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性染色体重复使物种形成倾向于平衡。

Sex chromosome repeats tip the balance towards speciation.

机构信息

Institute for Systems Genomics and Department of Molecular and Cell Biology, University of Connecticut, Storrs, Connecticut.

出版信息

Mol Ecol. 2018 Oct;27(19):3783-3798. doi: 10.1111/mec.14577. Epub 2018 May 8.

Abstract

Because sex chromosomes, by definition, carry genes that determine sex, mutations that alter their structural and functional stability can have immediate consequences for the individual by reducing fertility, but also for a species by altering the sex ratio. Moreover, the sex-specific segregation patterns of heteromorphic sex chromosomes make them havens for selfish genetic elements that not only create suboptimal sex ratios but can also foster sexual antagonism. Compensatory mutations to mitigate antagonism or return sex ratios to a Fisherian optimum can create hybrid incompatibility and establish reproductive barriers leading to species divergence. The destabilizing influence of these selfish elements is often manifest within populations as copy number variants (CNVs) in satellite repeats and transposable elements (TE) or as CNVs involving sex-determining genes, or genes essential to fertility and sex chromosome dosage compensation. This review catalogs several examples of well-studied sex chromosome CNVs in Drosophilids and mammals that underlie instances of meiotic drive, hybrid incompatibility and disruptions to sex differentiation and sex chromosome dosage compensation. While it is difficult to pinpoint a direct cause/effect relationship between these sex chromosome CNVs and speciation, it is easy to see how their effects in creating imbalances between the sexes, and the compensatory mutations to restore balance, can lead to lineage splitting and species formation.

摘要

由于性染色体从定义上携带决定性别的基因,因此改变其结构和功能稳定性的突变会通过降低生育能力直接影响个体,也会通过改变性别比例影响物种。此外,异型性染色体的性别特异性分离模式使它们成为自私遗传元素的避难所,这些元素不仅会导致不理想的性别比例,还会引发性拮抗。为了减轻拮抗作用或使性别比例恢复到费希尔最优状态,可能会产生补偿性突变,但这会导致杂种不亲和,并建立生殖障碍,从而导致物种分化。这些自私元素的不稳定影响通常在种群中表现为卫星重复和转座元件中的拷贝数变异 (CNV),或者涉及性别决定基因或与生育力和性染色体剂量补偿有关的基因的 CNV。本综述列举了几个在果蝇和哺乳动物中研究得很好的性染色体 CNV 实例,这些实例是减数分裂驱动、杂种不亲和以及性别分化和性染色体剂量补偿中断的基础。虽然很难确定这些性染色体 CNV 与物种形成之间的直接因果关系,但很容易看出它们在性别失衡方面的影响,以及为了恢复平衡而产生的补偿性突变,会导致谱系分裂和物种形成。

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