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全球分布的鸟类物种复合体中的性连锁遗传多样性与分化

Sex-linked genetic diversity and differentiation in a globally distributed avian species complex.

作者信息

Schield Drew R, Scordato Elizabeth S C, Smith Chris C R, Carter Javan K, Cherkaoui Sidi Imad, Gombobaatar Sundev, Hajib Said, Hanane Saad, Hund Amanda K, Koyama Kazuo, Liang Wei, Liu Yang, Magri Najib, Rubtsov Alexander, Sheta Basma, Turbek Sheela P, Wilkins Matthew R, Yu Liu, Safran Rebecca J

机构信息

Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, CO, USA.

Department of Biological Sciences, California State Polytechnic University, Pomona, CA, USA.

出版信息

Mol Ecol. 2021 May;30(10):2313-2332. doi: 10.1111/mec.15885. Epub 2021 Mar 29.

Abstract

Sex chromosomes often bear distinct patterns of genetic variation due to unique patterns of inheritance and demography. The processes of mutation, recombination, genetic drift and selection also influence rates of evolution on sex chromosomes differently than autosomes. Measuring such differences provides information about how these processes shape genomic variation and their roles in the origin of species. To test hypotheses and predictions about patterns of autosomal and sex-linked genomic diversity and differentiation, we measured population genetic statistics within and between populations and subspecies of the barn swallow (Hirundo rustica) and performed explicit comparisons between autosomal and Z-linked genomic regions. We first tested for evidence of low Z-linked genetic diversity and high Z-linked population differentiation relative to autosomes, then for evidence that the Z chromosome bears greater ancestry information due to faster lineage sorting. Finally, we investigated geographical clines across hybrid zones for evidence that the Z chromosome is resistant to introgression due to selection against hybrids. We found evidence that the barn swallow mating system, demographic history and linked selection each contribute to low Z-linked diversity and high Z-linked differentiation. While incomplete lineage sorting is rampant across the genome, our results indicate faster sorting of ancestral polymorphism on the Z. Finally, hybrid zone analyses indicate barriers to introgression on the Z chromosome, suggesting that sex-linked traits are important in reproductive isolation, especially in migratory divide regions. Our study highlights how selection, gene flow and demography shape sex-linked genetic diversity and underlines the relevance of the Z chromosome in speciation.

摘要

由于独特的遗传和人口统计学模式,性染色体往往呈现出不同的遗传变异模式。突变、重组、遗传漂变和选择过程对性染色体进化速率的影响也与常染色体不同。测量这些差异可以提供有关这些过程如何塑造基因组变异及其在物种起源中的作用的信息。为了检验关于常染色体和性连锁基因组多样性及分化模式的假设和预测,我们测量了家燕(Hirundo rustica)种群及亚种内部和之间的群体遗传统计数据,并对常染色体和Z连锁基因组区域进行了明确比较。我们首先测试相对于常染色体而言,Z连锁遗传多样性低且Z连锁群体分化高的证据,然后测试Z染色体由于谱系分选更快而携带更多祖先信息的证据。最后,我们研究了杂交区域的地理渐变群,以寻找Z染色体因对杂种的选择而对基因渗入具有抗性的证据。我们发现证据表明,家燕的交配系统、人口统计学历史和连锁选择都导致了Z连锁多样性低和Z连锁分化高。虽然全基因组范围内不完全谱系分选很普遍,但我们的结果表明Z染色体上祖先多态性的分选更快。最后,杂交区域分析表明Z染色体存在基因渗入障碍,这表明性连锁性状在生殖隔离中很重要,尤其是在迁徙分隔区域。我们的研究强调了选择、基因流和人口统计学如何塑造性连锁遗传多样性,并强调了Z染色体在物种形成中的相关性。

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