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雌雄异株种群中的选择。

Selection in dioecious populations.

作者信息

Nagylaki T

出版信息

Ann Hum Genet. 1979 Oct;43(2):143-50. doi: 10.1111/j.1469-1809.1979.tb02007.x.

Abstract

Weak selection at a single mutiallelic locus in a dioecious population is analysed under the assumptions of panmixia and discrete non-overlapping generations. The results hold for both autosomal and X-linked loci after several generations have elapsed. With an error of the order of s (i.e. O(s)), where s is the selection intensity, the population evolves as if it were monoecious. The equivalent monoecious fitnesses must be calculated by weighting each sex by the number of genes carried by an individual at the locus under consideration. Provided the explicit time dependence (if any) of the genotypic fitnesses in each sex is O(s2), the rate of change of the male--female allelic frequency differences is O(s2). If the change per generation of the genotypic fitnesses is smaller than second order in s (i.e. o(s2)), then to O(s2) the rate of change of the unweighted average of the male and female mean fitnesses is equal to the genic variance. Hence, as long as there is significant gene frequency change, this measure of the mean fitness of the population will increase.

摘要

在随机交配和离散不重叠世代的假设下,分析了雌雄异株种群中单个复等位基因位点上的弱选择。经过几代之后,结果对常染色体和X连锁位点均成立。误差为s的量级(即O(s)),其中s为选择强度,此时种群的进化就好像它是雌雄同株的一样。等效的雌雄同株适合度必须通过在考虑的位点上,根据个体携带的基因数量对每种性别进行加权来计算。假设每种性别的基因型适合度的显式时间依赖性(如果有的话)为O(s2),则雌雄等位基因频率差异的变化率为O(s2)。如果基因型适合度每代的变化小于s的二阶(即o(s2)),那么到O(s2)阶,雄性和雌性平均适合度的未加权平均值的变化率等于基因方差。因此,只要存在显著的基因频率变化,这种种群平均适合度的度量就会增加。

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