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Lethal and sublethal activities of imidacloprid contribute to control of adult Japanese beetle in blueberries

机译:吡虫啉的致死和致死活性有助于控制蓝莓中的成年日本甲虫

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Field-based bioassays and residue profile analysis were used to determine the relative importance of lethal and sublethal effects of imidacloprid on adult Japanese beetle, Popillia japonica Newman, in blueberries, Vaccinium corymbosum L. Field-based bioassays assessed adult mortality and knockdown, and fruit and leaf injury from Japanese beetles exposed to 4-h and 7-d field-aged residues of imidacloprid, and the conventional insecticides azinphosmethyl and esfenvalerate. Azinphosmethyl and imidacloprid caused high levels of mortality when beetles were exposed to blueberry shoots with ripe fruit 4 h postapplication, and all compounds protected blueberry fruit and foliage from beetle feeding. Azinphosmethyl and esfenvalerate caused significant Japanese beetle mortality when adults were exposed to blueberry shoots 7 d postapplication, whereas imidacloprid residues caused effects that protected leaves, although not of ripe fruit. When beetles were exposed to shoots with immature green fruit, relatively more leaf feeding and mortality were observed, suggesting that earlier treatment timings may be most effective for systemic neonicotinoids. Japanese beetle mortality was highly correlated with imidacloprid fruit and leaf surface residues, whereas sublethal feeding deterrent effects were observed after the surface residues diminished. The value of the plan t-insect-chemistry model for describing the spatial and temporal dimensions of insecticide modes of activity is discussed in terms of optimizing crop protection.
机译:基于野外的生物测定和残留物谱分析用于确定吡虫啉对蓝莓,越桔越橘中成虫,日本甲虫Popillia japonica Newman的致死和致死作用的相对重要性。基于野外的生物测定评估了成年人的死亡率和击倒率以及水果暴露于吡虫啉4 h和7 d田间老化残留物的日本甲虫以及常规杀虫剂谷硫磷和艾芬戊酸酯的叶片和叶片损伤。当甲虫在施用成熟果后4小时暴露于蓝莓芽中时,Azinphosmethyl和吡虫啉会导致较高的死亡率,并且所有化合物都可以保护蓝莓果实和叶子免受甲虫摄食。当成年人在施用后7 d暴露于蓝莓苗中时,Azinphosmethyl和esfenvalerate会导致日本甲虫的严重死亡,而吡虫啉残留物却能起到保护叶子的作用,尽管不是成熟果实。当甲虫暴露于未成熟的绿色水果的芽时,观察到相对较多的叶片取食和死亡率,这表明较早的治疗时机对于系统性新烟碱可能是最有效的。日本甲虫死亡率与吡虫啉果实和叶片表面残留高度相关,而在表面残留减少后,观察到了亚致死的摄食威慑作用。计划t-昆虫化学模型用于描述杀虫剂活动模式的时空尺度的价值,从优化作物保护的角度进行了讨论。

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