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Effects of cyantraniliprole, a novel anthranilic diamide insecticide, against Asian citrus psyllid under laboratory and field conditions

机译:在实验室和田间条件下,氰基腈酰胺(一种新型邻氨基苯甲酰胺类杀虫剂)对亚洲柑橘木虱的作用

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BACKGROUND: The Asian citrus psyllid, Diaphorina citri (Hemiptera: Psyllidae), is the most destructive pest of citrus in Florida. The development of insecticide resistance in several populations of D. citri has been documented. There is an urgent need to develop and integrate novel tools for the successful management of D. citri and also to prevent the development of insecticide resistance. RESULTS: The effects of a relatively newer chemistry, cyantraniliprole, against D. citri were investigated. The contact toxicity of cyantraniliprole was 297-fold higher against D. citri than its primary parasitoid, Tamarixia radiata (Hymenoptera: Eulophidae). D. citri settled and fed less on cyantraniliprole-treated plants than controls at concentrations as low as 0.025 and 0.125 μg Al mL~(-1) respectively. D. citri egg production, first-instar emergence and adult emergence were significantly reduced on plants treated with 0.25, 0.02 and 0.25 μg Al mL~(-1) of cyantraniliprole, respectively, when compared with control plants. Under field conditions, foliar and drench treatments with cyantraniliprole (1436.08 g ha~(-1)) reduced numbers of D. citri adults and nymphs, as well as of a secondary pest, citrus leafminer, Phyllocnistis citrella (Lepidoptera: Gracillariidae), more than a standard insecticide. CONCLUSIONS: These results suggest that cyantraniliprole should be a valuable new tool for rotation into D. citri management programs. For insecticide resistance management, cyantraniliprole may be particularly useful for rotation with neonicotinoids. In addition, cyantraniliprole was much less toxic to T. radiata than to D. citri and thus may have less impact on biological control than other currently used broad-spectrum insecticides, such as organophosphates and pyrethroids.
机译:背景:亚洲柑橘木虱,Diophina citri(Hemiptera:Psyllidae),是佛罗里达州柑橘最具破坏性的害虫。已有文献记载在几个柠檬果蝇中产生了抗药性。迫切需要开发和集成新颖的工具,以成功地管理柑橘D. citri,并防止产生抗药性。结果:研究了一种相对较新的化学药品氰基氰基丙烯腈对柑橘D. citri的影响。氰基丙腈对柠檬酸二乙酯的接触毒性比其主要的寄生寄生物Ta柳(膜翅目:Eulophidae)高297倍。分别以低至0.025和0.125μgAl mL〜(-1)的浓度,在氰基氰基丙烯腈处理过的植物上定殖和饲喂的柠檬黄粉少于对照。与对照植物相比,分别用0.25、0.02和0.25μgAl mL〜(-1)氰基腈的处理后,柠檬果蝇的产卵量,初生期和成年期显着降低。在田间条件下,用氰基氰基丙烯腈(1436.08 g ha〜(-1))进行叶面和淋雨处理可减少柠檬果蝇(D. citri)成虫和若虫以及次生害虫柑桔类除草剂Phyllocnistis citrella(鳞翅目::科)的数量,更多比标准的杀虫剂结论:这些结果表明,氰基氰基丙烯腈应该成为轮替转入柠檬控制管理程序的有价值的新工具。对于杀虫剂的抗性管理,氰基新腈对与新烟碱类一起旋转可能特别有用。此外,氰基苯丙腈对放射线虫的毒性要比对桔梗线虫的毒性小得多,因此,与其他目前使用的广谱杀虫剂(如有机磷酸盐和拟除虫菊酯)相比,其对生物防治的影响较小。

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