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在波动环境中,易变数量性状的表型可塑性和环境耐受性的进化。

Evolution of phenotypic plasticity and environmental tolerance of a labile quantitative character in a fluctuating environment.

机构信息

Division of Biology, Imperial College London, Berkshire, UK.

出版信息

J Evol Biol. 2014 May;27(5):866-75. doi: 10.1111/jeb.12360. Epub 2014 Apr 12.

Abstract

Quantitative genetic models of evolution of phenotypic plasticity are used to derive environmental tolerance curves for a population in a changing environment, providing a theoretical foundation for integrating physiological and community ecology with evolutionary genetics of plasticity and norms of reaction. Plasticity is modelled for a labile quantitative character undergoing continuous reversible development and selection in a fluctuating environment. If there is no cost of plasticity, a labile character evolves expected plasticity equalling the slope of the optimal phenotype as a function of the environment. This contrasts with previous theory for plasticity influenced by the environment at a critical stage of early development determining a constant adult phenotype on which selection acts, for which the expected plasticity is reduced by the environmental predictability over the discrete time lag between development and selection. With a cost of plasticity in a labile character, the expected plasticity depends on the cost and on the environmental variance and predictability averaged over the continuous developmental time lag. Environmental tolerance curves derived from this model confirm traditional assumptions in physiological ecology and provide new insights. Tolerance curve width increases with larger environmental variance, but can only evolve within a limited range. The strength of the trade-off between tolerance curve height and width depends on the cost of plasticity. Asymmetric tolerance curves caused by male sterility at high temperature are illustrated. A simple condition is given for a large transient increase in plasticity and tolerance curve width following a sudden change in average environment.

摘要

用于推导在不断变化的环境中种群的环境耐受性曲线的表型可塑性进化的数量遗传模型,为将生理和群落生态学与可塑性和反应规范的进化遗传学相结合提供了理论基础。在波动的环境中,对易变的定量特征进行可塑性建模,该特征正在进行连续的可逆发育和选择。如果没有可塑性的成本,则易变特征进化的预期可塑性等于最佳表型的斜率,作为环境的函数。这与以前的理论形成对比,以前的理论是由早期发育的关键阶段的环境影响来确定决定选择作用的成人表型的常数,对于这种理论,由于在发育和选择之间存在离散的时间滞后,因此环境可预测性降低了预期的可塑性。对于易变特征中的可塑性成本,预期的可塑性取决于成本以及在连续发育时间滞后上的环境方差和可预测性。从该模型得出的环境耐受性曲线证实了生理生态学中的传统假设,并提供了新的见解。环境方差越大,耐受性曲线的宽度就越大,但只能在有限的范围内进化。耐受曲线高度和宽度之间的权衡强度取决于可塑性的成本。高温下雄性不育引起的不对称耐受性曲线进行了说明。给出了在平均环境突然变化后,可塑性和耐受性曲线宽度发生大的瞬态增加的简单条件。

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