masterDocId="FF93B720FFAF1F28FFA8131FFF819019" masterDocTitle="Tracking the trends of karyotype differentiation in the phylogenetic context of Gint, a scorpion genus endemic to the Horn of Africa (Scorpiones: Buthidae)" masterLastPageNumber="901" masterPageNumber="885" pageNumber="889" updateTime="1699407175561" updateUser="ExternalLinkService">
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<mods:title id="24799ADFB5303A7FD16500ECD6B460F8">Tracking the trends of karyotype differentiation in the phylogenetic context of Gint, a scorpion genus endemic to the Horn of Africa (Scorpiones: Buthidae)</mods:title>
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<mods:namePart id="491EFA717373C29FB02771B0030A0E05">Just, Pavel</mods:namePart>
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<mods:namePart id="0201E90177DC07D47B5D1F085472FF85">Šťáhlavský, František</mods:namePart>
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<mods:namePart id="19D5D04B857FDE4D62EC66A23BFB2334">Kovařík, František</mods:namePart>
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<mods:namePart id="0D8CEFB68A291B01E12B6EC2B88BFC24">Štundlová, Jana</mods:namePart>
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<mods:title id="DCDCEFB537B587A1D187553CF352AB40">Zoological Journal of the Linnean Society</mods:title>
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<mods:date id="E1F72E91D93F9753C18C08FEFF19088C">2022</mods:date>
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<mods:number id="43C02A20AE58137B8026636BFD3704DC">2022-10-01</mods:number>
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<mods:number id="D66A7D0426A2EB0C3A81F3F7541B598F">196</mods:number>
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<mods:identifier id="9975DA77573BAF041A14B65758F80F57" type="DOI">10.1093/zoolinnean/zlac049</mods:identifier>
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<treatment id="03AACF58FFAB1F2CFBAB1039FB449741" ID-DOI="http://doi.org/10.5281/zenodo.7184494" ID-GBIF-Taxon="202609285" ID-Zenodo-Dep="7184494" LSID="urn:lsid:plazi:treatment:03AACF58FFAB1F2CFBAB1039FB449741" httpUri="http://treatment.plazi.org/id/03AACF58FFAB1F2CFBAB1039FB449741" lastPageNumber="889" pageId="4" pageNumber="889">
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<subSubSection id="C3192DC5FFAB1F2CFBAB1039FADA93E4" pageId="4" pageNumber="889" type="nomenclature">
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<paragraph id="8BBC7E4EFFAB1F2CFBAB1039FB369327" blockId="4.[1027,1207,806,830]" box="[1027,1207,806,830]" pageId="4" pageNumber="889">
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<heading id="D0F4C922FFAB1F2CFBAB1039FB369327" box="[1027,1207,806,830]" centered="true" fontSize="9" level="2" pageId="4" pageNumber="889" reason="2">
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<taxonomicName id="4C0305CDFFAB1F2CFBAB1039FB369327" ID-CoL="3G3HY" authorityName="Kovarik & Lowe" authorityYear="2019" box="[1027,1207,806,830]" class="Arachnida" family="Buthidae" genus="Gint" kingdom="Animalia" order="Scorpiones" pageId="4" pageNumber="889" phylum="Arthropoda" rank="species" species="banfasae">
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<emphasis id="B977A25CFFAB1F2CFBAB1039FB369327" box="[1027,1207,806,830]" italics="true" pageId="4" pageNumber="889">
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<emphasis id="B977A25CFFAB1F2CFBAB1039FBBC9325" box="[1027,1085,806,829]" italics="true" pageId="4" pageNumber="889">GINT</emphasis>
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BANFASAE
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</emphasis>
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</taxonomicName>
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</heading>
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</paragraph>
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<paragraph id="8BBC7E4EFFAB1F2CFC811050FADA93E4" blockId="4.[808,1426,846,1880]" pageId="4" pageNumber="889">In this species, we detected intrapopulation variability in diploid number and/or multivalent associations showing the presence of three cytotypes. The position of a single pair of 18S rDNA sites, as well as the 18S rDNA-bearing chromosome pair involved in the multivalent chain, are consistent in all cytotypes.</paragraph>
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</subSubSection>
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<subSubSection id="C3192DC5FFAB1F2CFCE91718FB449741" pageId="4" pageNumber="889" type="description">
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<paragraph id="8BBC7E4EFFAB1F2CFCE91718FBB09529" blockId="4.[808,1426,846,1880]" pageId="4" pageNumber="889">
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<emphasis id="B977A25CFFAB1F2CFCE91718FC479405" box="[833,966,1031,1052]" italics="true" pageId="4" pageNumber="889">Cytotype I</emphasis>
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(2 ƋƋ; S1531, S1534) has 2
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<emphasis id="B977A25CFFAB1F2CFA941718FACA9405" box="[1340,1355,1031,1052]" italics="true" pageId="4" pageNumber="889">n</emphasis>
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= 18 chromosomes, which decrease in length from 9.85% to 1.81% of DSL (Supporting Information,
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<figureCitation id="133862CBFFAB1F2CFA8D175BFA0D9440" box="[1317,1420,1092,1114]" captionStart="Figure 1" captionStartId="2.[145,223,708,730]" captionTargetBox="[470,1099,198,665]" captionTargetId="figure-597@2.[467,1102,195,668]" captionTargetPageId="2" captionText="Figure 1. Map showing distribution of the sampled Gint species. Bottom right – G. amoudensis." figureDoi="http://doi.org/10.5281/zenodo.7184496" httpUri="https://zenodo.org/record/7184496/files/figure.png" pageId="4" pageNumber="889">Fig. S1A</figureCitation>
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; Table S2). In post-pachytene nuclei, the chromosomes form seven bivalents and one quadrivalent that is composed of the four larger chromosomes (
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<figureCitation id="133862CBFFAB1F2CFACB17BFFCCB94CD" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2A</figureCitation>
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). A single pair of 18S rDNA sites is located in the subterminal region of the chromosomes 3 and 4 involved in the quadrivalent (
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<figureCitation id="133862CBFFAB1F2CFB0F17E3FB7D9508" box="[1191,1276,1276,1298]" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2B</figureCitation>
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; Supporting Information,
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<figureCitation id="133862CBFFAB1F2CFC681605FBA09529" box="[960,1057,1306,1328]" captionStart="Figure 1" captionStartId="2.[145,223,708,730]" captionTargetBox="[470,1099,198,665]" captionTargetId="figure-597@2.[467,1102,195,668]" captionTargetPageId="2" captionText="Figure 1. Map showing distribution of the sampled Gint species. Bottom right – G. amoudensis." figureDoi="http://doi.org/10.5281/zenodo.7184496" httpUri="https://zenodo.org/record/7184496/files/figure.png" pageId="4" pageNumber="889">Fig. S1A</figureCitation>
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).
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</paragraph>
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<paragraph id="8BBC7E4EFFAB1F2CFCE91626FC12965D" blockId="4.[808,1426,846,1880]" pageId="4" pageNumber="889">
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<emphasis id="B977A25CFFAB1F2CFCE91626FC5A9556" box="[833,987,1337,1359]" italics="true" pageId="4" pageNumber="889">Cytotype II</emphasis>
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(1 Ƌ; S1532) exhibits 2
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<emphasis id="B977A25CFFAB1F2CFA9D1625FAC59556" box="[1333,1348,1338,1359]" italics="true" pageId="4" pageNumber="889">n</emphasis>
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= 18 chromosomes, which decrease in length from 9.79% to 1.77% of DSL (Supporting Information,
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<figureCitation id="133862CBFFAB1F2CFA8D1669FA0A9595" box="[1317,1419,1398,1420]" captionStart="Figure 1" captionStartId="2.[145,223,708,730]" captionTargetBox="[470,1099,198,665]" captionTargetId="figure-597@2.[467,1102,195,668]" captionTargetPageId="2" captionText="Figure 1. Map showing distribution of the sampled Gint species. Bottom right – G. amoudensis." figureDoi="http://doi.org/10.5281/zenodo.7184496" httpUri="https://zenodo.org/record/7184496/files/figure.png" pageId="4" pageNumber="889">Fig. S1B</figureCitation>
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; Table S2). The post-pachytene cells show six bivalents and one hexavalent (chromosomes 1, 2, 3, 4, 15 and 18) (
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<figureCitation id="133862CBFFAB1F2CFCF316CDFC2D95F1" box="[859,940,1490,1512]" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2C</figureCitation>
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; Supporting Information,
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<figureCitation id="133862CBFFAB1F2CFB7D16CDFAB495F1" box="[1237,1333,1490,1512]" captionStart="Figure 1" captionStartId="2.[145,223,708,730]" captionTargetBox="[470,1099,198,665]" captionTargetId="figure-597@2.[467,1102,195,668]" captionTargetPageId="2" captionText="Figure 1. Map showing distribution of the sampled Gint species. Bottom right – G. amoudensis." figureDoi="http://doi.org/10.5281/zenodo.7184496" httpUri="https://zenodo.org/record/7184496/files/figure.png" pageId="4" pageNumber="889">Fig. S1B</figureCitation>
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). A pair of 18S rDNA sites is located in the subterminal region of the chromosomes 3 and 4 involved in the hexavalent (
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<figureCitation id="133862CBFFAB1F2CFC991531FC05965D" box="[817,900,1582,1604]" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2D</figureCitation>
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).
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</paragraph>
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<paragraph id="8BBC7E4EFFAB1F2CFCE91552FB449741" blockId="4.[808,1426,846,1880]" pageId="4" pageNumber="889">
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<emphasis id="B977A25CFFAB1F2CFCE91552FC59967A" box="[833,984,1613,1635]" italics="true" pageId="4" pageNumber="889">Cytotype III</emphasis>
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(2 ƋƋ; S1530, S1533) has 2
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<emphasis id="B977A25CFFAB1F2CFA971551FACF967A" box="[1343,1358,1614,1635]" italics="true" pageId="4" pageNumber="889">n</emphasis>
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= 19 chromosomes, which decrease in length from 9.66% to 1.78% of DSL (
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<figureCitation id="133862CBFFAB1F2CFBA91595FBD996B9" box="[1025,1112,1674,1696]" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2E</figureCitation>
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; Supporting Information,
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<figureCitation id="133862CBFFAB1F2CFC8115B6FC1396A7" box="[809,914,1705,1727]" captionStart="Figure 1" captionStartId="2.[145,223,708,730]" captionTargetBox="[470,1099,198,665]" captionTargetId="figure-597@2.[467,1102,195,668]" captionTargetPageId="2" captionText="Figure 1. Map showing distribution of the sampled Gint species. Bottom right – G. amoudensis." figureDoi="http://doi.org/10.5281/zenodo.7184496" httpUri="https://zenodo.org/record/7184496/files/figure.png" pageId="4" pageNumber="889">Fig. S1C</figureCitation>
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; Table S2). Post-pachytene spermatocytes exhibit five bivalents, one trivalent (chromosomes 7, 17 and 18) and one hexavalent (chromosomes 1, 2, 3, 4, 14 and 19). A pair of 18S rDNA sites is situated in the subterminal region of the chromosomes 3 and 4 involved in the hexavalent (
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<figureCitation id="133862CBFFAB1F2CFBCE145DFB349741" box="[1126,1205,1858,1880]" captionStart="Figure 2" captionStartId="5.[163,241,1512,1534]" captionTargetBox="[171,1436,200,1467]" captionTargetId="figure-117@5.[166,1440,195,1472]" captionTargetPageId="5" captionText="Figure 2. Post-pachytene cells of Gint species after Giemsa staining (A, C, E, G, I, K, M, O) and FISH with 18S rDNA (red signals) (B, D, F, H, J,L, N, P).A, B,G. banfasae cytotype I(2n=18 –7II + IV).C, D, G. banfasae cytotype II (2n= 18 – 6II +VI). E, F, G. banfasae cytotype III (2n = 19 – 5II + III + VI). G, H, G. dabakalo cytotype I (2n = 23 – 9II + V). I, J,G. dabakalo cytotype II (2n = 24 – 8II + III + V). K, L, G. dabakalo cytotype III (2n = 27 – 8II + 2III + V). M, N, G. gaitako (2n = 30 – 13II + IV). O, P, G. maidensis (2n = 34). Abbreviations: II, bivalent; III, trivalent; IV, quadrivalent; V, pentavalent; VI, hexavalent. Arrowheads indicate the position of 18S rDNA. Scale bar = 10 µm." figureDoi="http://doi.org/10.5281/zenodo.7184498" httpUri="https://zenodo.org/record/7184498/files/figure.png" pageId="4" pageNumber="889">Fig. 2F</figureCitation>
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).
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</paragraph>
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</subSubSection>
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</treatment>
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</document> |