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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Estimating Effective Population Size and Migration Rates From Genetic Samples Over Space and Time
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Estimating Effective Population Size and Migration Rates From Genetic Samples Over Space and Time

机译:从时空上的遗传样本估算有效种群规模和迁移率

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In the past, moment and likelihood methods have been developed to estimate the effective population size ( N e) on the basis of the observed changes of marker allele frequencies over time, and these have been applied to a large variety of species and populations. Such methods invariably make the critical assumption of a single isolated population receiving no immigrants over the study interval. For most populations in the real world, however, migration is not negligible and can substantially bias estimates of N e if it is not accounted for. Here we extend previous moment and maximum-likelihood methods to allow the joint estimation of N e and migration rate ( m ) using genetic samples over space and time. It is shown that, compared to genetic drift acting alone, migration results in changes in allele frequency that are greater in the short term and smaller in the long term, leading to under- and overestimation of N e, respectively, if it is ignored. Extensive simulations are run to evaluate the newly developed moment and likelihood methods, which yield generally satisfactory estimates of both N e and m for populations with widely different effective sizes and migration rates and patterns, given a reasonably large sample size and number of markers.
机译:过去,已经开发了矩和似然方法,根据观察到的标记等位基因频率随时间的变化来估计有效种群大小(N e),并且这些方法已应用于多种物种和种群。这些方法总是做出一个关键假设,即在研究间隔内,一个孤立的人口没有移民。但是,对于现实世界中的大多数人口而言,迁移是不可忽略的,如果不加以考虑,迁移可能会大大偏离N e的估计值。在这里,我们扩展以前的矩和最大似然方法,以允许使用空间和时间上的遗传样本联合估计N e和迁移率(m)。结果表明,与单独进行遗传漂移相比,迁移导致等位基因频率的变化在短期内更大,而在长期内更小,如果将其忽略,则分别导致N e的低估和高估。进行了广泛的模拟,以评估新近开发的矩和似然法,在有效样本量和标记数量合理的情况下,对于有效尺寸,迁移率和模式差异很大的人群,N e和m的估计值总体令人满意。

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