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性染色体上的遗传多样性。

Genetic Diversity on the Sex Chromosomes.

机构信息

School of Life Sciences, Center for Evolution and Medicine, The Biodesign Institute, Arizona State University.

出版信息

Genome Biol Evol. 2018 Apr 1;10(4):1064-1078. doi: 10.1093/gbe/evy039.

Abstract

Levels and patterns of genetic diversity can provide insights into a population's history. In species with sex chromosomes, differences between genomic regions with unique inheritance patterns can be used to distinguish between different sets of possible demographic and selective events. This review introduces the differences in population history for sex chromosomes and autosomes, provides the expectations for genetic diversity across the genome under different evolutionary scenarios, and gives an introductory description for how deviations in these expectations are calculated and can be interpreted. Predominantly, diversity on the sex chromosomes has been used to explore and address three research areas: 1) Mating patterns and sex-biased variance in reproductive success, 2) signatures of selection, and 3) evidence for modes of speciation and introgression. After introducing the theory, this review catalogs recent studies of genetic diversity on the sex chromosomes across species within the major research areas that sex chromosomes are typically applied to, arguing that there are broad similarities not only between male-heterogametic (XX/XY) and female-heterogametic (ZZ/ZW) sex determination systems but also any mating system with reduced recombination in a sex-determining region. Further, general patterns of reduced diversity in nonrecombining regions are shared across plants and animals. There are unique patterns across populations with vastly different patterns of mating and speciation, but these do not tend to cluster by taxa or sex determination system.

摘要

遗传多样性的水平和模式可以为了解一个种群的历史提供线索。在具有性染色体的物种中,具有独特遗传模式的基因组区域之间的差异可以用来区分不同的可能人口和选择事件集。本综述介绍了性染色体和常染色体的种群历史差异,提供了在不同进化情景下基因组内遗传多样性的预期,并对如何计算和解释这些预期的偏差进行了介绍性描述。主要是,性染色体上的多样性被用于探索和解决三个研究领域:1)交配模式和生殖成功的性别偏向方差,2)选择的特征,以及 3)物种形成和基因渐渗的模式的证据。在介绍理论之后,本综述列出了在性染色体遗传多样性方面的最新研究,这些研究涉及到性染色体通常应用于的主要研究领域中的物种,认为不仅在雄性异型(XX/XY)和雌性异型(ZZ/ZW)性别决定系统之间,而且在任何性别决定区域重组减少的交配系统中,都存在广泛的相似性。此外,非重组区域多样性降低的一般模式在植物和动物中是共享的。在具有截然不同交配和物种形成模式的种群中存在独特的模式,但这些模式往往不会按分类群或性别决定系统聚类。

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