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Role of neonicotinyl insecticides in Washington apple integrated pest management. Part I. Control of lepidopteran pests

机译:新烟碱类杀虫剂在华盛顿苹果综合害虫管理中的作用。第一部分。鳞翅目害虫的防治

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摘要

Three neonicotinyl insecticides, acetamiprid, thiacloprid and clothianidin, were evaluated for their impact on four species of lepidopteran pests of apple in Washington, the codling moth, Cydia pomonella (L.), the Pandemis leafroller, Pandemis pyrusana Kearfott, and the obliquebanded leafroller, Choristoneura rosaceana (Harris), and Lacanobia subjuncta (Grote & Robinson). None of the neonicotinyl insecticides demonstrated sufficient activity against P. pyrusana, C. rosaceana, or L. subjuncta to warrant field trials. Conversely, all had some activity against one or more stages of C. pomonella. Acetamiprid was highly toxic to larvae in laboratory bioassays, and had relatively long activity of field-aged residues (21 days). It also showed some toxicity to C. pomonella eggs (via topical exposure) and adults. Acetamiprid provided the highest level of fruit protection from C. pomonella attack in field trials conducted over five years in experimental orchards with extremely high codling moth pressure. Thiacloprid performed similarly in bioassays, but fruit protection in field trials was slightly lower than acetamiprid. Clothianidin showed moderate to high toxicity in bioassays, depending on the C. pomonella stage tested, but poor fruit protection from attack in field trials. None of the neonicotinyl insecticides were as toxic to larvae or effective in protecting fruit as the current standard organophosphate insecticide used for C. pomonella control, azinphosmethyl. However, both acetamiprid and thiacloprid should provide acceptable levels of C. pomonella control in commercial orchards where densities are much lower than in the experimental orchards used for our trials. The advantages and disadvantages of the neonicotinyl insecticides as replacements for the organophosphate insecticides and their role in a pest management system for Washington apple orchards are discussed.
机译:评估了三种新烟碱杀虫剂对乙酰氨基酚,噻虫啉和噻虫胺对华盛顿州苹果的四种鳞翅目害虫,the蛾,Cydia pomonella(L。),Panddemis卷叶虫,Pandemis pyrusana Kearfott和斜带卷叶虫的影响,酒渣鼻(Choristoneura rosaceana)(哈里斯)和拉卡诺比亚(Lacanobia subjuncta)(格罗特和鲁宾逊)。新烟碱类杀虫剂均未显示出对P. pyrusana,C。rosaceana或L. subjuncta足够的活性,值得现场试验。相反,所有人都对一个或多个阶段的波氏梭菌具有一定的活性。在实验室生物测定中,乙et啶对幼虫具有高毒性,并且在田间老化的残留物中具有相对较长的活性(21天)。它还显示了对肺炎衣原体卵(通过局部暴露)和成虫的某些毒性。在五年中对苹果co蛾压力极高的试验果园进行的田间试验中,对et虫提供了最高水平的水果保护,使其免受Pomonella C. pomonella侵袭。噻虫啉在生物测定中的表现相似,但在田间试验中对水果的保护作用略低于乙草胺。氯噻菌胺在生物分析中显示中等至高毒性,这取决于所测试的波氏梭菌阶段,但在田间试验中,果实对攻击的保护性较差。新烟碱类杀虫剂对幼虫的毒性或对水果的保护作用均不如目前用于控制小球藻的标准有机磷杀虫剂谷硫磷。但是,在密度比我们实验所用的实验性果园低得多的商业果园中,对乙酰氨基酚和噻虫啉都应提供可接受的猪肺炎梭菌水平。讨论了新烟碱类杀虫剂替代有机磷类杀虫剂的优缺点及其在华盛顿苹果园害虫管理系统中的作用。

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