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甲硫氨酸作为一种安全有效的新型生物理性蚊子幼虫杀虫剂。

Methionine as a safe and effective novel biorational mosquito larvicide.

机构信息

Entomology and Nematology Department, University of Florida, Gainesville, Florida, USA.

School of Forest Resources and Conservation, University of Florida, Gainesville, Florida, USA.

出版信息

Pest Manag Sci. 2019 Feb;75(2):346-355. doi: 10.1002/ps.5118. Epub 2018 Sep 6.

Abstract

BACKGROUND

Mosquito larvicides provide a source-reduction strategy to diminish adult females that bite and potentially spread pathogens. Demands are mounting for new and innovative effective biorational larvicides, due to the development of resistance to some currently utilized mosquito larvicides, undesirable non-target effects, and US Environmental Protection Agency (EPA) restrictions. Methionine is a human nutrient essential amino acid that unexpectedly has been shown to be a valuable safe pest management tool against select insect pests that possess alkaline gut physiology. The present study evaluated larvicidal toxicity of methionine in several pestiferous mosquito (Diptera: Culicidae) genera.

RESULTS

Concentration-dependent DL-methionine kinetics assays of survival and pupation were conducted in larvae of Aedes albopictus Skuse, Anopheles quadrimaculatus Say, and Culex tarsalis Coquillett in glass jars. High concentrations of DL-methionine yielded 100% mortality for all test species and prevented pupation at a rate equivalent to Bacillus thuringiensis israelensis (Bti) treatments. Concentration kinetics indicated that An. quadrimaculatus was 10-fold more sensitive to DL-methionine than Ae. albopictus and Cx. tarsalis.

CONCLUSIONS

EPA regulations currently exempt methionine in pesticide formulations applied to agricultural crops. This study demonstrates that methionine is a highly effective mosquito larvicide that can provide a beneficial new biorational, environmentally sustainable tool to control pestiferous mosquitoes. © 2018 Society of Chemical Industry.

摘要

背景

蚊虫幼虫剂提供了一种减少叮咬并可能传播病原体的成年雌蚊的源头减少策略。由于对一些目前使用的蚊虫幼虫剂产生了抗性、非目标生物的不良影响以及美国环境保护署(EPA)的限制,因此对新的和创新的有效生物合理性幼虫剂的需求不断增加。蛋氨酸是一种人体必需的营养氨基酸,令人意外的是,它被证明是一种有价值的安全害虫管理工具,可以防治具有碱性肠道生理的某些特定害虫。本研究评估了蛋氨酸对几种害虫(双翅目:蚊科)属蚊虫幼虫的杀幼虫毒性。

结果

在玻璃罐中对 Aedes albopictus Skuse、Anopheles quadrimaculatus Say 和 Culex tarsalis Coquillett 的幼虫进行了依赖浓度的 DL-蛋氨酸生存和化蛹动力学检测。高浓度的 DL-蛋氨酸使所有测试物种的死亡率达到 100%,并以与苏云金芽孢杆菌 israelensis (Bti) 处理相当的速度阻止了蛹化。浓度动力学表明,An. quadrimaculatus 对 DL-蛋氨酸的敏感性比 Ae. albopictus 和 Cx. tarsalis 高 10 倍。

结论

EPA 法规目前豁免了用于农业作物的农药制剂中的蛋氨酸。本研究表明,蛋氨酸是一种非常有效的蚊虫幼虫剂,可以提供一种有益的新生物合理性、环境可持续的工具来控制害虫性蚊虫。 © 2018 化学工业学会。

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