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Susceptibility to acaricides and detoxifying enzyme activities in the red spider mite, Oligonychus coffeae Nietner (Acari: Tetranychidae)

机译:红蜘蛛螨Oligonychus coffeae Nietner(Acari:Tetranychidae)对杀螨剂的敏感性和解毒酶的活性

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Susceptibility of red spider mite, Oligonychus coffeae Nietner (Acari: Tetranychidae), collected from conventionally-managed (synthetic acaricide usage) versus an organicallymanaged (no acaricide usage) tea plantations in Assam, India, to five synthetic acaricides was determined in laboratory bioassays. Activity of three principal detoxifying enzymes of these mite populations was also assayed. The median lethal concentrations (LC50) of ethion, dicofol, propargite, fenpropathrin, and fenazaquin were 1049.75, 599.21, 232.03, 11.44, and 6.75 ppm, respectively. Field rates of these acaricides were compared with 95% lethal concentration (LC95 in ppm) values, and a decrease in the susceptibility of the test population to ethion, propargite, dicofol and fenpropathrin was observed. There was no change for fenazaquin which was effective at lower doses than the recommended dose. Of all the acaricides tested, fenazaquin was the most toxic and ethion was the least toxic. General esterases (GEs), glutathione- S-transferase (GST), and cytochrome P450 monooxygenases exhibited a higher activity in mite population from the conventionallymanaged tea plantation as compared with the activity in mites from the organicallymanaged tea plantation. These findings may be helpful in the selection of acaricides and in developing resistance management strategies for an effective management program for this major tea pest.
机译:在实验室生物分析中确定了印度阿萨姆邦常规管理的(合成杀螨剂的使用)与有机管理的(无杀螨剂的使用)茶园收集的红蜘蛛螨(Oligonychus coffeae Nietner)(Acari:Tetranychidae)对五种合成杀螨剂的敏感性。还测定了这些螨虫种群的三种主要解毒酶的活性。乙硫磷,三氯杀螨醇,丙炔诺酯,苯丙酸菊酯和芬那扎喹的中位致死浓度(LC50)分别为1049.75、599.21、232.03、11.44和6.75 ppm。将这些杀螨剂的田间施用率与95%致死浓度(LC95,以ppm为单位)的值进行了比较,并观察到测试人群对乙硫磷,炔诺酮,三氯杀螨醇和苯丙酸菊酯的敏感性降低。 Fenazaquin没有变化,在低于推荐剂量的情况下有效。在所有测试的杀螨剂中,非那西喹毒性最高,而乙硫胺毒性最低。与传统管理的茶园的螨虫活性相比,常规酯酶(GEs),谷胱甘肽-S-转移酶(GST)和细胞色素P450单加氧酶在常规管理的茶园的螨虫种群中表现出更高的活性。这些发现可能有助于选择杀螨剂,并为针对这种主要茶害的有效管理计划制定抗药性管理策略。

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