Maser Gabriel L, Guichard Frédéric, McCann Kevin S
Biology Department, McGill University, 1205 Dr Penfield, Montreal, Que., Canada H3A1B1.
J Theor Biol. 2007 Jul 21;247(2):337-45. doi: 10.1016/j.jtbi.2007.03.003. Epub 2007 Mar 7.
Weak trophic interactions have been shown to promote the stability of ecological food webs characterized by perfect mixing. However, their importance at the landscape level and response to enrichment has not been extensively examined. In this paper we examine the food-web model explored by McCann et al. [1998. Weak trophic interactions and the balance of nature. Nature 395, 794-798]. The model is expanded into a metacommunity construct where local communities are coupled through global or local dispersal. We analyze global and local stability, as well as spatial synchrony in relation to trophic interaction strength and dispersal regimes. Results reveal that weak interactions can operate through two scale-dependent mechanisms: (i) under low local dispersal regimes, local stabilization of each community under weak interactions directly scales-up to global stability. (ii) Under high local dispersal, asynchronous local destabilization associated with weak interactions proves the driver behind global stability. In the face of enrichment, weak trophic interactions are shown to be instrumental in promoting global stability when dispersal is local. These results demonstrate how the importance of weak trophic interactions can be generalized at the landscape level despite contrary local predictions.
弱营养级相互作用已被证明能促进以完全混合为特征的生态食物网的稳定性。然而,它们在景观层面的重要性以及对富营养化的响应尚未得到广泛研究。在本文中,我们研究了麦肯等人[1998年。弱营养级相互作用与自然平衡。《自然》395, 794 - 798]所探索的食物网模型。该模型被扩展为一个集合群落结构,其中局部群落通过全局或局部扩散相互耦合。我们分析了与营养级相互作用强度和扩散模式相关的全局和局部稳定性,以及空间同步性。结果表明,弱相互作用可通过两种尺度依赖机制起作用:(i) 在低局部扩散模式下,弱相互作用下每个群落的局部稳定性直接扩展为全局稳定性。(ii) 在高局部扩散情况下,与弱相互作用相关的异步局部失稳被证明是全局稳定性背后的驱动因素。面对富营养化,当扩散是局部的时候,弱营养级相互作用被证明有助于促进全局稳定性。这些结果表明,尽管局部预测相反,但弱营养级相互作用的重要性如何能在景观层面得到推广。