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Target and non-target impact of systemic insecticides on a polyphagous aphid pest and its parasitoid

机译:全身杀虫剂对多球蚜虫害虫及其寄生虫的目标和非目标影响

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Systemic insecticides are used to control agricultural pests globally and their non-target impact at non-lethal doses on beneficial arthropods has been recognized. We assessed the baseline toxicity of imidacloprid, thiamethoxam and sulfoxaflor-based insecticides on the polyphagous aphid pest, Aphis gossypii (Hemiptera: Aphididae), and their non-target effects on its main parasitoid, Aphidius colemani (Hymenoptera: Braconidae), evaluated by residual contact exposure to the median lethal (LC50), the low lethal (LC20) and the sublethal (LC1) concentrations of the three tested insecticides, earlier estimated for the target pest. The results showed that the LC(50)s for the aphid were 6.4 x 10(-3), 5 x 10(-3), 2.9 x 10(-2) times lower compared to the label concentrations of imidacloprid, thiamethoxam and sulfoxaflor, respectively. LC50 of thiamethoxam caused the highest mortality rate on the parasitoid followed by sulfoxaflor, while imidacloprid had the lowest impact. No significant sublethal effects on reprodution were observed for A. colemani survived to the insecticide exposure. Our findings highlight the importance of case-specific evaluation to optimize pesticide applications in Integrated Pest Management packages taking into account the ecological services provided by biological control agents. (C) 2020 Elsevier Ltd. All rights reserved.
机译:全身杀虫剂用于控制全球农业害虫,并认识到对受益节肢动物上的非致命剂量的非目标撞击。我们评估了吡虫啉和基于磺酰毒剂的基线毒性,硫醚基毒品杀虫剂,Aphis Gossypii(Hemiptera:蚜虫),以及它们对其主要寄生虫,蚜虫的非目标作用,通过残留评估的蚜虫(Hymenoptera:Braconidae)。接触致死(LC50),低致死(LC20)和亚致杀虫剂的含有止致杀虫剂(LC1)浓度的接触暴露,早期估计了靶虫害。结果表明,与咪酰啉代洛普里,硫昔氯醇蛋白和苏氟甲磺酰脲的标记浓度相比,蚜虫的LC(50)S为6.4×10(-3),5×10(-3),2.9×10(-2)倍。 , 分别。噻嗪氧化昔姆的LC50导致帕拉西肝素的最高死亡率,然后是苏比洛洛洛洛洛洛洛洛替洛啉,而胰岛素含量均有最低的影响。对于A. Colemani幸存到杀虫剂暴露中,观察到对繁殖的显着的止血作用。考虑到生物控制剂提供的生态服务,我们的调查结果突出了特定于综合害虫管理包中优化农药应用的重要性。 (c)2020 elestvier有限公司保留所有权利。

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