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时间协同作用可增强氨基甲酸酯类和新烟碱类杀虫剂对抗性农作物害虫的杀虫活性。

Temporal synergism can enhance carbamate and neonicotinoid insecticidal activity against resistant crop pests.

作者信息

Bingham Georgina, Gunning Robin V, Delogu Giovanna, Borzatta Valerio, Field Linda M, Moores Graham D

机构信息

Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, UK.

出版信息

Pest Manag Sci. 2008 Jan;64(1):81-5. doi: 10.1002/ps.1477.

Abstract

BACKGROUND

Piperonyl butoxide (PBO) effectively synergises synthetic pyrethroids, rendering even very resistant insect pests susceptible, provided a temporal element is included between exposure to synergist and insecticide. This concept is now applied to carbamates and neonicotinoids.

RESULTS

A microencapsulated formulation of PBO and pirimicarb reduced the resistance factor in a clone of Myzus persicae (Sulzer) from >19 000- to 100-fold and in Aphis gossypii (Glover) from >48 000- to 30-fold. Similar results were obtained for a strain of Bemisia tabaci Gennadius resistant to imidacloprid and acetamiprid, although a second resistant strain did not exhibit such a dramatic reduction, presumably owing to the presence of target-site insensitivity and the absence of metabolic resistance. Synergism was also observed in laboratory susceptible insects, suggesting that, even when detoxification is not enhanced, there is degradation of insecticides by the background enzymes. Use of an analogue of PBO, which inhibits esterases but has reduced potency against microsomal oxidases, suggests that acetamiprid resistance in whiteflies is largely oxidase based.

CONCLUSION

Temporal synergism can effectively enhance the activity of carbamates and neonicotinoids against resistant insect pests. Although the extent of this enhancement is dependent upon the resistance mechanisms present, inhibition of background enzymes can confer increased sensitivity against target-site resistance as well as increased metabolism. .

摘要

背景

胡椒基丁醚(PBO)能有效增强拟除虫菊酯类杀虫剂的效果,即使是对杀虫剂具有很强抗性的害虫也会变得敏感,前提是在接触增效剂和杀虫剂之间存在一个时间因素。这一概念现在已应用于氨基甲酸酯类和新烟碱类杀虫剂。

结果

PBO和抗蚜威的微囊化制剂使桃蚜(Sulzer)一个克隆品系的抗性系数从大于19000倍降至100倍,使棉蚜(Glover)的抗性系数从大于48000倍降至30倍。对于对吡虫啉和啶虫脒具有抗性的烟粉虱(Gennadius)品系也获得了类似结果,不过第二个抗性品系并未表现出如此显著的降低,推测这是由于存在靶标位点不敏感以及缺乏代谢抗性。在实验室敏感昆虫中也观察到了增效作用,这表明即使解毒作用未增强,背景酶也会降解杀虫剂。使用一种抑制酯酶但对微粒体氧化酶效力降低的PBO类似物表明,粉虱对啶虫脒的抗性很大程度上基于氧化酶。

结论

时间增效作用能有效增强氨基甲酸酯类和新烟碱类杀虫剂对抗性害虫的活性。虽然这种增强的程度取决于存在的抗性机制,但抑制背景酶可提高对靶标位点抗性以及增强代谢的敏感性。

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