首页> 外文期刊>Journal of entomology >Mortality and GST Enzyme Response of Saw-toothed Grain Beetles, Oryzaephilus surinamensis (Coleoptera: Silvanidae) Exposed to Low Insecticide Concentrations
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Mortality and GST Enzyme Response of Saw-toothed Grain Beetles, Oryzaephilus surinamensis (Coleoptera: Silvanidae) Exposed to Low Insecticide Concentrations

机译:暴露于低浓度杀虫剂的锯齿状甲虫(Oryzaephilus surinamensis(Coleoptera:Silvanidae))的死亡率和GST酶响应

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The saw-toothed grain beetle, Oryzaephilus surinamensis is a cosmopolitan insect pest that attacks stored grains and dried fruits, causing damage to stored dates in the United Arab Emirates (UAE). Stored dates may contain insecticide residues as a result of insecticide field applications and it is of interest to know the effect of insecticide residues on O. surinamensis . The aim of this study was to evaluate mortality among O. surinamensis adults exposed to residual levels of the insecticides carbosulfan, chlorpyrifos, cypermethrin, imidacloprid, malathion and spinosad which are commonly used on date palm trees in the UAE. Also to evaluate the Glutathione S-Transferase (GST) enzyme activity in the O. surinamensis adults exposed to insecticides. Adults of O. surinamensis were subjected to petri dish insecticide bioassays. Low insecticide concentrations, simulating field residues, were tested and the range of 0.713-3.31 g mL-1 caused 50% mortality. Chlorpyrifos was the most toxic insecticide while cypermethrin was the least toxic. In addition to effect on mortality, insecticide exposure caused induction in GST enzyme activity in O. surinamensis adults. Because elevated GST enzyme activity can play a role in the detoxification of insecticides and in the development of insecticide metabolic resistance in insects it is likely to have a similar role in O. surinamensis population.
机译:锯齿状甲虫Oryzaephilus surinamensis是一种世界性的虫害,它攻击储存的谷物和干果,从而破坏了阿拉伯联合酋长国(UAE)的储存日期。由于在田间施用杀虫剂,储存的枣可能含有杀虫剂残留物,因此有兴趣了解杀虫剂残留物对苏里南稻的影响。这项研究的目的是评估在阿联酋枣椰树上普遍使用的杀虫剂残留量为碳硫丹,毒死rif,氯氰菊酯,吡虫啉,马拉硫磷和多杀菌素残留水平的苏里南稻成年人的死亡率。还评估了暴露于杀虫剂的苏里南稻中谷胱甘肽S-转移酶(GST)的酶活性。 surinamensis的成虫进行了培养皿杀虫剂生物测定。测试了低农药浓度,模拟了田间残留物,0.713-3.31 g mL-1的范围导致了50%的死亡率。毒死rif是毒性最高的杀虫剂,而氯氰菊酯的毒性最低。除了对死亡率的影响外,杀虫剂的暴露还导致苏里南稻成虫的GST酶活性被诱导。因为升高的GST酶活性可以在杀虫剂的解毒和昆虫中杀虫剂代谢抗性的发展中发挥作用,所以它可能在苏里南稻草种群中具有类似的作用。

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