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首页> 外文期刊>International Journal of Tropical Insect Science >Insecticide susceptibility and activity of major detoxifying enzymes in female Helopeltis theivora (Heteroptera: Miridae) from sub-Himalayan tea plantations of North Bengal, India.
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Insecticide susceptibility and activity of major detoxifying enzymes in female Helopeltis theivora (Heteroptera: Miridae) from sub-Himalayan tea plantations of North Bengal, India.

机译:印度北孟加拉喜马拉雅茶园的雌性Helicopeltis theivora(Heteroptera:Miridae)的杀虫剂敏感性和主要解毒酶活性。

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摘要

Despite the continuous use of synthetic insecticides during the last two decades, the tea mosquito bug Helopeltis theivora Waterhouse still exists as the most destructive pest of tea in North East India. The susceptibility levels of the female sucking bug collected from conventional (synthetic insecticide treated: Terai and Dooars plain regions) and organic (synthetic insecticide untreated: low-altitude Darjeeling region) tea plantations of the northern part of West Bengal to two synthetic insecticides, quinalphos and cypermethrin, and the activity of three principal detoxifying enzymes were assayed. Compared with the susceptible Darjeeling population, the Terai and Dooars populations showed a resistance factor at the lethal concentrations for 50% level ranging from 547- to 2680.87-fold and from 3810- to 7480-fold for quinalphos and cypermethrin, respectively. General esterases (GEs), glutathione S-transferases (GSTs) and cytochrome P450-mediated mono-oxygenases (CYPs) also showed an increased activity in the Terai and Dooars populations compared with those from Darjeeling. Defence enzyme activity was enhanced by 15.4- and 17.6-fold for GEs, 1.8- and 1.9-fold for GSTs and 2.1- and 2.4-fold for CYPs in the synthetic insecticide-treated H. theivora populations when compared with the untreated Darjeeling populations. Electrophoretic analysis for GEs showed a higher level of expression for esterase I -VI isozymes in the Terai and Dooars populations when compared with that in the Darjeeling populations. This study reveals a reduced efficacy of quinalphos and cypermethrin against field populations of H. theivora, possibly due to enhanced activities of GEs, GSTs and CYPs. The findings may be used in developing integrated resistance management strategies that can help in the effective control of this major tea pest.
机译:尽管在过去的二十年中一直在使用合成杀虫剂,但茶叶蚊子 Helopeltis theivora 沃特豪斯仍然是印度东北部最具破坏力的茶叶害虫。从西孟加拉北部的常规(人工合成杀虫剂:Terai和Dooars平原地区)和有机(人工合成杀虫剂:低海拔大吉岭地区)茶园收集的雌性吸虫的敏感性水平,对两种合成杀虫剂喹诺磷和氯氰菊酯,并测定了三种主要的解毒酶的活性。与易感的大吉岭种群相比,Terai和Dooars种群在50%的致死浓度下对喹诺磷和氯氰菊酯的抵抗力分别为547-2668.87倍和3810-7480倍。与大吉岭的人群相比,普通的酯酶(GEs),谷胱甘肽 S 转移酶(GST)和细胞色素P450介导的单加氧酶(CYPs)在Terai和Dooars人群中的活动也有所增加。在合成的杀虫剂处理过的H中,防御酶的活性对GE增强了15.4倍和17.6倍,对GST增强了1.8倍和1.9倍,对于CYP增强了2.1倍和2.4倍。与未经处理的大吉岭人口相比。与大吉岭种群相比,GE的电泳分析显示,在Terai和Dooars种群中,酯酶I -VI同工酶的表达水平更高。这项研究表明喹硫磷和氯氰菊酯对田间H的功效降低。可能是由于GE,GST和CYP的活性增强。该发现可用于制定综合抗性管理策略,以帮助有效控制这种主要茶害。

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