Van Leeuwen Thomas, Van Pottelberge Steven, Tirry Luc
Laboratory of Agrozoology, Department of Crop Protection, Faculty of Agricultural and Applied Biological Science, Ghent University, Coupure links 653, 9000 Ghent, Belgium.
Pest Manag Sci. 2005 May;61(5):499-507. doi: 10.1002/ps.1001.
A field-collected strain (MR-VL) of the two-spotted spider mite, Tetranychus urticae Koch, exhibited strong resistance to bifenthrin, dicofol and fenbutatin oxide in comparison with a susceptible laboratory strain (LS-VL). The MR-VL strain was screened for cross-resistance with several currently used acaricides. Cross-resistance was detected with clofentezine (RR = 2631), dimethoate (RR = 250), chlorfenapyr (RR = 154), bromopropylate (RR = 25), amitraz (RR = 17), flucycloxuron (RR = 15) and azocyclotin (RR = 7). Abamectin, acequinocyl, bifenazate, tebufenpyrad and spirodiclofen did not show any signs of cross-resistance. Enhanced detoxification by increased activity of mono-oxygenases (MO) and esterases is at least partially responsible for the observed resistance and cross-resistance. MO assays with 7-ethoxycoumarin (7-EC) were optimised and 7-ethoxy-4-trifluoromethylcoumarin (7-EFC), a new MO-substrate, was evaluated for the first time in T urticae and proved to be a good alternative to 7-EC. Approximately 3- and 4-fold higher MO activity was detected with 7-EFC and 7-EC respectively in the MR-VL strain. Kinetic parameters of general esterase assays with 4-nitrophenyl acetate and 1-naphthyl acetate as substrate indicated that more esterases were present in the MR-VL strain. A first attempt was made to classify the esterases present in T urticae. Acetyl-, aryl- and carboxyl-esterases were detected with the use of inhibitors after separation by native PAGE. Glutathione-S-transferases did not seem to play any role in the observed resistance and no differences were detected when the general oxidative capacities of the two strains were compared.
与敏感的实验室品系(LS-VL)相比,从田间采集的二斑叶螨(Tetranychus urticae Koch)品系(MR-VL)对联苯菊酯、三氯杀螨醇和三唑锡表现出很强的抗性。对MR-VL品系进行了与几种目前使用的杀螨剂的交互抗性筛选。检测到与四螨嗪(RR = 2631)、乐果(RR = 250)、虫螨腈(RR = 154)、溴螨酯(RR = 25)、双甲脒(RR = 17)、氟虫脲(RR = 15)和唑螨酯(RR = 7)存在交互抗性。阿维菌素、乙螨唑、联苯肼酯、四螨嗪和螺螨酯未表现出任何交互抗性迹象。单加氧酶(MO)和酯酶活性增加导致的解毒作用增强至少部分地导致了所观察到的抗性和交互抗性。对用7-乙氧基香豆素(7-EC)进行的MO测定进行了优化,并首次在二斑叶螨中评估了一种新的MO底物7-乙氧基-4-三氟甲基香豆素(7-EFC),结果证明它是7-EC的良好替代品。在MR-VL品系中,分别用7-EFC和7-EC检测到MO活性大约高3倍和4倍。以乙酸对硝基苯酯和乙酸1-萘酯为底物的一般酯酶测定的动力学参数表明,MR-VL品系中存在更多的酯酶。首次尝试对二斑叶螨中存在的酯酶进行分类。通过非变性聚丙烯酰胺凝胶电泳分离后,使用抑制剂检测到了乙酰酯酶、芳基酯酶和羧酸酯酶。谷胱甘肽-S-转移酶似乎在观察到的抗性中不起任何作用,并且在比较两个品系的一般氧化能力时未检测到差异。