Alternative cliques of coexisting species in complex ecosystems

Guim Aguadé-Gorgorió, Sonia Kefi
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Abstract

The possibility that some ecosystems can exist in alternative stable states has profound implications for ecosystem conservation and restoration. Current ecological theory on multistability mostly relies on few-species dynamical models, in which alternative states are intrinsically related to specific non-linear dynamics. Recent theoretical advances, however, have shown that multiple stable ‘cliques’ – small subsets of coexisting species– can be present in species-rich models even under linear interactions. Yet, the mechanisms governing the appearence and characteristics of these cliques remain largely unexplored. In the present work, we investigate cliques in the generalized Lotka-Volterra model with mathematical and computational techniques. Our findings reveal that simple probabilistic and dynamical constraints can explain the appearence, properties and stability of cliques. Our work contributes to the understanding of alternative stable states in complex ecological communities.
复杂生态系统中共存物种的替代小群
某些生态系统可能存在另一种稳定状态,这对生态系统的保护和恢复有着深远的影响。目前关于多态性的生态学理论大多依赖于少物种动力学模型,在这种模型中,替代状态与特定的非线性动力学有内在联系。然而,最新的理论进展表明,即使在线性相互作用下,物种丰富的模型中也会出现多个稳定的 "小群"--共存物种的小子集。然而,这些小群的出现机制和特征在很大程度上仍未得到探索。在本研究中,我们利用数学和计算技术研究了广义洛特卡-伏特拉模型中的小群。我们的研究结果表明,简单的概率和动态约束可以解释小群的出现、特性和稳定性。我们的工作有助于理解复杂生态群落中的替代稳定状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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