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Loss of functionally unique species may gradually undermine ecosystems

机译:功能上独特的物种的丧失可能会逐渐破坏生态系统

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摘要

Functionally unique species contribute to the functional diversity of natural systems, often enhancing ecosystem functioning. An abundance of weakly interacting species increases stability in natural systems, suggesting that loss of weakly linked species may reduce stability. Any link between the functional uniqueness of a species and the strength of its interactions in a food web could therefore have simultaneous effects on ecosystem functioning and stability. Here, we analyse patterns in 213 real food webs and show that highly unique species consistently tend to have the weakest mean interaction strength per unit biomass in the system. This relationship is not a simple consequence of the interdependence of both measures on body size and appears to be driven by the empirical pattern of size structuring in aquatic systems and the trophic position of each species in the web. Food web resolution also has an important effect, with aggregation of species into higher taxonomic groups producing a much weaker relationship. Food webs with fewer unique and less weakly interacting species also show significantly greater variability in their levels of primary production. Thus, the loss of highly unique, weakly interacting species may eventually lead to dramatic state changes and unpredictable levels of ecosystem functioning.
机译:功能上独特的物种有助于自然系统的功能多样性,通常会增强生态系统的功能。大量弱相互作用的物种增加了自然系统的稳定性,这表明弱连接物种的丧失可能会降低稳定性。一个物种的功能独特性及其在食物网上的相互作用强度之间的任何联系都可能同时对生态系统的功能和稳定性产生影响。在这里,我们分析了213个真实食物网中的模式,并显示出高度独特的物种始终倾向于在系统中每单位生物量的平均相互作用强度最弱。这种关系不是两种方法对身体大小的相互依赖的简单结果,并且似乎受水生系统中大小结构的经验模式以及网中每个物种的营养位置的驱动。食物网的解析也具有重要作用,物种聚集到较高的分类组中会产生弱得多的关系。具有较少独特性和较弱相互作用的物种的食物网在其初级生产水平上也显示出明显更大的可变性。因此,丧失高度独特的,相互作用力弱的物种可能最终导致剧烈的状态变化和不可预测的生态系统功能水平。

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