slow -X:在X染色体进化的早期阶段,选择效率降低。

IF 3.4 1区 生物学 Q2 EVOLUTIONARY BIOLOGY Evolution Letters Pub Date : 2023-02-01 DOI:10.1093/evlett/qrac004
Andrea Mrnjavac, Ksenia A Khudiakova, Nicholas H Barton, Beatriz Vicoso
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引用次数: 2

摘要

如果新的有益突变是隐性的(“更快的X效应”),分化的X染色体预计比常染色体具有更高的适应性分化率,主要是因为这些突变在雄性中立即暴露于选择中。X染色体在男性体内停止重组,但在变成半合子染色体之前的进化,在理论上还没有得到很好的探索。我们使用扩散近似来推断在这种情况下有益和有害突变的替代率。我们的研究结果表明,在广泛的参数范围内,二倍体X位点的选择效率低于常染色体和半合子X位点。这种“慢x”效应对于主要(或仅)影响男性适应性的基因和性对抗基因更为强烈。这些不寻常的动态表明,X染色体的一些特殊特征,如具有性别特异性功能的基因的差异积累,可能比以前认识到的更早开始出现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Slower-X: reduced efficiency of selection in the early stages of X chromosome evolution.

Differentiated X chromosomes are expected to have higher rates of adaptive divergence than autosomes, if new beneficial mutations are recessive (the "faster-X effect"), largely because these mutations are immediately exposed to selection in males. The evolution of X chromosomes after they stop recombining in males, but before they become hemizygous, has not been well explored theoretically. We use the diffusion approximation to infer substitution rates of beneficial and deleterious mutations under such a scenario. Our results show that selection is less efficient on diploid X loci than on autosomal and hemizygous X loci under a wide range of parameters. This "slower-X" effect is stronger for genes affecting primarily (or only) male fitness, and for sexually antagonistic genes. These unusual dynamics suggest that some of the peculiar features of X chromosomes, such as the differential accumulation of genes with sex-specific functions, may start arising earlier than previously appreciated.

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来源期刊
Evolution Letters
Evolution Letters EVOLUTIONARY BIOLOGY-
CiteScore
13.00
自引率
2.00%
发文量
35
审稿时长
10 weeks
期刊介绍: Evolution Letters publishes cutting-edge new research in all areas of Evolutionary Biology. Available exclusively online, and entirely open access, Evolution Letters consists of Letters - original pieces of research which form the bulk of papers - and Comments and Opinion - a forum for highlighting timely new research ideas for the evolutionary community.
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