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Gene flow mediates the role of sex chromosome meiotic drive during complex speciation

机译:基因流介导复杂物种形成过程中性染色体减数分裂驱动的作用

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摘要

During speciation, sex chromosomes often accumulate interspecific genetic incompatibilities faster than the rest of the genome. The drive theory posits that sex chromosomes are susceptible to recurrent bouts of meiotic drive and suppression, causing the evolutionary build-up of divergent cryptic sex-linked drive systems and, incidentally, genetic incompatibilities. To assess the role of drive during speciation, we combine high-resolution genetic mapping of X-linked hybrid male sterility with population genomics analyses of divergence and recent gene flow between the fruitfly species, Drosophila mauritiana and D. simulans. Our findings reveal a high density of genetic incompatibilities and a corresponding dearth of gene flow on the X chromosome. Surprisingly, we find that a known drive element recently migrated between species and, rather than contributing to interspecific divergence, caused a strong reduction in local sequence divergence, undermining the evolution of hybrid sterility. Gene flow can therefore mediate the effects of selfish genetic elements during speciation.
机译:在物种形成过程中,性染色体通常比其他基因组更快地积累种间遗传不相容性。驱动理论认为,性染色体易受减数分裂驱动和抑制的反复发作,从而导致发散的隐性与性相关的驱动系统的进化积累,以及偶然的遗传不相容性。为了评估驱动作用在物种形成过程中的作用,我们将X连锁杂交雄性不育的高分辨率遗传图谱与果蝇种,果蝇和拟南芥之间的差异和近期基因流的种群基因组学分析相结合。我们的发现揭示了高密度的遗传不相容性,以及X染色体上相应的基因流缺乏。令人惊讶地,我们发现最近已知的驱动元件在物种之间迁移,而不是导致种间差异,导致局部序列差异的强烈减少,从而破坏了杂交不育的进化。因此,基因流可以在物种形成过程中介导自私的遗传因素的影响。

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