首页> 美国卫生研究院文献>Genes >Karyotype Evolution in 10 Pinniped Species: Variability of Heterochromatin versus High Conservatism of Euchromatin as Revealed by Comparative Molecular Cytogenetics
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Karyotype Evolution in 10 Pinniped Species: Variability of Heterochromatin versus High Conservatism of Euchromatin as Revealed by Comparative Molecular Cytogenetics

机译:10个尖端物种中的核型演变:由比较分子细胞遗传学揭示的euchromatin的异染色素与高保守型的变异性

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摘要

Pinnipedia karyotype evolution was studied here using human, domestic dog, and stone marten whole-chromosome painting probes to obtain comparative chromosome maps among species of Odobenidae (Odobenus rosmarus), Phocidae (Phoca vitulina, Phoca largha, Phoca hispida, Pusa sibirica, Erignathus barbatus), and Otariidae (Eumetopias jubatus, Callorhinus ursinus, Phocarctos hookeri, and Arctocephalus forsteri). Structural and functional chromosomal features were assessed with telomere repeat and ribosomal-DNA probes and by CBG (C-bands revealed by barium hydroxide treatment followed by Giemsa staining) and CDAG (Chromomycin A3-DAPI after G-banding) methods. We demonstrated diversity of heterochromatin among pinniped karyotypes in terms of localization, size, and nucleotide composition. For the first time, an intrachromosomal rearrangement common for Otariidae and Odobenidae was revealed. We postulate that the order of evolutionarily conserved segments in the analyzed pinnipeds is the same as the order proposed for the ancestral Carnivora karyotype (2n = 38). The evolution of conserved genomes of pinnipeds has been accompanied by few fusion events (less than one rearrangement per 10 million years) and by novel intrachromosomal changes including the emergence of new centromeres and pericentric inversion/centromere repositioning. The observed interspecific diversity of pinniped karyotypes driven by constitutive heterochromatin variation likely has played an important role in karyotype evolution of pinnipeds, thereby contributing to the differences of pinnipeds’ chromosome sets.
机译:在这里使用人类,家养狗和石头貂全染色体绘画探针在这里研究了Pinnipedia核型进化,以获得odobenidae(Odobenus rosmarus),phocidae(Phoca vitulina,Phoca largha,phoca hispida,pusa sibirica,植金病株式会病鼠)和otariidae(eumetopias jubatus,callorhinus ursinus,phocarctos hookeri和arctocephalus forsteri)。通过端粒重复和核糖体-DNA探针和CBG评估结构和功能性染色体特征(通过氢氧化钡处理,然后通过Giemsa染色而透露)和CDAG(G-带染色后的CDAG)方法。在本地化,大小和核苷酸组合物方面,我们在钉蛇核型中展示了单色体蛋白的多样性。首次,揭示了对Otariidae和odobenidae常见的常见的癌细胞重新排列。我们假设分析的尖峰中进化保守段的顺序与祖先肉类核型(2N = 38)提出的顺序相同。 Pinnipeds的保守基因组的演变伴有很少的融合事件(每1000万年不到一个重排),并通过新的内脏瘤组变化,包括新的碳氢化合物和终端反演/ entromere重新定位的出现。由组成型异铬胺变异驱动的Pinniped核型的观察到的分化多样性可能在钉子贴图的核型演变中发挥了重要作用,从而有助于钉子染色体簇的差异。

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