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Extensive X-linked adaptive evolution in central chimpanzees

机译:黑猩猩的广泛X连锁适应性进化

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摘要

Surveying genome-wide coding variation within and among species gives unprecedented power to study the genetics of adaptation, in particular the proportion of amino acid substitutions fixed by positive selection. Additionally, contrasting the autosomes and the X chromosome holds information on the dominance of beneficial (adaptive) and deleterious mutations. Here we capture and sequence the complete exomes of 12 chimpanzees and present the largest set of protein-coding polymorphism to date. We report extensive adaptive evolution specifically targeting the X chromosome of chimpanzees with as much as 30% of all amino acid replacements being adaptive. Adaptive evolution is barely detectable on the autosomes except for a few striking cases of recent selective sweeps associated with immunity gene clusters. We also find much stronger purifying selection than observed in humans, and in contrast to humans, we find that purifying selection is stronger on the X chromosome than on the autosomes in chimpanzees. We therefore conclude that most adaptive mutations are recessive. We also document dramatically reduced synonymous diversity in the chimpanzee X chromosome relative to autosomes and stronger purifying selection than for the human X chromosome. If similar processes were operating in the human-chimpanzee ancestor as in central chimpanzees today, our results therefore provide an explanation for the much-discussed reduction in the human-chimpanzee divergence at the X chromosome.
机译:调查物种内部和物种之间的全基因组编码变异提供了前所未有的能力来研究适应性遗传学,特别是通过正选择固定的氨基酸取代比例。此外,通过比较常染色体和X染色体,可以获得有关有益(适应性)和有害突变的优势的信息。在这里,我们捕获并测序了12个黑猩猩的完整外显子组,并提出了迄今为止最大的一组蛋白质编码多态性。我们报道了广泛的适应性进化,特别是针对黑猩猩的X染色体,其中多达30%的氨基酸替代都是适应性的。除了一些与免疫基因簇相关的近期选择性扫描的惊人案例外,在常染色体上几乎无法检测到适应性进化。我们还发现纯化选择比人类观察到的要强得多,与人类相反,我们发现X染色体上的纯化选择比黑猩猩的常染色体上的纯化选择更强。因此,我们得出结论,大多数适应性突变是隐性的。我们还记录了相对于常染色体而言,黑猩猩X染色体的同义多样性显着降低,并且比人类X染色体的纯化选择更强。如果在人类黑猩猩的祖先中像在今天的中部黑猩猩中进行类似的过程,那么我们的结果因此可以为人们广泛讨论的X染色体上的人类黑猩猩发散性降低提供一个解释。

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    Science and Conservation, Copenhagen Zoo, 2000 Frederiksberg, Denmark,Bioinformatics, Department of Biology, University of Copenhagen, 2200 Copenhagen, Denmark;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

    Centre International de Recherches Medkales de Franceville, B769 Franceville, Gabon;

    Science and Conservation, Copenhagen Zoo, 2000 Frederiksberg, Denmark;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

    Bioinformatics, Department of Biology, University of Copenhagen, 2200 Copenhagen, Denmark;

    Bioinformatics, Department of Biology, University of Copenhagen, 2200 Copenhagen, Denmark,Beijing Genomics Institute, Shenzhen 518083, Guangdong, China;

    Bioinformatics Research Center, Aarhus University, 8000C Aarhus, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pan troglodytes troglodytes; SNP; site frequency spectrum distribution of fitness effects; faster X;

    机译:泛穴居人穴居人;SNP;健身效果的现场频谱分布;更快的X;

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