Managing Resistance Evolution in Two Pests to Two Toxins with Refugia

M. Livingston, G. Carlson, P. Fackler
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引用次数: 53

Abstract

We use a regulatory model with resistance evolution in two pests to insecticidal Bt cotton and pyrethroids (a conventional insecticide) to examine non-Bt cotton (refuge) planting requirements designed to manage Bt-resistance evolution in the midsouth. Our analysis suggests that reduced refuge requirements would enhance producer profitability, sprayed refugia are more cost effective than unsprayed refugia, and producers would receive slightly higher returns under dynamic relative to static refuge policies. Pyrethroid susceptibility in one of the pests was a renewable resource, and toxin-mixture effects associated with pyrethroid use in Bt cotton were important considerations for midsouth refuge policies.
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用避虫法管理两种害虫对两种毒素的抗性进化
我们使用一种具有两种害虫对杀虫Bt棉花和拟除虫菊酯(一种常规杀虫剂)抗性进化的调控模型,来检验旨在管理中南部Bt抗性进化的非Bt棉花(避难所)种植要求。我们的分析表明,减少避难需求将提高生产者的盈利能力,喷洒避难比未喷洒避难更具成本效益,并且相对于静态避难政策,生产者在动态避难政策下获得的回报略高。其中一种害虫对拟除虫菊酯的敏感性是一种可再生资源,与在Bt棉中使用拟除虫菊酯相关的毒素混合效应是中南部避难政策的重要考虑因素。
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Managing Resistance Evolution in Two Pests to Two Toxins with Refugia
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