桃薯蚜酯酶、MACE和kdr抗性田间模拟研究

S. Foster, A. Devonshire
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引用次数: 26

摘要

以田间模拟网箱中生长的寄主植物为支撑,对携带3种不同抗性机制(酯酶代谢抗性和MACE和kdr两种靶点抗性机制)的桃蚜(Myzus persicae, Sulzer)种群进行了杀虫剂喷洒。研究表明,MACE对吡乐威和三嗪酯(氨基甲酸酯类杀虫剂)具有极强的抗性,但对溴氰菊酯+七磷(16 + 1)(Decisquick)或乐果(一种有机磷杀虫剂)则没有。对乐果的耐药仅取决于酯酶基础的耐药水平,而对Decisquick的耐药取决于kdr和酯酶。这四种杀虫剂对携带MACE的蚜虫没有一种有效,而且这些蚜虫具有极强的酯酶抗性。这一知识与目前对机制的监测相结合,将在英国制定针对桃蚜的杀虫剂使用决策中发挥重要作用。©1999化学工业学会
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Field-simulator study of insecticide resistance conferred by esterase-, MACE- and kdr-based mechanisms in the peach-potato aphid, Myzus persicae (Sulzer)
Insecticide sprays were applied to Myzus persicae (Sulzer) populations carrying various combinations of three insecticide resistance mechanisms (esterase-based metabolic resistance and two target site mechanisms, known as MACE and kdr), supported on host plants growing in field simulator cages. The study showed that MACE confers extreme resistance to pirimicarb and triazamate (carbamate insecticides) but not to deltamethrin + heptenophos (16 + 1) (Decisquick) or dimethoate (an organophosphorus insecticide). Resistance to dimethoate depends solely on levels of esterase-based resistance, while resistance to Decisquick depends on kdr and esterase. None of the four insecticides is effective against aphids carrying MACE combined with extreme esterase-based resistance. This knowledge, in association with current monitoring of the mechanisms, will play an important role in making decisions on insecticide use against M persicae in the UK. © 1999 Society of Chemical Industry
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