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基于个体的、空间显式景观遗传学框架中的多位点选择建模。

Modelling multilocus selection in an individual-based, spatially-explicit landscape genetics framework.

机构信息

School of Public and Community Health Sciences, University of Montana, Missoula, MT, USA.

Department of Biology, Colorado State University, Fort Collins, CO, USA.

出版信息

Mol Ecol Resour. 2020 Mar;20(2):605-615. doi: 10.1111/1755-0998.13121. Epub 2019 Dec 19.

Abstract

We implemented multilocus selection in a spatially-explicit, individual-based framework that enables multivariate environmental gradients to drive selection in many loci as a new module for the landscape genetics programs, CDPOP and CDMetaPOP. Our module simulates multilocus selection using a linear additive model, providing a flexible platform to evaluate a wide range of genotype-environment associations. Importantly, the module allows simulation of selection in any number of loci under the influence of any number of environmental variables. We validated the module with individual-based selection simulations under Wright-Fisher assumptions. We then evaluated results for simulations under a simple landscape selection model. Next, we simulated individual-based multilocus selection across a complex selection landscape with three loci linked to three different environmental variables. Finally, we demonstrated how the program can be used to simulate multilocus selection under varying selection strengths across different levels of gene flow in a landscape genetics framework. This new module provides a valuable addition to the study of landscape genetics, allowing for explicit evaluation of the contributions and interactions between gene flow and selection-driven processes across complex, multivariate environmental and landscape conditions.

摘要

我们在空间显式、个体为基础的框架中实现了多基因座选择,使多元环境梯度能够在许多基因座中驱动选择,这是景观遗传学程序 CDPOP 和 CDMetaPOP 的一个新模块。我们的模块使用线性加性模型模拟多基因座选择,为评估广泛的基因型-环境关联提供了一个灵活的平台。重要的是,该模块允许在任何数量的环境变量影响下模拟任何数量的基因座中的选择。我们根据 Wright-Fisher 假设,用个体为基础的选择模拟来验证该模块。然后,我们根据简单的景观选择模型评估模拟结果。接下来,我们在一个复杂的选择景观中模拟了三个与三个不同环境变量相关的基因座的个体为基础的多基因座选择。最后,我们展示了如何在景观遗传学框架中,在不同的基因流水平和不同的选择强度下,使用该程序模拟多基因座选择。这个新模块为景观遗传学的研究提供了一个有价值的补充,允许明确评估在复杂的多元环境和景观条件下,基因流和选择驱动过程之间的贡献和相互作用。

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