Field-Evolved Resistance and Cross-Resistance of BrazilianTuta absoluta(Lepidoptera: Gelechiidae) Populations to Diamide Insecticides

绝对图塔 剑鱼科 生殖器鳞翅目 有害生物分析 生物 交叉电阻 抗药性 毒理 病虫害防治 生物技术 植物 农学 遗传学
作者
Jefferson E. Silva,Carla Patrícia Oliveira de Assis,Lílian Maria da Solidade Ribeiro,Herbert A.A. Siqueira
出处
期刊:Journal of Economic Entomology [Oxford University Press]
卷期号:109 (5): 2190-2195 被引量:69
标识
DOI:10.1093/jee/tow161
摘要

Tuta absoluta (Meyrick), one of the most important tomato pests worldwide, is heavily controlled by the application of insecticides. Diamide insecticides represent a new class of products recently registered to control T. absoluta . After 6 yr of use, control failures have been reported in populations of this pest, suggesting a hypothetical resistance development. Therefore, a resistance survey was performed using nine populations of T. absoluta that were collected in open fields, including from areas with reports of a reduced efficacy of diamides in the Northeast and Central regions of Brazil. Initial surveys with diagnostic and label doses proved the reduced efficacy of diamides against most populations. The LC 50 values of chlorantraniliprole varied from 0.0044 (Brasília) to 1,263 (América Dourada) mg AI liter −1 (the resistance ratios [RR 50 ] ranged from 1.0- to 288,995-fold), whereas the LC 50 values for cyantraniliprole and flubendiamide, respectively, varied from 0.015 (Brasília) to 281 (América Dourada) mg AI liter −1 and from 0.038 (Guaraciaba do Norte) to 3,018 (Gameleira 1) mg AI liter −1 . The resistance ratios (RR 50 ) ranged from 1.0- to 18,423-fold for cyantraniliprole and from 1.0- to 80,413-fold for flubendiamide. The log LC 50 values of pairwise diamides were strongly and significantly correlated, which denoted cross-resistance among them. Very high resistance to diamides in T. absoluta was observed in this study, suggesting that strategies to mitigate resistance and thereby control the pest must not include only insecticides. Other control tactics must be carefully implemented over time to increase the life span of diamides, including rotational practices with other molecules.
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