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Effects of Selection and Drift on G Matrix Evolution in a Heterogeneous Environment: A Multivariate Qst–Fst Test With the Freshwater Snail Galba truncatula

机译:选择和漂移对非均质环境中G基质演化的影响:淡水蜗牛Galba truncatula的多元Qst–Fst试验

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摘要

Unraveling the effect of selection vs. drift on the evolution of quantitative traits is commonly achieved by one of two methods. Either one contrasts population differentiation estimates for genetic markers and quantitative traits (the Qst–Fst contrast) or multivariate methods are used to study the covariance between sets of traits. In particular, many studies have focused on the genetic variance–covariance matrix (the >G matrix). However, both drift and selection can cause changes in >G. To understand their joint effects, we recently combined the two methods into a single test (accompanying article by Martin et al.), which we apply here to a network of 16 natural populations of the freshwater snail Galba truncatula. Using this new neutrality test, extended to hierarchical population structures, we studied the multivariate equivalent of the Qst–Fst contrast for several life-history traits of G. truncatula. We found strong evidence of selection acting on multivariate phenotypes. Selection was homogeneous among populations within each habitat and heterogeneous between habitats. We found that the >G matrices were relatively stable within each habitat, with proportionality between the among-populations (>D) and the within-populations (>G) covariance matrices. The effect of habitat heterogeneity is to break this proportionality because of selection for habitat-dependent optima. Individual-based simulations mimicking our empirical system confirmed that these patterns are expected under the selective regime inferred. We show that homogenizing selection can mimic some effect of drift on the >G matrix (>G and >D almost proportional), but that incorporating information from molecular markers (multivariate Qst–Fst) allows disentangling the two effects.
机译:通常通过两种方法之一来揭示选择与漂移对定量性状演变的影响。要么对比遗传标记和定量性状的种群分化估计值(Qst-Fst对比),要么使用多元方法研究性状集之间的协方差。特别是,许多研究集中在遗传方差-协方差矩阵(> G 矩阵)上。但是,漂移和选择都会导致> G 的变化。为了了解它们的共同作用,我们最近将这两种方法合并到一个测试中(Martin等人的随附文章),在这里我们将其应用于由16个自然水生的淡水蜗牛Galba truncatula组成的网络。使用这个新的中立性检验,扩展到分层的人口结构,我们研究了t藜的几种生活史特征的Qst-Fst对比的多元等效性。我们发现选择作用于多元表型的有力证据。每个生境中种群之间的选择是同质的,生境之间是异质的。我们发现,> G 矩阵在每个栖息地内相对稳定,种群间(> D )与种群内(> G >)协方差矩阵。由于选择了与生境有关的最优方法,生境异质性的影响是打破了这种比例关系。基于个人的模拟模仿了我们的经验系统,证实了这些模式是在推断的选择体制下预期的。我们表明,均质化选择可以模拟漂移对> G 矩阵(> G 和> D 几乎成比例)的影响,但是结合了分子中的信息标记(多变量Qst–Fst)可以解开这两种效果。

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