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<mods:title id="135F7F6C1CE10E57804C354C023FB18E">A review on the cytogenetics of the tribe Oryzomyini (Rodentia: Cricetidae: Sigmodontinae), with the description of new karyotypes</mods:title>
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<emphasis id="B978EAE93211FFFB83E9F8902DAAF8B7" box="[151,385,1879,1905]" italics="true" pageId="46" pageNumber="47">Oecomys auyantepui</emphasis>
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<paragraph id="8BB336FB3211FFFA83B9F8BC2FA3FC9A" blockId="46.[151,1436,1879,2013]" lastBlockId="47.[151,1437,151,861]" lastPageId="47" lastPageNumber="48" pageId="46" pageNumber="47">
Two different karyotypes were reported by
<bibRefCitation id="EF9D4B0A3211FFFB81D4F8BC2FFAF852" author="Gomes-Junior, R. G. &amp; Schneider, C. H. &amp; Lira, T. &amp; Carvalho, N. D. M. &amp; Feldberg, E. &amp; Silva, M. N. F. &amp; Gross, M. C." box="[682,977,1915,1941]" pageId="46" pageNumber="47" pagination="401 - 426" refId="ref67406" refString="Gomes-Junior, R. G., Schneider, C. H., Lira, T., Carvalho, N. D. M., Feldberg, E., Silva, M. N. F. &amp; Gross, M. C. (2016) Intense genomic reorganization in the genus Oecomys (Rodentia, Sigmodontinae): comparison between DNA barcoding and mapping of repetitive elements in three species of the Brazilian Amazon. Comparative cytogenetics, 10 (3), 401 - 426. https: // doi. org / 10.3897 / compcytogen. v 10 i 3.8306" type="journal article" year="2016">
Gomes-Júnior
<emphasis id="B978EAE93211FFFB8031F8BC2FABF852" box="[847,896,1915,1941]" italics="true" pageId="46" pageNumber="47">et al</emphasis>
. (2016
</bibRefCitation>
, pp. 409,
<figureCitation id="13372A7E3211FFFB8743F8BC28ABF852" box="[1085,1152,1915,1941]" captionStart="FIGURE 2" captionStartId="7.[151,250,1191,1215]" captionTargetBox="[159,1426,281,1162]" captionTargetId="figure-69@7.[151,1436,273,1168]" captionTargetPageId="7" captionText="FIGURE 2. Distribution of diploid and fundamental number of karyotyped specimens of genus Cerradomys. (□) C. akroai; (■) C. goytaca; (ê) C. langguthi; (r) C. maracajuensis; (▲) C. marinhus; (○) C. scotti; (☆) C. subflavus; (l) C. vivoi." figureDoi="http://doi.org/10.5281/zenodo.4423619" httpUri="https://zenodo.org/record/4423619/files/figure.png" pageId="46" pageNumber="47">Fig. 2</figureCitation>
, and pp. 410,
<figureCitation id="13372A7E3211FFFB8665F8BC2977F852" box="[1307,1372,1915,1941]" captionStart="FIGURE 3" captionStartId="13.[151,250,1948,1972]" captionTargetBox="[159,1427,1037,1919]" captionTargetId="figure-431@13.[151,1436,1029,1925]" captionTargetPageId="13" captionText="FIGURE 3. Distribution of diploid and fundamental number of karyotyped specimens of genus Euryoryzomys. (■) E. emmonsae; (□) E. lamia; (▲) E. macconnelli; (○) E. nitidus; (l) E. russatus; (r) Euryoryzomys sp. nov.; (ê) Euryoryzomys sp.." figureDoi="http://doi.org/10.5281/zenodo.4423621" httpUri="https://zenodo.org/record/4423621/files/figure.png" pageId="46" pageNumber="47">Fig. 3</figureCitation>
) who characterized them as karyomorph a and karyomorph b. Karyomorph a: 2n = 64 and FN = 110. Autosomal complement: eight metacentric pairs large to small decreasing in size, three submetacentric pairs (two large and one small), 13 subtelocentric pairs large to small decreasing in size, and seven small acrocentric pairs. Sex chromosomes: X and Y were medium submetacentrics. Karyomorph b: 2n = 66 and FN = 112. Autosomal complement: six metacentric pairs (two large and four small), five submetacentric pairs (two large and three small), 13 subtelocentric pairs medium to small decreasing in size, and eight small acrocentric pairs. Sex chromosomes: X, a large metacentric; Y, a medium submetacentric. C-banding metaphases, in both karyotypes, exhibited blocks of constitutive heterochromatin, ranging between subtle and conspicuous, on the pericentromeric region of all autosomes. The X chromosome presented a pericentromeric heterochromatic blocks and a lightly stained C-band on both telomeric regions. The Y chromosome presented the long arm entirely heterochromatic. G-banding was also performed. NORs were localized at the telomeric regions of the short arms of one medium and one small autosomal pair of both karyotypes. FISH with 18S rDNA revealed signals at the telomeric regions of short arms in one medium and one small autosomal pair in both karyotypes, while FISH with 5S rDNA revealed signals at the pericentromeric region of one large pair of karyomorph a, and one medium pair of karyomorph b. FISH with telomeric sequences revealed signals at the ends of all chromosomes, and additional telomeric sequences was found on the pericentromeric region of X chromosome in both karyotypes. Another karyotype, with 2n = 72 and FN = 80, was attributed to this species by
<bibRefCitation id="EF9D4B0A3210FFFA823CFD482E59FD6D" author="Gomes-Junior, R. G. &amp; Schneider, C. H. &amp; Lira, T. &amp; Carvalho, N. D. M. &amp; Feldberg, E. &amp; Silva, M. N. F. &amp; Gross, M. C." box="[322,626,655,682]" pageId="47" pageNumber="48" pagination="401 - 426" refId="ref67406" refString="Gomes-Junior, R. G., Schneider, C. H., Lira, T., Carvalho, N. D. M., Feldberg, E., Silva, M. N. F. &amp; Gross, M. C. (2016) Intense genomic reorganization in the genus Oecomys (Rodentia, Sigmodontinae): comparison between DNA barcoding and mapping of repetitive elements in three species of the Brazilian Amazon. Comparative cytogenetics, 10 (3), 401 - 426. https: // doi. org / 10.3897 / compcytogen. v 10 i 3.8306" type="journal article" year="2016">
Gomes-Júnior
<emphasis id="B978EAE93210FFFA8296FD482E32FD6E" box="[488,537,655,681]" italics="true" pageId="47" pageNumber="48">et al</emphasis>
. (2016)
</bibRefCitation>
(unpublished data from T. Lira) based on molecular data. However, this karyotype was very distinct from that presented by
<bibRefCitation id="EF9D4B0A3210FFFA81B2FD742FD1FD09" author="Gomes-Junior, R. G. &amp; Schneider, C. H. &amp; Lira, T. &amp; Carvalho, N. D. M. &amp; Feldberg, E. &amp; Silva, M. N. F. &amp; Gross, M. C." box="[716,1018,691,718]" pageId="47" pageNumber="48" pagination="401 - 426" refId="ref67406" refString="Gomes-Junior, R. G., Schneider, C. H., Lira, T., Carvalho, N. D. M., Feldberg, E., Silva, M. N. F. &amp; Gross, M. C. (2016) Intense genomic reorganization in the genus Oecomys (Rodentia, Sigmodontinae): comparison between DNA barcoding and mapping of repetitive elements in three species of the Brazilian Amazon. Comparative cytogenetics, 10 (3), 401 - 426. https: // doi. org / 10.3897 / compcytogen. v 10 i 3.8306" type="journal article" year="2016">
Gomes-Júnior
<emphasis id="B978EAE93210FFFA800EFD742F8BFD0A" box="[880,928,691,717]" italics="true" pageId="47" pageNumber="48">et al</emphasis>
. (2016)
</bibRefCitation>
. In addition, the karyotypes presented by
<bibRefCitation id="EF9D4B0A3210FFFA83C5FD102DC6FD35" author="Gomes-Junior, R. G. &amp; Schneider, C. H. &amp; Lira, T. &amp; Carvalho, N. D. M. &amp; Feldberg, E. &amp; Silva, M. N. F. &amp; Gross, M. C." box="[187,493,727,754]" pageId="47" pageNumber="48" pagination="401 - 426" refId="ref67406" refString="Gomes-Junior, R. G., Schneider, C. H., Lira, T., Carvalho, N. D. M., Feldberg, E., Silva, M. N. F. &amp; Gross, M. C. (2016) Intense genomic reorganization in the genus Oecomys (Rodentia, Sigmodontinae): comparison between DNA barcoding and mapping of repetitive elements in three species of the Brazilian Amazon. Comparative cytogenetics, 10 (3), 401 - 426. https: // doi. org / 10.3897 / compcytogen. v 10 i 3.8306" type="journal article" year="2016">
Gomes-Júnior
<emphasis id="B978EAE93210FFFA821FFD102DB8FD36" box="[353,403,727,753]" italics="true" pageId="47" pageNumber="48">et al</emphasis>
. (2016)
</bibRefCitation>
occurs sympatrically on specimens collected in Amazonas, state of
<collectingCountry id="F31B766B3210FFFA8793FD10291FFD36" box="[1261,1332,727,753]" name="Brazil" pageId="47" pageNumber="48">Brazil</collectingCountry>
, whereas the karyotype reported by T. Lira (unpublished data) occurs in specimens collected in Pará, state of
<collectingCountry id="F31B766B3210FFFA8790FD3C2919FCD2" box="[1262,1330,763,789]" name="Brazil" pageId="47" pageNumber="48">Brazil</collectingCountry>
(
<tableCitation id="C68E03403210FFFA863FFD3C29BDFCD2" box="[1345,1430,763,789]" captionStart="TABLE 8" captionStartId="48.[151,239,543,569]" captionTargetPageId="48" captionText="TABLE 8. Karyotype data of genus Oecomys. Species, diploid (2n) and fundamental (FN) numbers, collection localities, geographic coordinates and reference." pageId="47" pageNumber="48">Table 8</tableCitation>
,
<figureCitation id="13372A7E3210FFFA83E9FCD82CC1FCFE" box="[151,234,799,825]" captionStart="FIGURE 12" captionStartId="52.[151,250,1101,1125]" captionTargetBox="[158,1428,188,1071]" captionTargetId="figure-17@52.[151,1436,181,1077]" captionTargetPageId="52" captionText="FIGURE 12. Distribution of diploid and fundamental number of karyotyped specimens of genus Oecomys. (▲) O. auyantepui; (○) O. bicolor; (□) O. cleberi; (■) O. franciscorum; (ê) O. roberti; (l) Oecomys sp. 1; (r) Oecomys sp. 2." figureDoi="http://doi.org/10.5281/zenodo.4423645" httpUri="https://zenodo.org/record/4423645/files/figure.png" pageId="47" pageNumber="48">Fig. 12</figureCitation>
). We suggested a more detailed analyses, using morphological and molecular data combined, in the specimen studied by T. Lira, in order to correctly identify this specimen.
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