Skalski Garrick T
Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, Kansas 66045, USA.
Genetics. 2007 Oct;177(2):1043-57. doi: 10.1534/genetics.107.078998. Epub 2007 Aug 24.
Using the island model of population demography, I report that the demographic parameters migration rate and effective population size can be jointly estimated with equilibrium probabilities of identity in state calculated using a sample of genotypes collected at a single point in time from a single generation. The method, which uses moment-type estimators, applies to dioecious populations in which females and males have identical demography and monoecious populations with no selfing and requires that offspring genotypes are sampled following reproduction and prior to migration. I illustrate the estimation procedure using the infinite-island model with no mutation and the finite-island model with three kinds of mutation models. In the infinite-island model with no mutation, the estimators can be expressed as simple functions of estimates of the F-statistic parameters F(IT) and F(ST). In the finite-island model with mutation among k alleles, mutation rate, migration rate, and effective population size can be simultaneously estimated. The estimates of migration rate and effective population size are somewhat robust to violations in assumptions that may arise in empirical applications such as different kinds of mutation models and deviations from temporal equilibrium.
利用种群人口统计学的岛屿模型,我报告称,人口统计学参数迁移率和有效种群大小可以通过使用从单一代际的单个时间点收集的基因型样本计算出的状态恒等式平衡概率来联合估计。该方法使用矩型估计量,适用于雌雄异体种群(其中雌性和雄性具有相同的人口统计学特征)以及无自交的雌雄同体种群,并且要求在繁殖后和迁移前对后代基因型进行采样。我使用无突变的无限岛屿模型和具有三种突变模型的有限岛屿模型来说明估计过程。在无突变的无限岛屿模型中,估计量可以表示为F统计参数F(IT)和F(ST)估计值的简单函数。在具有k个等位基因间突变的有限岛屿模型中,可以同时估计突变率、迁移率和有效种群大小。迁移率和有效种群大小的估计对于经验应用中可能出现的假设违反情况(如不同类型的突变模型和偏离时间平衡)具有一定的稳健性。