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自然种群中酶基因座的突变率、种群大小及电泳变异量

Mutation rates, population sizes and amounts of electrophoretic variation of enzyme loci in natural populations.

作者信息

Zouros E

出版信息

Genetics. 1979 Jun;92(2):623-46. doi: 10.1093/genetics/92.2.623.

Abstract

A method is presented for estimating relative mutation rates or relative effective population sizes, under the hypothesis of adaptively neutral allelic variation. This method was applied to seven surveys of electrophoretic variation. It was observed that electrophoretic mutation rates so obtained follow the gamma distribution and, in Drosophila, are positively correlated with the molecular weights of the enzymes subunits. The variance in mutation rate is larger under the step-wise model of electrophoretic mutation than under the infinite-alleles model. Rates for the most variable loci may exceed rates for less variable loci by a factor of 500. For completely invariant loci, this factor may be as high as 4 X 10(4), an observation suggesting that these loci are subject to purifying selection. In contrast to mutation rates, effective population sizes may vary at the most by a factor of ten. These results support the hypothesis that differences in the amount of electrophoretic variability among polymorphic loci may reflect differences in the rate by which electrophoretically detectable variation is generated in population.

摘要

本文提出了一种在适应性中性等位基因变异假设下估计相对突变率或相对有效种群大小的方法。该方法应用于七项电泳变异调查。观察到如此获得的电泳突变率遵循伽马分布,并且在果蝇中,与酶亚基的分子量呈正相关。在电泳突变的逐步模型下,突变率的方差比在无限等位基因模型下更大。变化最大的位点的突变率可能比变化较小的位点的突变率高出500倍。对于完全不变的位点,这个倍数可能高达4×10⁴,这一观察结果表明这些位点受到纯化选择。与突变率相反,有效种群大小最多可能相差10倍。这些结果支持了这样的假设,即多态位点之间电泳变异性数量的差异可能反映了种群中电泳可检测变异产生速率的差异。

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Infinite allele model with varying mutation rate.具有可变突变率的无限等位基因模型。
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Wandering distributions and the electrophoretic profile. II.
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