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随机游走模型在动物线粒体DNA变异地理分布中的应用。

Application of a random walk model to geographic distributions of animal mitochondrial DNA variation.

作者信息

Neigel J E, Avise J C

机构信息

Department of Biology, University of Southwestern Louisiana, Lafayette 70504.

出版信息

Genetics. 1993 Dec;135(4):1209-20. doi: 10.1093/genetics/135.4.1209.

Abstract

In rapidly evolving molecules, such as animal mitochondrial DNA, mutations that delineate specific lineages may not be dispersed at sufficient rates to attain an equilibrium between genetic drift and gene flow. Here we predict conditions that lead to nonequilibrium geographic distributions of mtDNA lineages, test the robustness of these predictions and examine mtDNA data sets for consistency with our model. Under a simple isolation by distance model, the variance of an mtDNA lineage's geographic distribution is expected be proportional to its age. Simulation results indicated that this relationship is fairly robust. Analysis of mtDNA data from natural populations revealed three qualitative distributional patterns: (1) significant departure of lineage structure from equilibrium geographic distributions, a pattern exhibited in three rodent species with limited dispersal; (2) nonsignificant departure from equilibrium expectations, exhibited by two avian and two marine fish species with potentials for relatively long-distance dispersal; and (3) a progression from nonequilibrium distributions for younger lineages to equilibrium distributions for older lineages, a condition displayed by one surveyed avian species. These results demonstrate the advantages of considering mutation and genealogy in the interpretation of mtDNA geographic variation.

摘要

在快速进化的分子中,比如动物线粒体DNA,界定特定谱系的突变可能不会以足够的速率扩散,从而无法在遗传漂变和基因流动之间达到平衡。在此,我们预测导致线粒体DNA谱系非平衡地理分布的条件,检验这些预测的稳健性,并检查线粒体DNA数据集是否与我们的模型一致。在一个简单的距离隔离模型下,线粒体DNA谱系地理分布的方差预计与其年龄成正比。模拟结果表明这种关系相当稳健。对自然种群线粒体DNA数据的分析揭示了三种定性分布模式:(1)谱系结构显著偏离平衡地理分布,这种模式在三种扩散受限的啮齿动物物种中出现;(2)与平衡预期无显著偏离,在两种具有相对长距离扩散潜力的鸟类和两种海洋鱼类物种中表现出来;(3)从较年轻谱系的非平衡分布到较老谱系的平衡分布的一种演进,在所调查的一种鸟类物种中呈现出这种情况。这些结果证明了在解释线粒体DNA地理变异时考虑突变和谱系的优势。

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