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Stability switching and hydra effect in a predator-prey metapopulation model

机译:捕食者 - 猎物比例模型中的稳定性切换和氢化效应

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摘要

A metapopulation model is investigated to explore how the spatial heterogeneity affects predator-prey interactions. A Rosenzweig-MacArthur (RM) predator-prey model with dispersal of both the prey and predator is formulated. We propose such a system as a well mixed spatial model. Here, partially mixed spatial models are defined in which the dispersal of only one of the communities (prey or predator) is considered. In our study, the spatial heterogeneity is induced by dissimilar (unbalanced) dispersal rates between the patches. A large difference between the predator dispersal rates may stabilize the unstable positive equilibrium of the model. The existence of two ecological phenomena are found under independent harvesting strategy: stability switching and hydra effect. When prey or predator is harvested in a heterogenious environment, a positive stable steady state becomes unstable with increasing the harvesting effort, and a further increase in the effort leads to a stable equilibrium. Thus, a stability switching happens. Furthermore, the predator biomass (at stable state) in both the patches (and hence total predator stock) increases when the patch with a higher predator density is harvested; resulting a hydra effect. These two phenomena do not occur in the non-spatial RM model. Hence, spatial heterogeneity induces stability switching and hydra effect.
机译:研究了比例模型,探讨空间异质性如何影响捕食者 - 猎物交互。制定了具有猎物和捕食者的分散剂的RosenzWeig-Macarthur(RM)捕食者 - 猎物模型。我们提出这种系统作为一个良好的混合空间模型。这里,定义部分混合的空间模型,其中考虑仅考虑一个社区(猎物或捕食者)的分散。在我们的研究中,空间异质性被贴剂之间的不同(不平衡)分散率诱导。捕食者分散率之间的巨大差异可以稳定模型的不稳定正平平衡。在独立收集策略下发现了两种生态现象:稳定性切换和Hydra效应。当在异源环境中收获猎物或捕食者时,随着增加的收获努力,正稳定的稳态变得不稳定,并且努力进一步增加导致稳定的平衡。因此,稳定性切换发生。此外,当收获具有更高捕食剂密度的贴片时,贴片(并因此总捕食者股票的稳定状态)在诸如诸如捕获剂密度较高的贴剂时增加;产生湿润的效果。在非空间RM模型中不会发生这两个现象。因此,空间异质性诱导稳定性切换和氢汁效应。

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