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通过临界扰动估计的结构稳定性决定了互利共生模型生态系统中的进化持久性。

Structural stability estimated through critical perturbation determines evolutionary persistence in mutualistic model ecosystems.

作者信息

Lurgi Miguel, Pascual-García Alberto

机构信息

Centre for Biodiversity Theory and Modelling, Experimental and Theoretical Ecology Research Station, Moulis, France.

Department of Biosciences, Swansea University, Swansea, UK.

出版信息

R Soc Open Sci. 2025 Aug 6;12(8):250123. doi: 10.1098/rsos.250123. eCollection 2025 Aug.

Abstract

Understanding the factors that influence the persistence and stability of complex ecological networks is a central focus of ecological research. Recent research into these factors has predominantly attempted to unveil the ecological processes and structural constraints that influence network stability. Comparatively little attention has been given to the consequences of evolutionary events, despite the fact that the interplay between ecology and evolution has been recognized as fundamental to understand the formation of ecological communities and predict their reaction to change. We extend existing mutualistic population dynamical models by incorporating evolutionary adaptation events to address this critical gap. We relate ecological aspects of mutualistic community stability to the stability of persistent evolutionary pathways. Our findings highlight the significance of the structural stability of ecological systems in predicting biodiversity loss under both evolutionary and environmental changes, particularly in relation to species-level selection. Notably, our simulations reveal that the evolution of mutualistic networks tends to increase a network-dependent parameter termed critical competition, which places systems in a regime in which mutualistic interactions enhance structural stability and, consequently, biodiversity. This research emphasizes the pivotal role of natural selection in shaping ecological networks, steering them towards reduced effective competition below a critical threshold where mutualistic interactions foster stability in the face of environmental change.

摘要

理解影响复杂生态网络的持续性和稳定性的因素是生态学研究的核心重点。近期对这些因素的研究主要试图揭示影响网络稳定性的生态过程和结构限制。尽管生态与进化之间的相互作用已被认为是理解生态群落形成及预测其对变化的反应的基础,但对进化事件的后果却相对关注较少。我们通过纳入进化适应事件来扩展现有的互利共生种群动态模型,以填补这一关键空白。我们将互利共生群落稳定性的生态方面与持久进化路径的稳定性联系起来。我们的研究结果凸显了生态系统结构稳定性在预测进化和环境变化下生物多样性丧失方面的重要性,特别是在物种水平选择方面。值得注意的是,我们的模拟显示,互利共生网络的进化倾向于增加一个称为临界竞争的网络相关参数,这使系统处于一种状态,即互利共生相互作用增强结构稳定性,进而增强生物多样性。这项研究强调了自然选择在塑造生态网络中的关键作用,引导它们在临界阈值以下降低有效竞争,在这个阈值下,互利共生相互作用在面对环境变化时促进稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c71c/12324884/3bf9a7f247b6/rsos.250123.f001.jpg

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