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《simulans 果蝇 Y 染色体的进化史揭示了对抗性别比例减数分裂驱动的分子特征》

The Evolutionary History of Drosophila simulans Y Chromosomes Reveals Molecular Signatures of Resistance to Sex Ratio Meiotic Drive.

机构信息

Department of Biology, University of Rochester, Rochester, NY, USA.

Laboratoire Evolution, Génome, Comportement et Ecologie, UMR UPSaclay, CNRS 9191, IRD 247, Gif-sur-Yvette, France.

出版信息

Mol Biol Evol. 2023 Jul 5;40(7). doi: 10.1093/molbev/msad152.

Abstract

The recent evolutionary history of the Y chromosome in Drosophila simulans, a worldwide species of Afrotropical origin, is closely linked to that of X-linked meiotic drivers (Paris system). The spread of the Paris drivers in natural populations has elicited the selection of drive-resistant Y chromosomes. To infer the evolutionary history of the Y chromosome in relation to the Paris drive, we sequenced 21 iso-Y lines, each carrying a Y chromosome from a different location. Among them, 13 lines carry a Y chromosome that is able to counteract the effect of the drivers. Despite their very different geographical origins, all sensitive Y's are highly similar, suggesting that they share a recent common ancestor. The resistant Y chromosomes are more divergent and segregate in four distinct clusters. The phylogeny of the Y chromosome confirms that the resistant lineage predates the emergence of Paris drive. The ancestry of the resistant lineage is further supported by the examination of Y-linked sequences in the sister species of D. simulans, Drosophila sechellia and Drosophila mauritiana. We also characterized the variation in repeat content among Y chromosomes and identified multiple simple satellites associated with resistance. Altogether, the molecular polymorphism allows us to infer the demographic and evolutionary history of the Y chromosome and provides new insights on the genetic basis of resistance.

摘要

最近,源自非洲的世界性物种果蝇 simulans 的 Y 染色体的进化历史与 X 连锁减数分裂驱动(巴黎系统)密切相关。巴黎驱动在自然种群中的传播引发了对驱动抗性 Y 染色体的选择。为了推断 Y 染色体与巴黎驱动的进化历史,我们对 21 个同 Y 系进行了测序,每个系携带来自不同位置的 Y 染色体。其中,有 13 条线携带的 Y 染色体能够抵消驱动的影响。尽管它们的地理起源非常不同,但所有敏感的 Y 染色体都非常相似,这表明它们共享一个最近的共同祖先。抗性 Y 染色体则更加多样化,分为四个不同的聚类。Y 染色体的系统发育证实了抗性谱系早于巴黎驱动的出现。抗性谱系的祖先进一步得到了果蝇 simulans 的姐妹种果蝇 sechellia 和果蝇 mauritiana 的 Y 连锁序列检验的支持。我们还研究了 Y 染色体上重复内容的变异,并鉴定出与抗性相关的多个简单卫星。总之,分子多态性使我们能够推断 Y 染色体的人口统计学和进化历史,并为抗性的遗传基础提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc68/10326837/02d6eb991b8d/msad152f1.jpg

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