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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Specific non-monotonous interactions increase persistence of ecological networks
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Specific non-monotonous interactions increase persistence of ecological networks

机译:特定的非单调相互作用增加了生态网络的持久性

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The relationship between stability and biodiversity has long been debated in ecology due to opposing empirical observations and theoretical predictions. Species interaction strength is often assumed to be monotonically related to population density, but the effects on stability of ecological networks of non-monotonous interactions that change signs have not been investigated previously. We demonstrate that for four kinds of non-monotonous interactions, shifting signs to negative or neutral interactions at high population density increases persistence (a measure of stability) of ecological networks, while for the other two kinds of non-monotonous interactions shifting signs to positive interactions at high population density decreases persistence of networks. Our results reveal a novel mechanism of network stabilization caused by specific non-monotonous interaction types through either increasing stable equilibrium points or reducing unstable equilibrium points (or both). These specific non-monotonous interactions may be important in maintaining stable and complex ecological networks, as well as other networks such as genes, neurons, the internet and human societies.
机译:由于相反的经验观察和理论预测,生态学中一直在讨论稳定性与生物多样性之间的关系。物种相互作用强度通常被认为与种群密度单调相关,但是以前没有研究过改变符号的非单调相互作用对生态网络稳定性的影响。我们证明,对于四种非单调相互作用,在高人口密度下将符号转换为负或中性相互作用会增加生态网络的持久性(稳定性的一种度量),而对于其他两种非单调相互作用,则将符号转换为正相互作用高人口密度下的相互作用减少了网络的持久性。我们的结果揭示了由特定的非单调相互作用类型通过增加稳定平衡点或减少不稳定平衡点(或两者)引起的网络稳定的新机制。这些特定的非单调相互作用对于维护稳定和复杂的生态网络以及其他网络(如基因,神经元,互联网和人类社会)可能非常重要。

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