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Pyrodiversity promotes interaction complementarity and population resistance

机译:火成多样性促进相互作用的互补性和种群抵抗力

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摘要

Theory predicts that network characteristics may help anticipate how populations and communities respond to extreme climatic events, but local environmental context may also influence responses to extreme events. For example, altered fire regimes in many ecosystems may significantly affect the context for how species and communities respond to changing climate. In this study, I tested whether the responses of a pollinator community to extreme drought were influenced by the surrounding diversity of fire histories (pyrodiversity) which can influence their interaction networks via changing partner availability. I found that at the community level, pyrodiverse landscapes promote functional complementarity and generalization, but did not consistently enhance functional redundancy or resistance to simulated co‐extinction cascades. Pyrodiversity instead supported flexible behaviors that enable populations to resist perturbations. Specifically, pollinators that can shift partners and network niches are better able to take advantage of the heterogeneity generated by pyrodiversity, thereby buffering pollinator populations against changes in plant abundances. These findings suggest that pyrodiversity is unlikely to improve community‐level resistance to droughts, but instead promotes population resistance and community functionality. This study provides unique evidence that resistance to extreme climatic events depends on both network properties and historical environmental context.
机译:理论预测,网络特征可以帮助预测人口和社区如何应对极端气候事件,但是当地环境环境也可能影响对极端事件的响应。例如,许多生态系统中火情的改变可能会严重影响物种和社区对气候变化的反应方式。在这项研究中,我测试了授粉媒介社区对极端干旱的反应是否受到周围火灾历史多样性(火成多样性)的影响,而火灾历史的多样性(热多样性)可以通过改变伙伴的可用性来影响其互动网络。我发现在社区一级,火生物多样性景观促进了功能的互补和泛化,但并没有持续增强功能的冗余性或对模拟灭绝级联的抵抗力。相反,热多样性支持灵活的行为,使人们能够抵制扰动。具体而言,可以改变伙伴和网络生态位的传粉者更能够利用由热多样性产生的异质性,从而使传粉媒介种群免受植物丰度变化的影响。这些发现表明,热多样性不可能提高社区一级对干旱的抵抗力,反而会促进人口抵抗力和社区功能。这项研究提供了独特的证据,证明对极端气候事件的抵抗力取决于网络特性和历史环境。

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