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Targeting the life cycle stages of the Diamond Black Moth (Plutella Xylostella) with three different parasitoid wasps

机译:针对三种不同寄生蜂的钻石黑蛾(plutella Xylostella)的生命周期阶段

摘要

A continuous time model of the interaction between crop insect pests and naturally beneficial pest enemies is created using a set of simultaneous, non-linear, ordinary differential equations incorporating natural death rates based on the Weibull distribution. The crop pest is present in all its life-cycle stages of: egg, larva, pupa and adult. The beneficial insects, parasitoid wasps, may be present in either or all parasitized: eggs, larva and pupa. Population modelling is used to estimate the quantity of the natural pest enemies that should be introduced into the pest infested environment to suppress the pest population density to an economically acceptable level within a prescribed number of days. The results obtained illustrate the effect of different combinations of parasitoid wasps, using the Pascal distribution to estimate their success in parasitizing different pest developmental stages, to deliver pest control to a sustainable level. Effective control, within a prescribed number of days, is established by the deployment of two or all three species of wasps, which partially destroy pest: egg, larvae and pupae stages. The selected scenarios demonstrate effective sustainable control of the pest in less than thirty days.
机译:使用一组同时,非线性,基于Weibull分布的自然死亡率的常微分方程,建立了农作物害虫与自然有益害虫敌人之间相互作用的连续时间模型。作物害虫存在于其所有生命周期阶段:卵,幼虫,和成虫。寄生虫,卵,幼虫和中都可能存在有益昆虫,即寄生蜂。种群建模用于估算应引入有害生物侵染环境中的自然有害生物敌人的数量,以在规定的天数内将有害生物种群密度抑制到经济上可接受的水平。所获得的结果说明了不同组合的类寄生蜂的效果,使用帕斯卡分布来估计它们在寄生不同害虫发育阶段的成功,从而将害虫控制达到可持续水平。通过部署两种或所有三种黄蜂,可以在规定的天数内进行有效控制,这些黄蜂会部分破坏害虫:卵,幼虫和p阶段。所选方案证明了在不到三十天的时间内对有害生物进行了有效的可持续控制。

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