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染色体倒位如何重新定向进化过程。

How chromosomal inversions reorient the evolutionary process.

机构信息

Bioinformatics Core, Department of Biostatistics, Harvard T. H. Chan School of Public Health, Boston, Massachusetts, USA.

Department of Marine Sciences, University of Gothenburg, Gothenburg, Sweden.

出版信息

J Evol Biol. 2023 Dec;36(12):1761-1782. doi: 10.1111/jeb.14242. Epub 2023 Nov 8.

Abstract

Inversions are structural mutations that reverse the sequence of a chromosome segment and reduce the effective rate of recombination in the heterozygous state. They play a major role in adaptation, as well as in other evolutionary processes such as speciation. Although inversions have been studied since the 1920s, they remain difficult to investigate because the reduced recombination conferred by them strengthens the effects of drift and hitchhiking, which in turn can obscure signatures of selection. Nonetheless, numerous inversions have been found to be under selection. Given recent advances in population genetic theory and empirical study, here we review how different mechanisms of selection affect the evolution of inversions. A key difference between inversions and other mutations, such as single nucleotide variants, is that the fitness of an inversion may be affected by a larger number of frequently interacting processes. This considerably complicates the analysis of the causes underlying the evolution of inversions. We discuss the extent to which these mechanisms can be disentangled, and by which approach.

摘要

倒位是一种结构突变,它会反转染色体片段的序列,并降低杂合状态下的重组有效率。它们在适应以及其他进化过程中(如物种形成)起着重要作用。尽管自 20 世纪 20 年代以来,人们就已经开始研究倒位,但由于它们所带来的重组减少,会加强漂变和 hitchhiking 的影响,从而掩盖选择的特征,因此倒位仍然难以研究。尽管如此,仍发现许多倒位受到选择的影响。鉴于群体遗传理论和实证研究的最新进展,我们在这里回顾了不同的选择机制如何影响倒位的进化。与其他突变(如单核苷酸变体)相比,倒位的一个关键区别在于,倒位的适合度可能受到更多经常相互作用的过程的影响。这极大地增加了分析倒位进化原因的复杂性。我们讨论了这些机制在多大程度上可以被区分开来,以及通过哪种方法。

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