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时间自相关和可塑性成本对可塑性进化的综合影响。

The combined effects of temporal autocorrelation and the costs of plasticity on the evolution of plasticity.

作者信息

Siljestam M, Östman Ö

机构信息

Department of Ecology & Genetics, Uppsala University, Uppsala, Sweden.

出版信息

J Evol Biol. 2017 Jul;30(7):1361-1371. doi: 10.1111/jeb.13114. Epub 2017 Jun 13.

Abstract

Adaptive phenotypic plasticity is an important source of intraspecific variation, and for many plastic traits, the costs or factors limiting plasticity seem cryptic. However, there are several different factors that may constrain the evolution of plasticity, but few models have considered costs and limiting factors simultaneously. Here we use a simulation model to investigate how the optimal level of plasticity in a population depends on a fixed maintenance fitness cost for plasticity or an incremental fitness cost for producing a plastic response in combination with environmental unpredictability (environmental fluctuation speed) limiting plasticity. Our model identifies two mechanisms that act, almost separately, to constrain the evolution of plasticity: (i) the fitness cost of plasticity scaled by the nonplastic environmental tolerance, and (ii) the environmental fluctuation speed scaled by the rate of phenotypic change. That is, the evolution of plasticity is constrained by the high cost of plasticity in combination with high tolerance for environmental variation, or fast environmental changes in combination with slow plastic response. Qualitatively similar results are found when maintenance and incremental fitness costs of plasticity are incorporated, although a larger degree of plasticity is selected for with an incremental cost. Our model highlights that it is important to consider direct fitness costs and phenotypic limitations in relation to nonplastic environmental tolerance and environmental fluctuations, respectively, to understand what constrains the evolution of phenotypic plasticity.

摘要

适应性表型可塑性是种内变异的一个重要来源,对于许多可塑性性状而言,限制可塑性的代价或因素似乎并不明显。然而,有几种不同的因素可能会限制可塑性的进化,但很少有模型同时考虑代价和限制因素。在此,我们使用一个模拟模型来研究种群中可塑性的最优水平如何取决于可塑性的固定维持适合度代价,或产生可塑性反应的增量适合度代价,以及限制可塑性的环境不可预测性(环境波动速度)。我们的模型识别出两种几乎独立起作用以限制可塑性进化的机制:(i)由非可塑性环境耐受性缩放的可塑性适合度代价,以及(ii)由表型变化速率缩放的环境波动速度。也就是说,可塑性的进化受到可塑性高代价与高环境变异耐受性相结合的限制,或者受到快速环境变化与缓慢可塑性反应相结合的限制。当纳入可塑性的维持和增量适合度代价时,会发现定性上相似的结果,尽管选择了更大程度的可塑性以付出增量代价。我们的模型强调,分别考虑与非可塑性环境耐受性和环境波动相关的直接适合度代价和表型限制,对于理解是什么限制了表型可塑性的进化很重要。

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