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共同进化与气候变化对相互作用物种的影响。

Coevolution and the effects of climate change on interacting species.

机构信息

Department of Zoology, University of Wisconsin, Madison, Wisconsin, United States of America.

出版信息

PLoS Biol. 2013 Oct;11(10):e1001685. doi: 10.1371/journal.pbio.1001685. Epub 2013 Oct 22.

Abstract

BACKGROUND

Recent studies suggest that environmental changes may tip the balance between interacting species, leading to the extinction of one or more species. While it is recognized that evolution will play a role in determining how environmental changes directly affect species, the interactions among species force us to consider the coevolutionary responses of species to environmental changes.

METHODOLOGY/PRINCIPLE FINDINGS: We use simple models of competition, predation, and mutualism to organize and synthesize the ways coevolution modifies species interactions when climatic changes favor one species over another. In cases where species have conflicting interests (i.e., selection for increased interspecific interaction strength on one species is detrimental to the other), we show that coevolution reduces the effects of climate change, leading to smaller changes in abundances and reduced chances of extinction. Conversely, when species have nonconflicting interests (i.e., selection for increased interspecific interaction strength on one species benefits the other), coevolution increases the effects of climate change.

CONCLUSIONS/SIGNIFICANCE: Coevolution sets up feedback loops that either dampen or amplify the effect of environmental change on species abundances depending on whether coevolution has conflicting or nonconflicting effects on species interactions. Thus, gaining a better understanding of the coevolutionary processes between interacting species is critical for understanding how communities respond to a changing climate. We suggest experimental methods to determine which types of coevolution (conflicting or nonconflicting) drive species interactions, which should lead to better understanding of the effects of coevolution on species adaptation. Conducting these experiments across environmental gradients will test our predictions of the effects of environmental change and coevolution on ecological communities.

摘要

背景

最近的研究表明,环境变化可能会打破相互作用的物种之间的平衡,导致一个或多个物种灭绝。虽然人们认识到进化将在确定环境变化如何直接影响物种方面发挥作用,但物种之间的相互作用迫使我们考虑物种对环境变化的共同进化反应。

方法/原理发现:我们使用竞争、捕食和互利共生的简单模型,组织和综合共同进化在气候变化有利于一个物种而不利于另一个物种时改变物种相互作用的方式。在物种利益冲突的情况下(即增加一个物种之间的种间相互作用强度的选择对另一个物种有害),我们表明共同进化会降低气候变化的影响,导致丰度变化较小,灭绝的机会减少。相反,当物种的利益不冲突时(即增加一个物种之间的种间相互作用强度的选择有利于另一个物种),共同进化会增加气候变化的影响。

结论/意义:共同进化建立了反馈回路,根据共同进化对物种相互作用是有冲突还是无冲突的影响,这些反馈回路要么减弱,要么放大环境变化对物种丰度的影响。因此,更好地了解相互作用的物种之间的共同进化过程对于理解群落如何应对气候变化至关重要。我们建议采用实验方法来确定哪种类型的共同进化(冲突或非冲突)驱动物种相互作用,这应该有助于更好地理解共同进化对物种适应的影响。在环境梯度上进行这些实验将检验我们对环境变化和共同进化对生态群落影响的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21e0/3805473/7c869404dfe0/pbio.1001685.g001.jpg

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