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首页> 外文期刊>Environmental toxicology >Synergist Efficacy of Piperonyl Butoxide with Deltamethrin as Pyrethroid Insecticide on Culex tritaeniorhynchus (Diptera: Culicidae) and Other Mosquitoe Species
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Synergist Efficacy of Piperonyl Butoxide with Deltamethrin as Pyrethroid Insecticide on Culex tritaeniorhynchus (Diptera: Culicidae) and Other Mosquitoe Species

机译:胡椒基丁醚与溴氰菊酯作为拟除虫菊酯类杀虫剂对三足蚊(Culex tritaeniorhynchus)(双翅目:Culicidae)和其他蚊子的协同增效作用

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摘要

Continuous and indiscriminate use of pesticides, especially in tropical countries for public health or agriculture purpose, has led many vector populations to become resistant to organochlorides, organophosphates, and even to carbamates and pyrethroids. Development of resistance by a vector population has been one of the reasons for the failure of the control measures in many countries. This investigation demonstrates the efficacy of piperonyl-butoxide (PBO) with deltamethrin, as pyrethroid insecticide, against the field-collected mosquitoe larvae of five species, Aedes aegypti, Anopheles culicifacies, An. stephensi, An. vagus, and Culex quinqufasciatus, and two morphological variants of Cx. tritaeniorhynchus (type A from grand pools of Mysore city and type B from rice fields of Mandya district). For testing the syn-ergistic effect of PBO, stock solutions of deltamethrin and PBO were mixed in 1:6 ratio. The synergistic ratio and the percent suppression in deltamethrin tolerance were calculated by using LC_(50) values. From the results, it is clear that, PBO is an effective synergist with deltamethrin against all of species undertaken in this investigation. So, it is suggested that PBO is a good synergist in this area for decreasing the use ofrnpesticides in environment in vector control.
机译:持续且不加选择地使用农药,尤其是在热带国家,出于公共卫生或农业目的,已导致许多媒介种群对有机氯化物,有机磷酸盐,甚至对氨基甲酸酯和拟除虫菊酯具有抗药性。在许多国家,媒介种群产生抗药性一直是控制措施失败的原因之一。这项研究表明,溴氰丁醚(PBO)与溴氰菊酯作为拟除虫菊酯类杀虫剂,对五个种类的伊蚊,埃及按蚊,按蚊,蚊帐等蚊虫幼虫的田间采集的功效。史蒂芬斯,安。迷走神经和库克斯(Culex quinqufasciatus),以及Cx的两种形态变异。 tritaeniorhynchus(A型来自迈索尔市的大水池,B型来自曼迪亚地区的稻田)。为了测试PBO的协同作用,将溴氰菊酯和PBO的储备溶液以1∶6的比例混合。通过使用LC_(50)值计算协同效应和溴氰菊酯耐受性的抑制百分比。从结果可以清楚地看出,PBO与溴氰菊酯是有效的协同剂,对本次调查中涉及的所有物种均有效。因此,建议PBO在该领域是良好的增效剂,以减少杀虫剂在环境中在媒介控制中的使用。

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