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酯酶的改变与麦蛾茧蜂(膜翅目:茧蜂科)对马拉硫磷的抗性有关。

Alterations in esterases are associated with malathion resistance in Habrobracon hebetor (Hymenoptera: Braconidae).

作者信息

Perez-Mendoza J, Fabrick J A, Zhu K Y, Baker J E

机构信息

Grain Marketing and Production Research Center, USDA-ARS, 1515 College Avenue, Manhattan, KS 66502, USA.

出版信息

J Econ Entomol. 2000 Feb;93(1):31-7. doi: 10.1603/0022-0493-93.1.31.

Abstract

Biochemical mechanisms of malathion resistance were investigated in a malathion-resistant strain of the parasitoid Habrobracon hebetor Say collected from a farm storage in Kansas. General esterase activities were significantly lower in the resistant strain compared with those in a susceptible strain. However, no significant differences were found in activities of malathion specific carboxylesterase (MCE), glutathione S-transferase and cytochrome P450 dependent O-demethylase activities, cytochrome P450 contents, and sensitivity of acetylcholinesterase to inhibition by malaoxon between the 2 strains. Because MCE was not elevated in the resistant strain, the weak malathion resistance in H. hebetor may result from a different mechanism compared with that hypothesized for some insect species in which reduced general esterase activity is accompanied by an elevated MCE. Decreased esterase activity in the resistant strain suggested that null alleles of some esterases were associated with the resistance. Indeed, E1 and E2, major esterases in the susceptible strain, were not present in the resistant strain on polyacrylamide gels that were stained for esterase activity using the model substrate 1-naphthyl acetate. In contrast, the activity of esterase E3 on the gels was much higher in the resistant strain as compared with that of the susceptible strain. These findings indicate that malathion resistance in H. hebetor is associated with both an increased activity of the esterase E3 and null alleles of the esterases E1 and E2.

摘要

在从堪萨斯州一个农场仓库采集的寄生蜂哈氏肿腿蜂(Habrobracon hebetor Say)的马拉硫磷抗性品系中,研究了马拉硫磷抗性的生化机制。与敏感品系相比,抗性品系中的一般酯酶活性显著较低。然而,在这两个品系之间,马拉硫磷特异性羧酸酯酶(MCE)、谷胱甘肽S -转移酶和细胞色素P450依赖性O -脱甲基酶活性、细胞色素P450含量以及乙酰胆碱酯酶对马拉氧磷抑制的敏感性均未发现显著差异。由于抗性品系中的MCE没有升高,哈氏肿腿蜂的弱马拉硫磷抗性可能是由一种与某些昆虫物种所假设的机制不同的机制导致的,在那些昆虫物种中,一般酯酶活性降低伴随着MCE升高。抗性品系中酯酶活性的降低表明某些酯酶的无效等位基因与抗性有关。实际上,在使用模型底物乙酸1 -萘酯进行酯酶活性染色的聚丙烯酰胺凝胶上,敏感品系中的主要酯酶E1和E2在抗性品系中不存在。相反,与敏感品系相比,抗性品系凝胶上酯酶E3的活性要高得多。这些发现表明,哈氏肿腿蜂对马拉硫磷的抗性与酯酶E3活性增加以及酯酶E1和E2的无效等位基因有关。

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