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The contribution of female meiotic drive to the evolution of neo-sex chromosomes

机译:女性减数分裂驱动对新性染色体进化的贡献

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摘要

Sex chromosomes undergo rapid turnover in certain taxonomic groups. One of the mechanisms of sex chromosome turnover involves fusions between sex chromosomes and autosomes. Sexual antagonism, heterozygote advantage, and genetic drift have been proposed as the drivers for the fixation of this evolutionary event. However, all empirical patterns of the prevalence of multiple sex chromosome systems across different taxa cannot be simply explained by these three mechanisms. In this study, we propose that female meiotic drive may contribute to the evolution of neo-sex chromosomes. The results of this study showed that in mammals, the XY _1Y _2 sex chromosome system is more prevalent in species with karyotypes of more biarmed chromosomes, whereas the X _1X _2Y sex chromosome system is more prevalent in species with predominantly acrocentric chromosomes. In species where biarmed chromosomes are favored by female meiotic drive, X-autosome fusions (XY _1Y _2 sex chromosome system) will be also favored by female meiotic drive. In contrast, in species with more acrocentric chromosomes, Y-autosome fusions (X _1X _2Y sex chromosome system) will be favored just because of the biased mutation rate toward chromosomal fusions. Further consideration should be given to female meiotic drive as a mechanism in the fixation of neo-sex chromosomes.
机译:在某些分类群中,性染色体发生快速更新。性染色体更新的机制之一涉及性染色体与常染色体的融合。已提出性拮抗,杂合子优势和遗传漂移作为固定该进化事件的驱动力。但是,这三种机制不能简单地解释跨不同类群的多个性染色体系统流行的所有经验模式。在这项研究中,我们建议女性减数分裂驱动可能有助于新性染色体的进化。这项研究的结果表明,在哺乳动物中,XY _1Y _2性染色体系统在具有更多双臂型染色体核型的物种中更为普遍,而X _1X _2Y性染色体系统在以近端染色体为主的物种中更为普遍。在女性减数分裂驱动偏爱双臂染色体的物种中,女性减数分裂驱动也会偏爱X常染色体融合(XY _1Y _2性染色体系统)。相比之下,在具有更多近端中心染色体的物种中,仅因为向染色体融合的突变率偏高,Y-常染色体融合(X _1X _2Y性染色体系统)将受到青睐。应进一步考虑雌性减数分裂驱动,将其作为固定新性别染色体的一种机制。

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