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United States Department of Agriculture - Agricultural Research Service Research on managing insect resistance to insecticides

机译:美国农业部-农业研究服务局,研究昆虫对杀虫剂的抗药性

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Insecticide resistance has developed within many classes of pesticide, and over 500 species of insects and mites are resistant to one or more insecticides. Insecticide resistance and the consequent losses of food and fiber caused by failure to control insect and mite pests causes economic losses of several billion dollars worldwide each year. It is the goal of insect resistance management (IRM) to preserve useful pesticides by slowing, preventing or reversing development of resistance in pests. Important aspects of this goal are understanding the development of resistance and monitoring to determine ways to prevent its development. We describe programs specific to missions of the US Department of Agriculture, Agricultural Research Service, which are designed to characterize insecticide resistance in insects and mites with the goal of managing pests in an ecologically acceptable manner. Resistance management of cotton, potatoes, vegetables, melons, ornamentals, greenhouse crops, corn, stored grains, livestock, honeybees and mites, as well as management of transgenic crops are evaluated. We conclude that IRM is a vital part of stewardship of any pest management product and must be a combined effort of manufacturers, growers, consultants, extension services and grower organizations, working closely with regulators, to achieve logistically and economically feasible systems that prolong the effectiveness of all pest-control products.
机译:杀虫剂的抗性在许多种类的杀虫剂中得到发展,并且超过500种昆虫和螨虫对一种或多种杀虫剂具有抗性。由于无法控制昆虫和螨虫害虫而导致的抗杀虫剂以及随之而来的食物和纤维损失在全世界每年造成数十亿美元的经济损失。昆虫抗性管理(IRM)的目标是通过减缓,防止或逆转害虫的抗性发展来保存有用的农药。该目标的重要方面是了解抗药性的发展并进行监测以确定防止其发展的方法。我们描述了特定于美国农业部农业研究局任务的计划,该计划旨在表征昆虫和螨虫的抗药性,目的是以生态学上可接受的方式管理害虫。评估了棉花,土豆,蔬菜,瓜,观赏植物,温室作物,玉米,储粮,牲畜,蜜蜂和螨虫的抗性管理以及转基因作物的管理。我们得出的结论是,IRM是任何害虫管理产品管理的重要组成部分,必须是制造商,种植者,顾问,推广服务和种植者组织与监管机构紧密合作的共同努力,以实现可在逻辑和经济上可行的系统,从而延长有效性所有害虫防治产品。

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