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沿着资源梯度,两个相互竞争的大型植物种群之间的演化导致了一个双稳态湖泊生态系统的崩溃。

Evolution between two competing macrophyte populations along a resource gradient leads to collapse in a bistable lake ecosystem.

作者信息

Boucenna Sirine, Raoul Gael, Dakos Vasilis

机构信息

Institut des Sciences de l'Evolution de Montpellier (ISEM), Université de Montpellier, CNRS, IRD, EPHE, Montpellier, France.

Centre de Mathématiques Appliquées, École Polytechnique, Palaiseau, 91120, France.

出版信息

Theor Popul Biol. 2025 Aug;164:23-36. doi: 10.1016/j.tpb.2025.04.001. Epub 2025 May 13.

DOI:10.1016/j.tpb.2025.04.001
PMID:40374145
Abstract

While it is known that shallow lake ecosystems may experience abrupt shifts (ie tipping points) from a clear water state to a contrasting turbid alternative state as a result of eutrophication, the role of evolutionary processes and the impact of trait variation in this context remain largely unexplored. It is crucial to elucidate how eco-evolutionary feedbacks affect abrupt ecological transitions in shallow lakes and more in general in bistable ecosystems. These feedbacks can significantly alter the dynamics of aquatic plants competition, community structure, and species diversity, potentially affecting the existence of alternative states or either delay or expedite the thresholds at which these ecological shifts occur. In this paper, we explore the eco-evolutionary dynamics of submerged and floating macrophytes in a shallow lake ecosystem under asymmetric competition for nutrients and light along a gradient of nutrient diffusion. We use Adaptive Dynamics and a structured population model to analyze the evolution of the growth depth of the submerged and floating macrophytes populations, which influences their competitive ability for the two resources. We show how trait evolution can result in complex dynamics including evolutionary oscillations, extensive diversification and evolutionary suicide. Furthermore, we find that the co-evolution of the two competing populations plays a stabilizing role, but does not significantly alter the dynamics compared to when only one of the two populations is evolving. Overall, our study contributes to the understanding of the effects of evolution on the ecological dynamics of bistable ecosystems.

摘要

虽然已知富营养化会导致浅水湖泊生态系统从清水状态突然转变(即临界点)为与之形成对比的浑浊状态,但在这种情况下进化过程的作用以及性状变异的影响在很大程度上仍未得到探索。阐明生态进化反馈如何影响浅水湖泊以及更普遍地在双稳态生态系统中的突然生态转变至关重要。这些反馈会显著改变水生植物竞争、群落结构和物种多样性的动态,可能影响替代状态的存在,或者延迟或加速这些生态转变发生的阈值。在本文中,我们沿着养分扩散梯度,在养分和光照的不对称竞争下,探索浅水湖泊生态系统中沉水植物和漂浮植物的生态进化动态。我们使用适应性动态和结构化种群模型来分析沉水植物和漂浮植物种群生长深度的进化,这会影响它们对两种资源的竞争能力。我们展示了性状进化如何导致复杂的动态,包括进化振荡、广泛的多样化和进化自杀。此外,我们发现两个竞争种群的共同进化起到了稳定作用,但与只有两个种群中的一个在进化时相比,并没有显著改变动态。总体而言,我们的研究有助于理解进化对双稳态生态系统生态动态的影响。

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