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具有抑制重组的超级基因在白喉雀中的动态分子进化。

Dynamic molecular evolution of a supergene with suppressed recombination in white-throated sparrows.

机构信息

School of Biological Sciences, Georgia Institute of Technology, Atlanta, United States.

Department of Psychology, Emory University, Atlanta, United States.

出版信息

Elife. 2022 Aug 30;11:e79387. doi: 10.7554/eLife.79387.

Abstract

In white-throated sparrows, two alternative morphs differing in plumage and behavior segregate with a large chromosomal rearrangement. As with sex chromosomes such as the mammalian Y, the rearranged version of chromosome two (ZAL2) is in a near-constant state of heterozygosity, offering opportunities to investigate both degenerative and selective processes during the early evolutionary stages of 'supergenes.' Here, we generated, synthesized, and analyzed extensive genome-scale data to better understand the forces shaping the evolution of the ZAL2 and ZAL2 chromosomes in this species. We found that features of ZAL2 are consistent with substantially reduced recombination and low levels of degeneration. We also found evidence that selective sweeps took place both on ZAL2 and its standard counterpart, ZAL2, after the rearrangement event. Signatures of positive selection were associated with allelic bias in gene expression, suggesting that antagonistic selection has operated on gene regulation. Finally, we discovered a region exhibiting long-range haplotypes inside the rearrangement on ZAL2. These haplotypes appear to have been maintained by balancing selection, retaining genetic diversity within the supergene. Together, our analyses illuminate mechanisms contributing to the evolution of a young chromosomal polymorphism, revealing complex selective processes acting concurrently with genetic degeneration to drive the evolution of supergenes.

摘要

在白喉雀中,两种在羽毛和行为上存在差异的替代形态通过一个大型染色体重排而分离。与哺乳动物的 Y 染色体等性染色体一样,染色体 2 的重排版本(ZAL2)处于近乎恒定的杂合状态,为研究“超级基因”早期进化阶段的退化和选择过程提供了机会。在这里,我们生成、合成并分析了广泛的基因组规模数据,以更好地了解塑造该物种 ZAL2 和 ZAL2 染色体进化的力量。我们发现,ZAL2 的特征与重组大大减少和退化程度低相一致。我们还发现了在重排事件后,ZAL2 及其标准对应物 ZAL2 上都发生了选择清除的证据。正选择的特征与基因表达中的等位基因偏向有关,这表明基因调控上存在拮抗选择。最后,我们在 ZAL2 的重排区内发现了一个表现出长范围单倍型的区域。这些单倍型似乎通过平衡选择得以维持,在超级基因内保留了遗传多样性。总之,我们的分析阐明了导致年轻染色体多态性进化的机制,揭示了复杂的选择过程与遗传退化同时作用,推动了超级基因的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d81/9427109/ba1686f208f2/elife-79387-fig1.jpg

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