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全球变化下表型可塑性的演变。

The evolution of phenotypic plasticity under global change.

机构信息

Département de Biologie Chimie et Géographie, Université du Québec à Rimouski, 300 Allée des Ursulines, Rimouski, Québec, G5L 3A1, Canada.

Laboratory for Biological Geochemistry, School of Architecture, Civil and Environmental Engineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Sci Rep. 2017 Dec 8;7(1):17253. doi: 10.1038/s41598-017-17554-0.

Abstract

Marine ecosystems are currently in a state of flux, with ocean warming and acidification occurring at unprecedented rates. Phenotypic plasticity underpins acclimatory responses by shifting the mean phenotype in a population, which may buffer the negative effects of global change. However, little is known about how phenotypic plasticity evolves across multiple generations. We tested this by reciprocally-transplanting the polychaete Ophryotrocha labronica between control and global change scenarios (ocean warming and acidification in isolation and combined) over five generations. By comparing the reaction norms of four life-history traits across generations, we show that juvenile developmental rate in the combined scenario was the only trait that changed its plastic response across generations when transplanted back to control conditions, and that adaptive plasticity was conserved in most traits, despite significant levels of selection and strong declines in individual fitness in the multi-generational exposure. We suggest the change in level of plasticity in the combined scenario is caused by differential allocation of energy between the mean and the plasticity of the trait along the multigenerational exposure. The ability to maintain within-generational levels of plasticity under global change scenarios has important eco-evolutionary and conservation implications, which are examined under the framework of assisted evolution programs.

摘要

海洋生态系统目前正处于不断变化的状态,海洋升温以及酸化的速度达到了前所未有的水平。表型可塑性通过改变种群中平均表型来支撑适应反应,可以缓冲全球变化的负面影响。然而,人们对于表型可塑性如何在多个世代中进化知之甚少。我们通过在五个世代中来回移植多毛纲动物 Ophryotrocha labronica 来检验这一点,将其分别移植到对照和全球变化情景(海洋升温、酸化以及两者的组合)中。通过比较四个生活史特征在不同世代之间的反应规范,我们发现,在组合情景下,幼体的发育速度是唯一一个在移植回对照条件时改变其可塑性反应的特征,尽管在多世代暴露中存在显著的选择水平和个体适应性的强烈下降,但大多数特征的适应性可塑性得以保留。我们认为,在组合情景下,可塑性水平的变化是由于沿着多世代暴露,在特征的平均值和可塑性之间的能量分配不同造成的。在全球变化情景下维持世代内可塑性水平的能力具有重要的生态进化和保护意义,我们在辅助进化计划的框架下对其进行了检验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c9a/5722875/18aa581b605a/41598_2017_17554_Fig1_HTML.jpg

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