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水螨对蚊子的寄生和捕食建模。

Modelling parasitism and predation of mosquitoes by water mites.

作者信息

Esteva Lourdes, Rivas Gerardo, Yang Hyun Mo

机构信息

Facultad de Ciencias, UNAM, 04510, México, D.F., Mexico.

出版信息

J Math Biol. 2006 Oct;53(4):540-55. doi: 10.1007/s00285-006-0020-3. Epub 2006 Aug 8.

Abstract

Parasitism and predation are two ecological interactions that can occur simultaneously between two species. This is the case of Culicidae (Insecta: Diptera) and water mites (Acari: Hydrachnidia). The larva mites are~parasites of aquatic and semiaquatic insects, and deutonymphs and adults are predators of insect larvae and eggs. Since several families of water mites are associated with mosquitoes there is an interest in the potential use of these mites as biological control agents. The aim of this paper is to use mathematical modelling and analysis to assess the impact of predation and parasitism in the mosquito population. We propose a system of ordinary differential equations to model the interactions among the larval and adult stages of mosquitoes and water mites. The model exhibits three equilibria: the first equilibrium point corresponds to the state where the two species are absent, the second one to the state where only mosquitoes are present (water mites need insects to complete their life cycle), and the third one is the coexistence equilibrium. We analyze conditions for the asymptotic stability of equilibria, supported by analytical and numerical methods. We discuss the different scenarios that appear when we change the parasitism and predation parameters. High rates of parasitism and moderate predation can drive two species to a stable coexistence.

摘要

寄生和捕食是两种可能在两个物种之间同时发生的生态相互作用。蚊科(昆虫纲:双翅目)和水螨(蛛形纲:水螨目)之间就是这种情况。螨类幼虫是水生和半水生昆虫的寄生虫,而若螨和成螨则以昆虫幼虫和卵为食。由于有几个水螨科与蚊子有关联,因此人们对将这些螨类用作生物防治剂的潜在用途很感兴趣。本文的目的是使用数学建模和分析来评估捕食和寄生对蚊子种群的影响。我们提出了一个常微分方程组来模拟蚊子和水螨幼虫及成虫阶段之间的相互作用。该模型呈现出三种平衡状态:第一个平衡点对应于两个物种都不存在的状态,第二个平衡点对应于仅存在蚊子的状态(水螨需要昆虫来完成其生命周期),第三个平衡点是共存平衡点。我们通过解析和数值方法分析平衡点渐近稳定性的条件。我们讨论了改变寄生和捕食参数时出现的不同情况。高寄生率和适度捕食可促使两个物种稳定共存。

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