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特立尼达孔雀鱼(Poecilia reticulata)进化适应的直接和间接生态系统效应。

Direct and indirect ecosystem effects of evolutionary adaptation in the Trinidadian guppy (Poecilia reticulata).

机构信息

Department of Biology, University of California, Riverside, California 92521, USA.

出版信息

Am Nat. 2012 Aug;180(2):167-85. doi: 10.1086/666611.

Abstract

Ecological and evolutionary processes may interact on the same timescale, but we are just beginning to understand how. Several studies have examined the net effects of adaptive evolution on ecosystem properties. However, we do not know whether these effects are confined to direct interactions or whether they propagate further through indirect ecological pathways. Even less well understood is how the combination of direct and indirect ecological effects of the phenotype promotes or inhibits evolutionary change. We coupled mesocosm experiments and ecosystem modeling to evaluate the ecological effects of local adaptation in Trinidadian guppies (Poecilia reticulata). The experiments show that guppies adapted to life with and without predators alter the ecosystem directly through differences in diet. The ecosystem model reveals that the small total indirect effect of the phenotype observed in the experiments is likely a combination of several large indirect effects that act in opposing directions. The model further suggests that these indirect effects can reverse the direction of selection that direct effects alone exert back on phenotypic variation. We conclude that phenotypic divergence can have major effects deep in the web of indirect ecological interactions and that even small total indirect effects can radically change the dynamics of adaptation.

摘要

生态和进化过程可能在同一时间尺度上相互作用,但我们才刚刚开始了解这种相互作用的方式。有几项研究检验了适应进化对生态系统属性的净效应。然而,我们不知道这些效应是否仅限于直接相互作用,或者它们是否通过间接的生态途径进一步传播。更不为人知的是,表型的直接和间接生态效应的组合如何促进或抑制进化变化。我们结合了中观实验和生态系统模型,以评估特立尼达孔雀鱼(Poecilia reticulata)的局部适应的生态效应。实验表明,适应有和没有捕食者的生活的孔雀鱼通过饮食差异直接改变生态系统。生态系统模型表明,实验中观察到的表型的小的总间接效应可能是几种大的间接效应的组合,这些间接效应的作用方向相反。该模型进一步表明,这些间接效应可以改变直接效应单独对表型变异施加的选择方向。我们的结论是,表型分歧可能对间接生态相互作用的网络深处产生重大影响,即使是很小的总间接效应也可以彻底改变适应的动态。

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