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家鼠Y染色体与线粒体DNA之间不一致的系统发育地理模式:Y染色体上的选择作用?

Discordant phylogeographic patterns between the Y chromosome and mitochondrial DNA in the house mouse: selection on the Y chromosome?

作者信息

Boissinot S, Boursot P

机构信息

Laboratoire Génome et Populations (CNRS UPR 9060), Université Montpellier II, France.

出版信息

Genetics. 1997 Jul;146(3):1019-34. doi: 10.1093/genetics/146.3.1019.

Abstract

We have compared patterns of geographic variation and molecular divergence of mitochondrial DNA (mtDNA) and Y chromosome over the range of the different subspecies of Mus musculus. MtDNA was typed for 305 nucleotides in the control region, the Y chromosome for 834 base pairs (bp) in Zfy introns and 242 bp in Sry, a Zfy2 18-bp deletion, and two microsatellites. Apparent discrepancies exist between the distributions of the lineages of mtDNA and of the two major Y-chromosome lineages thus defined: some subspecies share the same mtDNA lineage but have different Y-chromosome lineages or vice versa. One microsatellite reveals a geographically clustered variation inside the distribution of each Y-chromosome lineage, showing that new Y-chromosome variants can rapidly spread locally. The two major Y-chromosome lineages have a divergence time only about one fourth of that between mtDNA lineages. Although this recent coalescence of the Y chromosomes between subspecies could partly be due to a lower ancestral polymorphism of the Y chromosome, it suggests that secondary introgression after the radiation of the subspecies might have occurred. There is evidence that the differentiation of the Y-chromosome lineages contributes to partial reproductive isolation between subspecies, and patterns of molecular evolution suggest that selection has played a role in the rapid spread across subspecies.

摘要

我们比较了小家鼠不同亚种分布范围内线粒体DNA(mtDNA)和Y染色体的地理变异模式及分子分化情况。对控制区的305个核苷酸进行了mtDNA分型,对Zfy内含子中的834个碱基对(bp)、Sry中的242个bp、一个Zfy2的18 bp缺失以及两个微卫星进行了Y染色体分型。如此定义的mtDNA谱系分布与两个主要Y染色体谱系分布之间存在明显差异:一些亚种共享相同的mtDNA谱系,但具有不同的Y染色体谱系,反之亦然。一个微卫星在每个Y染色体谱系的分布范围内显示出地理上聚集的变异,表明新的Y染色体变体可以在局部迅速传播。两个主要Y染色体谱系的分化时间仅约为mtDNA谱系之间分化时间的四分之一。虽然亚种间Y染色体最近的合并部分可能是由于Y染色体较低的祖先多态性,但这表明亚种辐射后可能发生了二次基因渗入。有证据表明,Y染色体谱系的分化有助于亚种间的部分生殖隔离,分子进化模式表明选择在跨亚种的快速传播中发挥了作用。

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