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哺乳动物Y染色体上基因进化的本质:来自Sry基因的启示

The nature of gene evolution on the mammalian Y chromosome: lessons from Sry.

作者信息

Tucker P K, Lundrigan B L

机构信息

Department of Biology, University of Michigan, Ann Arbor 48019, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 1995 Nov 29;350(1333):221-7. doi: 10.1098/rstb.1995.0155.

Abstract

With the exception of a small region, heteromorphic sex chromosomes of mammals do not undergo recombination in male meiosis. As a result, the majority of the Y chromosome is clonally transmitted through paternal lineages. Numerous phenomena, including the Hill-Robertson effect, Muller's ratchet, genetic hitch-hiking, and male-driven molecular evolution, are associated with the special transmission properties of the Y chromosome, and can potentially explain the tempo and pattern of gene evolution on the mammalian Y. We explore these phenomena in light of comparative data from the Y-linked sex-determining locus, Sry. Sry exhibits rapid amino acid divergence between species and little to no variation within species. We find no evidence for directional selection acting on this locus. The pattern of evolution between species is consistent with the Hill-Robertson effect and Muller's ratchet. Lack of variation in Sry within species may reflect genetic hitch-hiking, however, we cannot exclude the confounding effects of small effective population size of Y chromosomes. We find no support for male-driven molecular evolution for Sry in Old World mice and rats. However, a more appropriate test of this hypothesis would be to compare the evolution of Sry to the X-linked Sox3 gene in these same species. Clearly, more comparative studies of Sry and other Y-linked loci are needed to characterize the effects of Y chromosome transmission on the evolution of Y-linked sequences.

摘要

除一小区域外,哺乳动物的异形性染色体在雄性减数分裂中不发生重组。因此,Y染色体的大部分通过父系谱系进行克隆传递。许多现象,包括希尔-罗伯逊效应、穆勒棘轮、遗传搭便车和雄性驱动的分子进化,都与Y染色体的特殊传递特性相关,并有可能解释哺乳动物Y染色体上基因进化的速度和模式。我们根据来自Y连锁性别决定基因座Sry的比较数据来探讨这些现象。Sry在物种间表现出快速的氨基酸分歧,而在物种内几乎没有变异。我们没有发现定向选择作用于该基因座的证据。物种间的进化模式与希尔-罗伯逊效应和穆勒棘轮一致。Sry在物种内缺乏变异可能反映了遗传搭便车现象,然而,我们不能排除Y染色体有效种群规模小所带来的混杂效应。在旧大陆小鼠和大鼠中,我们没有发现支持Sry存在雄性驱动分子进化的证据。然而,对这一假设进行更合适的检验是将这些同一物种中Sry的进化与X连锁的Sox3基因的进化进行比较。显然,需要对Sry和其他Y连锁基因座进行更多的比较研究,以表征Y染色体传递对Y连锁序列进化的影响。

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