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叶绿体微卫星:遗传多样性的度量及同塑性的影响

Chloroplast microsatellites: measures of genetic diversity and the effect of homoplasy.

作者信息

Navascués M, Emerson B C

机构信息

Centre for Ecology, Evolution and Conservation, School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

Mol Ecol. 2005 Apr;14(5):1333-41. doi: 10.1111/j.1365-294X.2005.02504.x.

Abstract

Chloroplast microsatellites have been widely used in population genetic studies of conifers in recent years. However, their haplotype configurations suggest that they could have high levels of homoplasy, thus limiting the power of these molecular markers. A coalescent-based computer simulation was used to explore the influence of homoplasy on measures of genetic diversity based on chloroplast microsatellites. The conditions of the simulation were defined to fit isolated populations originating from the colonization of one single haplotype into an area left available after a glacial retreat. Simulated data were compared with empirical data available from the literature for a species of Pinus that has expanded north after the Last Glacial Maximum. In the evaluation of genetic diversity, homoplasy was found to have little influence on Nei's unbiased haplotype diversity (H(E)) while Goldstein's genetic distance estimates (D2sh) were much more affected. The effect of the number of chloroplast microsatellite loci for evaluation of genetic diversity is also discussed.

摘要

近年来,叶绿体微卫星已广泛应用于针叶树的群体遗传学研究。然而,它们的单倍型结构表明,它们可能具有高度的同塑性,从而限制了这些分子标记的效能。基于溯祖理论的计算机模拟被用来探究同塑性对基于叶绿体微卫星的遗传多样性测量的影响。模拟条件的设定是为了拟合由单一单倍型定殖到末次冰期消退后留下的可利用区域而形成的孤立种群。将模拟数据与文献中可获得的关于一种在末次盛冰期后向北扩张的松树物种的实证数据进行了比较。在遗传多样性评估中,发现同塑性对Nei无偏单倍型多样性(H(E))影响较小,而Goldstein遗传距离估计值(D2sh)受影响更大。还讨论了叶绿体微卫星位点数量对遗传多样性评估的影响。

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