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在时间自相关环境中,通过对选择的遗传反应和表型可塑性实现表型 - 环境关联的进化。

Evolution of phenotype-environment associations by genetic responses to selection and phenotypic plasticity in a temporally autocorrelated environment.

作者信息

Michel Matt J, Chevin Luis-Miguel, Knouft Jason H

机构信息

Department of Biology, Saint Louis University, St. Louis, Missouri 63103; Department of Biology and Marine Biology, University of North Carolina, Wilmington, North Carolina 28401.

出版信息

Evolution. 2014 May;68(5):1374-84. doi: 10.1111/evo.12371. Epub 2014 Feb 23.

DOI:10.1111/evo.12371
PMID:24475940
Abstract

Covariation between population-mean phenotypes and environmental variables, sometimes termed a "phenotype-environment association" (PEA), can result from phenotypic plasticity, genetic responses to natural selection, or both. PEAs can potentially provide information on the evolutionary dynamics of a particular set of populations, but this requires a full theoretical characterization of PEAs and their evolution. Here, we derive formulas for the expected PEA in a temporally fluctuating environment for a quantitative trait with a linear reaction norm. We compare several biologically relevant scenarios, including constant versus evolving plasticity, and the situation in which an environment affects both development and selection but at different time periods. We find that PEAs are determined not only by biological factors (e.g., magnitude of plasticity, genetic variation), but also environmental factors, such as the association between the environments of development and of selection, and in some cases the level of temporal autocorrelation. We also describe how a PEA can be used to estimate the relationship between an optimum phenotype and an environmental variable (i.e., the environmental sensitivity of selection), an important parameter for determining the extinction risk of populations experiencing environmental change. We illustrate this ability using published data on the predator-induced morphological responses of tadpoles to predation risk.

摘要

种群平均表型与环境变量之间的协变,有时被称为“表型 - 环境关联”(PEA),可能源于表型可塑性、对自然选择的遗传响应,或两者兼而有之。PEA 有可能提供关于特定种群进化动态的信息,但这需要对 PEA 及其进化进行全面的理论描述。在这里,我们推导了在时间波动环境中具有线性反应规范的数量性状的预期 PEA 的公式。我们比较了几种生物学上相关的情况,包括恒定可塑性与进化可塑性,以及环境在不同时间段影响发育和选择的情况。我们发现,PEA 不仅由生物学因素(例如可塑性大小、遗传变异)决定,还受环境因素影响,如发育环境与选择环境之间的关联,在某些情况下还受时间自相关水平的影响。我们还描述了如何使用 PEA 来估计最优表型与环境变量之间的关系(即选择的环境敏感性),这是确定经历环境变化的种群灭绝风险的一个重要参数。我们使用已发表的关于蝌蚪对捕食风险的捕食者诱导形态反应的数据来说明这种能力。

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