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首页> 外文期刊>Hereditas >Comparative Cytogenetic Studies of Eleven Species of the Tropidums Torquatus Group (Sauria, Tropiduridae), with Banding Patterns
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Comparative Cytogenetic Studies of Eleven Species of the Tropidums Torquatus Group (Sauria, Tropiduridae), with Banding Patterns

机译:伴生模式的11种Tropidums Torquatus组(Sauria,Tropiduridae)的比较细胞遗传学研究

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The chromosomes of 173 specimens representing eleven species of the Tropidurus torquatus group, from 33 localities in Brazil, were analysed after Giemsa staining, C-banding, NORs, and replication banding techniques. A karyotype with 2n = 36, including 12 macrochromosomes and 24 microchromosomes (12M + 24m), and sex determination of the XY:XX type were found in Tropidurus cocorobensis, T. erythrocephalus, T. etheridgei, T. hispidus, T. hygomi, T. montanus, T. mucujensis, T. oreadicus, and T. torquatus. The two other species, T. itambere and T. psammonastes, presented 2n = 36 (12M + 24m) karyotype only in females while males had 2n = 35 (12M + 23m), due to the sex determination of the X1X2Y:X1X1X2X2 type. Other interspecific differences as well as some intraspecific variation regarding the NORs and C-banding patterns have been observed, mainly in the microchromosome set. On the contrary, the macrochromosomes were highly conservative. Although consistent karyotypic diversity occurred in the torquatus group, the cytogenetic data obtained up to now did not allow us to clarify the phylogenetic relationships of the species. Nevertheless, the geographical distribution of the distinct cytotypes in T. hispidus and T. torqualus suggested that more than one species might be involved in each case.
机译:通过Giemsa染色,C谱带,NOR谱和复制谱带技术,分析了来自巴西33个地区的代表11种龟甲类物种的173个标本的染色体。在Tropidurus cocorobensis,T. erythrocephalus,T. etheridgei,T. hispidus,T. hygomi,中发现了2n = 36的核型,包括12个大染色体和24个微染色体(12M + 24m),并确定了XY:XX类型的性别。 T. montanus,T。mucujensis,T。oreadicus和T. torquatus。由于X1X2Y:X1X1X2X2类型的性别决定,其他两个物种,T。itambere和T. psammonastes,仅在女性中呈现2n = 36(12M + 24m)核型,而男性则具有2n = 35(12M + 23m)。已经观察到其他有关NORs和C谱带模式的种间差异以及种内变异,主要是在微染色体组中。相反,大染色体是高度保守的。尽管在龟类中发生了一致的核型多样性,但迄今为止获得的细胞遗传学数据仍不能使我们阐明该物种的系统发育关系。然而,在T. hispidus和T. torqualus中不同细胞类型的地理分布表明,每种情况下可能涉及一种以上的物种。

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