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MODELLING SELECTION FOR RESISTANCE TO METHODS OF INSECT PEST CONTROL IN COMBINATION

机译:抗病虫害综合防治方法的模型选择

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摘要

The development of resistance to insecticides is now widespread among insects. Other methods of pest control are also potentially at risk of encountering resistance. A modelling approach is presented here to evaluate the effects of combining methods of insect pest control on the selection for resistance to the control methods. This analysis is based on partitioning the total mortality acting on a population into its constituent components from all known sources, and these are related to selection for resistance. When two control methods are used in combination, selection for resistance against the two is a linear function if the two don't interact, otherwise it may be sublinear or supralinear. A specific example is presented using a model of the Olive fruit fly (Dacus oleae Gmel.) and employing food-baited and pheromone-baited traps for control. The control methods that appear least likely to encounter resistance are natural enemies and the use of pheromone traps for male annihilation. These should be integrated into a control program where possible to minimize the development of resistance to other control methods being used.
机译:现在,对昆虫的抗药性发展十分普遍。其他害虫防治方法也可能面临抗药性的风险。这里提出了一种建模方法,以评估虫害防治组合方法对选择抗病方法的效果。这项分析是基于将所有人口的总死亡率划分成来自所有已知来源的组成部分,这些都与抗药性的选择有关。当两种控制方法结合使用时,如果两者不相互作用,则针对两者的电阻选择将是线性函数,否则可能是亚线性或超线性的。使用橄榄果蝇(Dacus oleae Gmel。)的模型,并以食物诱饵和信息素诱饵的诱捕器为对照,给出了一个具体的例子。似乎最不可能遇到抗药性的控制方法是天敌,并使用信息素陷阱诱捕男性。应将它们集成到控制程序中,以尽可能减少对所使用的其他控制方法的抵抗力。

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