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Disentangling the effects of geographic and ecological isolation on genetic differentiation

机译:区分地理和生态隔离对遗传分化的影响

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Populations can be genetically isolated both by geographic distance and by differences in their ecology or environment that decrease the rate of successful migration. Empirical studies often seek to investigate the relationship between genetic differentiation and some ecological variable(s) while accounting for geographic distance, but common approaches to this problem (such as the partial Mantel test) have a number of drawbacks. In this article, we present a Bayesian method that enables users to quantify the relative contributions of geographic distance and ecological distance to genetic differentiation between sampled populations or individuals. We model the allele frequencies in a set of populations at a set of unlinked loci as spatially correlated Gaussian processes, in which the covariance structure is a decreasing function of both geographic and ecological distance. Parameters of the model are estimated using a Markov chain Monte Carlo algorithm. We call this method Bayesian Estimation of Differentiation in Alleles by Spatial Structure and Local Ecology (BEDASSLE), and have implemented it in a user-friendly format in the statistical platform R. We demonstrate its utility with a simulation study and empirical applications to human and teosinte data sets.
机译:可以通过地理距离以及通过其生态学或环境差异降低种群的成功遗传率来隔离种群。经验研究通常试图在考虑地理距离的同时研究遗传分化与某些生态变量之间的关系,但是解决该问题的常用方法(例如部分Mantel检验)有许多缺点。在本文中,我们提出了一种贝叶斯方法,该方法使用户能够量化地理距离和生态距离对抽样人群或个体之间遗传分化的相对贡献。我们将一组未链接基因座处的一组种群中的等位基因频率建模为空间相关的高斯过程,其中协方差结构是地理和生态距离的递减函数。使用马尔可夫链蒙特卡洛算法估计模型的参数。我们将这种方法称为通过空间结构和局部生态学(BEDASSLE)进行的等位基因贝叶斯差异估计方法,并已在统计平台R中以用户友好的格式实现了该方法。我们通过仿真研究以及对人和动物的实证应用证明了其实用性。 teosinte数据集。

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