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首页> 外文期刊>Genomics >The chimpanzee-specific pericentric inversions that distinguish humans and chimpanzees have identical breakpoints in Pan troglodytes and Pan paniscus.
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The chimpanzee-specific pericentric inversions that distinguish humans and chimpanzees have identical breakpoints in Pan troglodytes and Pan paniscus.

机译:区分人类和黑猩猩的黑猩猩特有的近心倒置在盘尾类动物和泛盘龙类中具有相同的断点。

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摘要

Seven of nine pericentric inversions that distinguish human (HSA) and chimpanzee karyotypes are chimpanzee-specific. In this study we investigated whether the two extant chimpanzee species, Pan troglodytes (common chimpanzee) and Pan paniscus (bonobo), share exactly the same pericentric inversions. The methods applied were FISH with breakpoint-spanning BAC/PAC clones and PCR analyses of the breakpoint junction sequences. Our findings for the homologues to HSA 4, 5, 9, 12, 16, and 17 confirm for the first time at the sequence level that these pericentric inversions have identical breakpoints in the common chimpanzee and the bonobo. Therefore, these inversions predate the separation of the two chimpanzee species 0.86-2 Mya. Further, the inversions distinguishing human and chimpanzee karyotypes may be regarded as early acquisitions, such that they are likely to have been present at the time of human/chimpanzee divergence. According to the chromosomal speciation theory the inversions themselves could have promoted human speciation.
机译:区分人类(HSA)和黑猩猩核型的9个中心点反转中的7个是黑猩猩特有的。在这项研究中,我们调查了两种现存的黑猩猩物种泛穴居动物(普通黑猩猩)和泛猩猩(bonobo)是否共享完全相同的周向内转。所应用的方法是具有跨断点BAC / PAC克隆的FISH以及断点连接序列的PCR分析。我们对HSA 4、5、9、12、16和17的同系物的发现首次在序列水平上确认了这些黑心反转在普通黑猩猩和the黑猩猩中具有相同的断点。因此,这些倒置先于两种黑猩猩物种0.86-2 Mya分离。此外,可以将人类和黑猩猩的核型区分开来,这被认为是较早的习性,因此它们很可能在人类/黑猩猩发散时就已经存在。根据染色体物种形成理论,反转本身可以促进人类物种形成。

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