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Alternative assembly processes from trait-mediated co-evolution in mutualistic communities

机译:来自特质介导的共同社区中的特征介导的共同进化的替代组装过程

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摘要

Ecological and evolutionary dynamics observed in mutualistic communities can be shaped by several mechanisms, including ecological interactions and their co-evolutionary consequences. Here we explore how intra and interspecific competition, together with mutualistic interactions, can affect community assembly through their effects on adaptive diversification and the emergence of biodiversity. To capture both ecological and evolutionary processes simultaneously, we used the adaptive dynamics approach based on a Lotka-Volterra framework and simulated the ecological dynamics of populations as well as the evolutionary dynamics of phenotypic traits. Depending on the initial trait values, two possible alternative evolutionary regimes emerged: traits evolve towards either optimal utilization of environmental resources or maximizing the benefits from mutualistic interactions. Diversification and overall biodiversity are mostly driven by frequency-dependent competition, while mutualism plays an important role in enhancing ecosystem productivity and evolutionary stability. Because different initial trait values in a community can lead to alternative evolutionary regimes, species loss and biological invasions could not only alter ecological dynamics but also push the system onto an alternative successional climax or evolutionary end point. It thus becomes essential to clarify the past evolutionary dynamics so as to draw conclusions on key community assembly processes.
机译:在各种机制中观察到在互联网社区中观察到的生态和进化动态,包括生态相互作用及其共同进化后果。在这里,我们探讨了如何与互相互动的竞争如何以及相互互动,可以通过它们对自适应多样化的影响和生物多样性的出现来影响社区组装。为了同时捕获生态和进化过程,我们利用了基于Lotka-Volterra框架的自适应动力学方法,并模拟了种群的生态动态以及表型性状的进化动态。根据初始特征价值,出现了两种可能的替代进化制度:特质发展朝着环境资源的最佳利用或最大化互相互动作的益处。多样化和整体生物多样性主要由跨跨度竞争驱动,而相互主义在提高生态系统生产力和进化稳定方面发挥着重要作用。由于社区中的不同初始特征值可能导致替代进化制度,因此物种损失和生物侵犯不仅可以改变生态动态,而且还可以将系统推向替代的连续高潮或进化终点。因此,澄清过去的进化动态至关重要,以便在关键社区装配过程中得出结论。

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