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Mutualistic strategies minimize coextinction in plant–disperser networks

机译:互惠策略可最大程度地减少植物-分散剂网络中的共灭

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摘要

The global decline of mutualists such as pollinators and seed dispersers may cause negative direct and indirect impacts on biodiversity. Mutualistic network models used to understand the stability of mutualistic systems indicate that species with low partner diversity are most vulnerable to coextinction following mutualism disruption. However, existing models have not considered how species vary in their dependence on mutualistic interactions for reproduction or survival, overlooking the potential influence of this variation on species' coextinction vulnerability and on network stability. Using global databases and field experiments focused on the seed dispersal mutualism, we found that plants and animals that depend heavily on mutualistic interactions have higher partner diversity. Under simulated network disruption, this empirical relationship strongly reduced coextinction because the species most likely to lose mutualists depend least on their mutualists. The pattern also reduced the importance of network structure for stability; nested network structure had little effect on coextinction after simulations incorporated the empirically derived relationship between partner diversity and mutualistic dependence. Our results highlight a previously unknown source of stability in mutualistic networks and suggest that differences among species in their mutualistic strategy, rather than network structure, primarily accounts for stability in mutualistic communities.
机译:授粉媒介和种子传播者等共产主义者在全球范围内的衰落可能对生物多样性造成直接或间接的负面影响。用于理解互惠​​系统稳定性的互惠网络模型表明,具有低伙伴多样性的物种最容易在互惠破坏后发生共灭。但是,现有模型尚未考虑物种对繁殖或生存相互依赖的依赖性如何变化,而忽略了这种变化对物种共存易损性和网络稳定性的潜在影响。使用针对种子传播共生的全球数据库和田间实验,我们发现严重依赖于相互影响的动植物具有更高的伙伴多样性。在模拟的网络破坏下,这种经验关系极大地减少了共灭,因为最有可能失去互助者的物种最少依赖于其互助者。该模式还降低了网络结构对于稳定性的重要性;模拟结合了伙伴多样性和相互依赖性之间的经验推导关系后,嵌套网络结构对共灭性影响很小。我们的研究结果突出说明了互惠网络中以前未知的稳定性来源,并表明物种之间在其互惠策略而非网络结构方面的差异主要说明了互惠社区的稳定性。

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