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分叉和 Hydra 效应对 Bazykin 的捕食者-被捕食者模型的影响。

Bifurcations and hydra effects in Bazykin's predator-prey model.

机构信息

Department of Mathematics, National Institute of Technology Meghalaya, Bijni Complex, Shillong 793003, Meghalaya, India.

Department of Mathematics, Indian Institute of Technology Indore, Khandwa Road, Simrol, Indore 453552, Madhya Pradesh, India.

出版信息

Theor Popul Biol. 2021 Aug;140:44-53. doi: 10.1016/j.tpb.2021.05.002. Epub 2021 May 27.

Abstract

We consider Bazykin's model to address harvesting induced stability exchanges through bifurcation analysis. We examine the existence of hydra effects and analyze the stock pattern under predator harvesting. Prey harvesting cannot produce hydra effects in our model, whereas predator harvesting may cause multiple hydra effects. Our study reveals that type II response function and mutual interference among predators jointly induce multiple hydra effects and bistability. Bifurcations such as single Hopf-bifurcation, multiple Hopf-bifurcations and multiple saddle-node bifurcations appear for increasing harvesting rate on the predators. However, over-exploitation of the predators cannot generate any such bifurcation in our study. In simulations, the maximum sustainable yield (MSY) exists at a globally stable state. When predator is culled under increasing effort, basin of attraction of the equilibrium corresponding to the higher predator stock gets expanded, which alternatively is in favor of stock benefit for predators. The ecological theory developed in this study might be useful to understand conservation policy and fishery management.

摘要

我们考虑使用 Bazykin 的模型通过分岔分析来解决收获引起的稳定性交换问题。我们研究了九头蛇效应的存在,并分析了在捕食者收获下的种群模式。在我们的模型中,猎物收获不会产生九头蛇效应,而捕食者收获可能会导致多种九头蛇效应。我们的研究表明,二阶响应函数和捕食者之间的相互干扰共同导致了多种九头蛇效应和双稳性。随着捕食者收获率的增加,会出现单 Hopf 分岔、多 Hopf 分岔和多鞍结分岔等分岔。然而,在我们的研究中,过度捕捞捕食者不会产生任何此类分岔。在模拟中,最大可持续产量 (MSY) 存在于全局稳定状态。当捕食者在增加的努力下被清除时,对应于较高捕食者种群的平衡点的吸引域会扩大,这有利于捕食者的种群利益。本研究中发展的生态理论可能有助于理解保护政策和渔业管理。

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