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在对特立尼达孔雀鱼(孔雀鱼)进行实验性引入后,表型可塑性改变了性状之间的相关性。

Phenotypic plasticity changes correlations of traits following experimental introductions of Trinidadian guppies (Poecilia reticulata).

作者信息

Handelsman Corey A, Ruell Emily W, Torres-Dowdall Julián, Ghalambor Cameron K

机构信息

*Department of Biology, Colorado State University, Fort Collins, CO 80523, USA; Department of Biology, Lehrstuhl für Zoologie und Evolutionsbiologie, University of Konstanz, Universitätstrasse 10, 78457, Konstanz, Germany; Zukunftskolleg, University of Konstanz, Universitätstrasse 10, 78457, Konstanz, Germany; Graduate Degree Program in Ecology, Colorado State University, Fort Collins, CO 80523, USA

*Department of Biology, Colorado State University, Fort Collins, CO 80523, USA; Department of Biology, Lehrstuhl für Zoologie und Evolutionsbiologie, University of Konstanz, Universitätstrasse 10, 78457, Konstanz, Germany; Zukunftskolleg, University of Konstanz, Universitätstrasse 10, 78457, Konstanz, Germany; Graduate Degree Program in Ecology, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Integr Comp Biol. 2014 Nov;54(5):794-804. doi: 10.1093/icb/icu112. Epub 2014 Sep 8.

Abstract

Colonization of novel environments can alter selective pressures and act as a catalyst for rapid evolution in nature. Theory and empirical studies suggest that the ability of a population to exhibit an adaptive evolutionary response to novel selection pressures should reflect the presence of sufficient additive genetic variance and covariance for individual and correlated traits. As correlated traits should not respond to selection independently, the structure of correlations of traits can bias or constrain adaptive evolution. Models of how multiple correlated traits respond to selection often assume spatial and temporal stability of trait-correlations within populations. Yet, trait-correlations can also be plastic in response to environmental variation. Phenotypic plasticity, the ability of a single genotype to produce different phenotypes across environments, is of particular interest because it can induce population-wide changes in the combination of traits exposed to selection and change the trajectory of evolutionary divergence. We tested the ability of phenotypic plasticity to modify trait-correlations by comparing phenotypic variance and covariance in the body-shapes of four experimental populations of Trinidadian guppies (Poecilia reticulata) to their ancestral population. We found that phenotypic plasticity produced both adaptive and novel aspects of body-shape, which was repeated in all four experimental populations. Further, phenotypic plasticity changed patterns of covariance among morphological characters. These findings suggest our ability to make inferences about patterns of divergence based on correlations of traits in extant populations may be limited if novel environments not only induce plasticity in multiple traits, but also change the correlations among the traits.

摘要

新环境的定殖会改变选择压力,并成为自然界快速进化的催化剂。理论和实证研究表明,种群对新选择压力表现出适应性进化反应的能力应反映出个体性状和相关性状存在足够的加性遗传方差和协方差。由于相关性状不应独立地对选择作出反应,性状相关性的结构可能会使适应性进化产生偏差或受到限制。关于多个相关性状如何对选择作出反应的模型通常假定种群内性状相关性在空间和时间上具有稳定性。然而,性状相关性也可能因环境变化而具有可塑性。表型可塑性,即单一基因型在不同环境中产生不同表型的能力,尤其令人感兴趣,因为它可以在种群范围内引起暴露于选择的性状组合的变化,并改变进化分歧的轨迹。我们通过比较特立尼达孔雀鱼(孔雀鱼)四个实验种群的体型表型方差和协方差与其祖先种群的表型方差和协方差,来测试表型可塑性改变性状相关性的能力。我们发现表型可塑性产生了体型的适应性和新颖性方面,这在所有四个实验种群中都有体现。此外,表型可塑性改变了形态特征之间的协方差模式。这些发现表明,如果新环境不仅会在多个性状中诱导可塑性,还会改变性状之间的相关性,那么我们基于现存种群性状相关性推断分歧模式的能力可能会受到限制。

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