Tufto Jarle
Centre for Biodiversity Dynamics/Department of Mathematical Sciences, Norwegian University of Science and Technology, 7491, Trondheim, Norway.
Evolution. 2015 Aug;69(8):2034-49. doi: 10.1111/evo.12716. Epub 2015 Aug 6.
Adaptive responses to autocorrelated environmental fluctuations through evolution in mean reaction norm elevation and slope and an independent component of the phenotypic variance are analyzed using a quantitative genetic model. Analytic approximations expressing the mutual dependencies between all three response modes are derived and solved for the joint evolutionary outcome. Both genetic evolution in reaction norm elevation and plasticity are favored by slow temporal fluctuations, with plasticity, in the absence of microenvironmental variability, being the dominant evolutionary outcome for reasonable parameter values. For fast fluctuations, tracking of the optimal phenotype through genetic evolution and plasticity is limited. If residual fluctuations in the optimal phenotype are large and stabilizing selection is strong, selection then acts to increase the phenotypic variance (bet-hedging adaptive). Otherwise, canalizing selection occurs. If the phenotypic variance increases with plasticity through the effect of microenvironmental variability, this shifts the joint evolutionary balance away from plasticity in favor of genetic evolution. If microenvironmental deviations experienced by each individual at the time of development and selection are correlated, however, more plasticity evolves. The adaptive significance of evolutionary fluctuations in plasticity and the phenotypic variance, transient evolution, and the validity of the analytic approximations are investigated using simulations.
利用定量遗传模型分析了通过平均反应规范高度和斜率的进化以及表型方差的一个独立成分对自相关环境波动的适应性反应。推导并求解了表示所有三种反应模式之间相互依赖关系的解析近似值,以得出联合进化结果。反应规范高度和可塑性的遗传进化都受到缓慢时间波动的青睐,在没有微环境变异性的情况下,对于合理的参数值,可塑性是主要的进化结果。对于快速波动,通过遗传进化和可塑性对最优表型的追踪是有限的。如果最优表型的残余波动很大且稳定选择很强,那么选择就会促使表型方差增加(套期保值适应性)。否则,就会发生定向选择。如果表型方差通过微环境变异性的影响随可塑性增加,这会使联合进化平衡从可塑性转向有利于遗传进化。然而,如果每个个体在发育和选择时经历的微环境偏差是相关的,就会进化出更多的可塑性。使用模拟研究了可塑性和表型方差的进化波动、瞬态进化的适应性意义以及解析近似值的有效性。