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Effect of prey-taxis on biological control of the two-spotted spider mite: a numerical approach

机译:猎物对双斑叶螨生物防治的影响:数值方法

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摘要

This study concerns the interactions of the two-spotted spider mite Tetranychus urticae and its predator Phytoseiulus persimilis. The logistic Lotka-Volterra predator-prey-taxis equations with diffusion and advection are solved numerically using two different response functions with one data set. The aim of this paper is to re-estimate parameters by using prey-taxis in the predator-prey system and to achieve successful biological control using prey-taxis. We show that both response functions and initial conditions have major contributions in biological control of the prey population. We also show that it is possible to achieve successful biological control in space over a longer time-scale with prey population density below the economic threshold provided the predator population density is at least twice that of the prey during most of the time.
机译:这项研究涉及到两个斑点的红蜘蛛Tetranychus urticae和其捕食者Phytoseiulus persimilis的相互作用。使用带有一个数据集的两个不同的响应函数,对具有扩散和对流的逻辑Lotka-Volterra捕食者-食饵-出租车方程进行数值求解。本文的目的是通过在捕食者-被捕食者系统中使用被捕食者来重新估计参数,并使用被捕食者来实现成功的生物控制。我们表明响应功能和初始条件都对捕食种群的生物控制有重大贡献。我们还表明,只要捕食者的种群密度在大多数情况下至少是猎物种群密度的两倍,就可以在更长的时间范围内实现成功的空间生物防治,使猎物种群密度低于经济阈值。

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