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重现复杂性:大型溞对捕食压力强烈变化的多性状反应中可塑性与快速进化的相互作用

Resurrecting complexity: the interplay of plasticity and rapid evolution in the multiple trait response to strong changes in predation pressure in the water flea Daphnia magna.

作者信息

Stoks Robby, Govaert Lynn, Pauwels Kevin, Jansen Bastiaan, De Meester Luc

机构信息

Laboratory of Aquatic Ecology, Evolution and Conservation, University of Leuven, Ch. Deberiotstraat 32, B-3000, Leuven, Belgium.

出版信息

Ecol Lett. 2016 Feb;19(2):180-190. doi: 10.1111/ele.12551. Epub 2015 Dec 9.

Abstract

A resurrection ecology reconstruction of 14 morphological, life history and behavioural traits revealed that a natural Daphnia magna population rapidly tracked changes in fish predation by integrating phenotypic plasticity and widespread evolutionary changes both in mean trait values and in trait plasticity. Increased fish predation mainly generated rapid adaptive evolution of plasticity (especially in the presence of maladaptive ancestral plasticity) resulting in an important change in the magnitude and direction of the multivariate reaction norm. Subsequent relaxation of the fish predation pressure resulted in reversed phenotypic plasticity and mainly caused evolution of the trait means towards the ancestral pre-fish means. Relaxation from fish predation did, however, not result in a complete reversal to the ancestral fishless multivariate phenotype. Our study emphasises that the study population rapidly tracked environmental changes through a mosaic of plasticity, evolution of trait means and evolution of plasticity to generate integrated phenotypic changes in multiple traits.

摘要

对14种形态、生活史和行为特征进行的复活生态学重建表明,大型溞的自然种群通过整合表型可塑性以及平均性状值和性状可塑性方面广泛的进化变化,迅速跟踪鱼类捕食的变化。鱼类捕食增加主要导致可塑性的快速适应性进化(特别是在存在适应不良的祖先可塑性的情况下),从而导致多变量反应规范的幅度和方向发生重要变化。随后鱼类捕食压力的缓解导致表型可塑性逆转,主要使性状均值朝着祖先在鱼类出现之前的均值进化。然而,从鱼类捕食中解脱出来并没有导致完全逆转到祖先无鱼的多变量表型。我们的研究强调,研究种群通过可塑性、性状均值进化和可塑性进化的组合,迅速跟踪环境变化,从而在多个性状中产生综合的表型变化。

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