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重新审视人类和黑猩猩的染色体物种形成:倒位区域内DNA分歧的研究

Chromosomal speciation of humans and chimpanzees revisited: studies of DNA divergence within inverted regions.

作者信息

Szamalek J M, Cooper D N, Hoegel J, Hameister H, Kehrer-Sawatzki H

机构信息

Department of Human Genetics, University of Ulm, Ulm, Germany.

出版信息

Cytogenet Genome Res. 2007;116(1-2):53-60. doi: 10.1159/000097417.

Abstract

The human and chimpanzee karyotypes are distinguishable in terms of nine pericentric inversions. According to the recombination suppression model of speciation, these inversions could have promoted the process of parapatric speciation between hominoid populations ancestral to chimpanzees and humans. Were recombination suppression to have occurred in inversion heterozygotes, gene flow would have been reduced, resulting in the accumulation of genetic incompatibilities leading to reproductive isolation and eventual speciation. In an attempt to detect the molecular signature of such events, the sequence divergence of non-coding DNA was compared between humans and chimpanzees. Precise knowledge of the locations of the inversion breakpoints permitted accurate discrimination between inverted and non-inverted regions. Contrary to the predictions of the recombination suppression model, sequence divergence was found to be lower in inverted chromosomal regions as compared to non-inverted regions, albeit with borderline statistical significance. Thus, no signature of recombination suppression resulting from inversion heterozygosity appears to be detectable by analysis of extant human and chimpanzee non-coding DNA. The precise delineation of the inversion breakpoints may nevertheless still prove helpful in identifying potential speciation-relevant genes within the inverted regions.

摘要

人类和黑猩猩的核型在九个臂间倒位方面是可区分的。根据物种形成的重组抑制模型,这些倒位可能促进了黑猩猩和人类的类人猿祖先群体之间的近缘物种形成过程。如果在倒位杂合子中发生重组抑制,基因流动将会减少,导致遗传不相容性的积累,进而导致生殖隔离和最终的物种形成。为了检测此类事件的分子特征,比较了人类和黑猩猩之间非编码DNA的序列差异。倒位断点位置的精确信息使得能够准确区分倒位区域和非倒位区域。与重组抑制模型的预测相反,发现倒位染色体区域的序列差异比非倒位区域更低,尽管具有边缘统计学显著性。因此,通过分析现存人类和黑猩猩的非编码DNA,似乎无法检测到由倒位杂合性导致的重组抑制特征。然而,倒位断点的确切划定可能仍然有助于识别倒位区域内潜在的与物种形成相关的基因。

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