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Increased divergence but reduced variation on the Z chromosome relative to autosomes in Ficedula flycatchers: differential introgression or the faster‐Z effect?

机译:相对于Ficedula捕蝇器中的常染色体,Z染色体上的差异增加,但Z染色体上的变异减小:差异渗入还是Z效应更快?

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AbstractRecent multilocus studies of congeneric birds have shown a pattern of elevated interspecific divergence on the Z chromosome compared to the autosomes. In contrast, intraspecifically, birds exhibit less polymorphism on the Z chromosome relative to the autosomes. We show that the four black-and-white Ficedula flycatcher species show greater genetic divergence on the Z chromosome than on the autosomes, and that the ratios of intraspecific polymorphism at Z-linked versus autosomal markers are below the neutral expectation of 75%. In all species pairs, we found more fixed substitutions and fewer shared polymorphisms on the Z chromosome than on the autosomes. Finally, using isolation with migration (IMa) models we estimated gene flow among the four closely related flycatcher species. The results suggest that different pattern of evolution of Z chromosomes and autosomes is best explained by the faster-Z hypothesis, since the estimated long-term gene flow parameters were close to zero in all comparisons.
机译:摘要近期对同类鸟类的多基因座研究表明,与常染色体相比,Z染色体上种间差异有所增加。相反,相对于常染色体,鸟类在种内表现出Z染色体上较少的多态性。我们显示四种黑白Fi蝶捕蝇器物种在Z染色体上显示出比常染色体更大的遗传差异,并且Z连锁对常染色体标记的种内多态性比率低于中性预期的75%。在所有物种对中,与常染色体相比,我们在Z染色体上发现了更多的固定取代和更少的共有多态性。最后,使用带迁移隔离(IMa)模型,我们估算了四个密切相关的捕蝇器物种之间的基因流。结果表明,Z染色体和常染色体的不同进化模式最好用快速Z假设来解释,因为在所有比较中,估计的长期基因流参数都接近于零。

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