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Interaction strengths in balanced carbon cycles and the absence of a relation between ecosystem complexity and stability

机译:平衡碳循环中的相互作用强度以及生态系统复杂性和稳定性之间不存在联系

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摘要

The strength of interactions is crucial to the stability of ecological networks. However, the patterns of interaction strengths in mathematical models of ecosystems have not yet been based upon independent observations of balanced material fluxes. Here we analyse two Antarctic ecosystems for which the interaction strengths are obtained: (1) directly, from independently measured material fluxes, (2) for the complete ecosystem and (3) with a close match between species and ‘trophic groups’. We analyse the role of recycling, predation and competition and find that ecosystem stability can be estimated by the strengths of the shortest positive and negative predator-prey feedbacks in the network. We show the generality of our explanation with another 21 observed food webs, comparing random-type parameterisations of interaction strengths with empirical ones. Our results show how functional relationships dominate over average-network topology. They make clear that the classic complexity-instability paradox is essentially an artificial interaction-strength result.
机译:相互作用的强度对于生态网络的稳定性至关重要。但是,生态系统数学模型中相互作用强度的模式尚未基于对平衡物质通量的独立观察。在这里,我们分析了两个具有相互作用强度的南极生态系统:(1)直接从独立测量的物质通量获得;(2)完整的生态系统;(3)物种与“营养族”紧密匹配。我们分析了回收,捕食和竞争的作用,发现可以通过网络中最短的正面和负面捕食者-猎物反馈的强度来估计生态系统的稳定性。我们用另外21种观察到的食物网展示了我们的解释的一般性,将相互作用强度的随机类型参数与经验强度进行了比较。我们的结果表明,功能关系如何在平均网络拓扑结构中占主导地位。他们清楚地表明,经典的复杂性-不稳定悖论本质上是人为的相互作用强度结果。

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