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线粒体基因流动

Mitochondrial gene flow.

作者信息

Takahata N, Slatkin M

出版信息

Proc Natl Acad Sci U S A. 1984 Mar;81(6):1764-7. doi: 10.1073/pnas.81.6.1764.

Abstract

To account for the transmission of mitochondrial DNA between conspecific species Drosophila pseudoobscura and D. persimilis in sympatry reported by J.R. Powell [Powell, J.R. (1983) Proc. Natl. Acad. Sci. USA 80, 492-495], a simple model of gene flow and selection in infinite populations is analyzed. The model assumes two alleles at each of two loci, one of which is coded by an autosome and the other by mitochondrial DNA. Viability selection is presumed to be underdominant--i.e., heterozygous inferiority to the homozygotes--at an autosomal locus, and neutral or deleterious at a mitochondrial locus, with the combined action being multiplicative. Extremely strong selection against heterozygotes may prevent the transmission of mitochondrial DNA between two species, but otherwise the transmission can easily occur over species boundaries. The rate of approach to equilibrium is determined by the level of gene flow and is not affected much by selection against an autosomal locus. The divergence of the nuclear genomes of the two species is reexamined. Based on published data on enzyme loci, we conclude that there has been mitochondrial gene flow between these species for a long enough time that several nuclear loci examined could diverge because of accumulation of neutral mutations.

摘要

为了解释J.R. 鲍威尔[鲍威尔,J.R.(1983年)《美国国家科学院院刊》80卷,第492 - 495页]报道的同域分布的近缘物种伪暗果蝇和拟暗果蝇之间线粒体DNA的传递情况,我们分析了一个无限种群中基因流动和选择的简单模型。该模型假设在两个位点上各有两个等位基因,其中一个由常染色体编码,另一个由线粒体DNA编码。假定在常染色体位点上,生存力选择是超显性的——即杂合子相对于纯合子处于劣势——而在线粒体位点上是中性或有害的,两者的联合作用是相乘的。对杂合子极其强烈的选择可能会阻止线粒体DNA在两个物种之间的传递,但除此之外,这种传递很容易跨越物种界限发生。达到平衡的速率由基因流动水平决定,并且受常染色体位点选择的影响不大。我们重新审视了这两个物种核基因组的分歧情况。基于已发表的酶位点数据,我们得出结论,这些物种之间存在线粒体基因流动已经有足够长的时间,以至于所检测的几个核位点可能由于中性突变的积累而发生了分歧。

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Mitochondrial gene flow.线粒体基因流动
Proc Natl Acad Sci U S A. 1984 Mar;81(6):1764-7. doi: 10.1073/pnas.81.6.1764.

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