Arnoldi J-F, Loreau M, Haegeman B
Centre for Biodiversity Theory and Modelling, Station d,Écologie Expérimentale du CNRS, 2 route du CNRS, 09200 Moulis, France.
Centre for Biodiversity Theory and Modelling, Station d,Écologie Expérimentale du CNRS, 2 route du CNRS, 09200 Moulis, France.
J Theor Biol. 2016 Jan 21;389:47-59. doi: 10.1016/j.jtbi.2015.10.012. Epub 2015 Nov 2.
In theoretical studies, the most commonly used measure of ecological stability is resilience: ecosystems asymptotic rate of return to equilibrium after a pulse-perturbation -or shock. A complementary notion of growing popularity is reactivity: the strongest initial response to shocks. On the other hand, empirical stability is often quantified as the inverse of temporal variability, directly estimated on data, and reflecting ecosystems response to persistent and erratic environmental disturbances. It is unclear whether and how this empirical measure is related to resilience and reactivity. Here, we establish a connection by introducing two variability-based stability measures belonging to the theoretical realm of resilience and reactivity. We call them intrinsic, stochastic and deterministic invariability; respectively defined as the inverse of the strongest stationary response to white-noise and to single-frequency perturbations. We prove that they predict ecosystems worst response to broad classes of disturbances, including realistic models of environmental fluctuations. We show that they are intermediate measures between resilience and reactivity and that, although defined with respect to persistent perturbations, they can be related to the whole transient regime following a shock, making them more integrative notions than reactivity and resilience. We argue that invariability measures constitute a stepping stone, and discuss the challenges ahead to further unify theoretical and empirical approaches to stability.
在理论研究中,生态稳定性最常用的衡量指标是恢复力:生态系统在脉冲扰动或冲击后渐近恢复到平衡的速率。一个越来越受欢迎的补充概念是反应性:对冲击的最强初始响应。另一方面,经验稳定性通常被量化为时间变异性的倒数,直接根据数据进行估计,并反映生态系统对持续和不稳定环境干扰的响应。目前尚不清楚这种经验性衡量指标是否以及如何与恢复力和反应性相关。在此,我们通过引入两种基于变异性的稳定性衡量指标建立了一种联系,这两种指标属于恢复力和反应性的理论范畴。我们将它们称为内在、随机和确定性不变性;分别定义为对白噪声和单频扰动的最强稳态响应的倒数。我们证明,它们能够预测生态系统对广泛类别的干扰的最差响应,包括环境波动的现实模型。我们表明,它们是恢复力和反应性之间的中间衡量指标,并且尽管是针对持续扰动定义的,但它们可以与冲击后的整个瞬态过程相关联,这使得它们比反应性和恢复力更具综合性。我们认为不变性衡量指标是一块垫脚石,并讨论了进一步统一稳定性的理论和实证方法面临的挑战。