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适应性进化既能防止生态系统崩溃,又能延缓生态系统恢复。

Adaptive Evolution Can Both Prevent Ecosystem Collapse and Delay Ecosystem Recovery.

出版信息

Am Nat. 2021 Dec;198(6):E185-E197. doi: 10.1086/716929. Epub 2021 Oct 26.

Abstract

AbstractThere is growing concern about the dire socioecological consequences of abrupt transitions between alternative ecosystem states in response to environmental changes. At the same time, environmental change can trigger evolutionary responses that could stabilize or destabilize ecosystem dynamics. However, we know little about how coupled ecological and evolutionary processes affect the risk of transition between alternative ecosystem states. Using shallow lakes as a model ecosystem, we investigate how trait evolution of a key species affects ecosystem resilience under environmental stress. We find that adaptive evolution of macrophytes can increase ecosystem resilience by shifting the critical threshold, which marks the transition from a clear-water state to a turbid-water state to a higher level of environmental stress. However, following the transition, adaptation to the turbid-water state can delay the ecosystem recovery back to the clear-water state. This implies that restoration could be more effective when implemented early enough after a transition occurs and before organisms adapt to the alternative state. Our findings provide new insights into how to prevent and mitigate the occurrence of regime shifts in ecosystems and highlight the need to understand ecosystem responses to environmental change in the context of coupled ecological and evolutionary processes.

摘要

摘要

人们越来越关注生态系统在应对环境变化时,从一种替代状态到另一种状态的急剧转变所带来的严重社会生态后果。与此同时,环境变化可能会引发进化反应,从而稳定或破坏生态系统的动态。然而,我们对于耦合的生态和进化过程如何影响替代生态系统状态之间的转变风险知之甚少。本文以浅湖作为模型生态系统,研究了关键物种的特征进化如何在环境压力下影响生态系统的恢复力。我们发现,大型植物的适应性进化可以通过改变关键阈值来增加生态系统的恢复力,该阈值标志着从清水状态到浊水状态再到更高环境压力的转变。然而,在转变之后,对浊水状态的适应会延迟生态系统恢复到清水状态。这意味着在过渡发生后,在生物体适应替代状态之前,尽早实施恢复措施可能会更有效。我们的研究结果为如何预防和减轻生态系统中状态转变的发生提供了新的见解,并强调需要在耦合的生态和进化过程的背景下理解生态系统对环境变化的反应。

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