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CYP6BQ23 基因的分子特征和功能分析:欧洲花粉蝽种群对拟除虫菊酯类杀虫剂产生抗性的关键酶

Molecular and functional characterization of CYP6BQ23, a cytochrome P450 conferring resistance to pyrethroids in European populations of pollen beetle, Meligethes aeneus.

机构信息

Bayer CropScience AG, R&D, Pest Control Biology, Monheim, Germany; University of Hohenheim, Institute of Phytomedicine, Dept. Applied Entomology, Stuttgart, Germany; Rothamsted Research, Biological Chemistry and Crop Protection Dept., Harpenden, Herts, UK.

Rothamsted Research, Biological Chemistry and Crop Protection Dept., Harpenden, Herts, UK.

出版信息

Insect Biochem Mol Biol. 2014 Feb;45:18-29. doi: 10.1016/j.ibmb.2013.11.008. Epub 2013 Dec 4.

Abstract

The pollen beetle (Meligethes aeneus F.) is widespread throughout much of Europe where it is a major coleopteran pest of oilseed rape (Brassica napus). The reliance on synthetic insecticides for control, particularly the pyrethroid class, has led to the development of populations with high levels of resistance. Resistance to pyrethroids is now widespread throughout Europe and is thought to be mediated by enhanced detoxification by cytochrome P450ś and/or mutation of the pyrethroid target-site, the voltage-gated sodium channel. However, in the case of cytochrome P450 mediated detoxification, the specific enzyme(s) involved has (have) not yet been identified. In this study a degenerate PCR approach was used to identify ten partial P450 gene sequences from pollen beetle. Quantitative PCR was then used to examine the level of expression of these genes in a range of pollen beetle populations that showed differing levels of resistance to pyrethroids in bioassays. The study revealed a single P450 gene, CYP6BQ23, which is significantly and highly overexpressed (up to ∼900-fold) in adults and larvae of pyrethroid resistant strains compared to susceptible strains. CYP6BQ23 overexpression is significantly correlated with both the level of resistance and with the rate of deltamethrin metabolism in microsomal preparations of these populations. Functional recombinant expression of full length CYP6BQ23 along with cytochrome P450 reductase in an insect (Sf9) cell line showed that it is able to efficiently metabolise deltamethrin to 4-hydroxy deltamethrin. Furthermore we demonstrated by detection of 4-hydroxy tau-fluvalinate using ESI-TOF MS/MS that functionally expressed CYP6BQ23 also metabolizes tau-fluvalinate. A protein model was generated and subsequent docking simulations revealed the predicted substrate-binding mode of both deltamethrin and tau-fluvalinate to CYP6BQ23. Taken together these results strongly suggest that the overexpression of CYP6BQ23 is the primary mechanism conferring pyrethroid resistance in pollen beetle populations throughout much of Europe.

摘要

花粉象甲(Meligethes aeneus F.)广泛分布于欧洲大部分地区,是油菜(Brassica napus)的主要鞘翅目害虫。由于依赖合成杀虫剂进行控制,特别是拟除虫菊酯类杀虫剂,导致种群产生高水平的抗性。欧洲各地普遍存在对拟除虫菊酯的抗性,据认为这是由细胞色素 P450s 的增强解毒作用和/或拟除虫菊酯靶标——电压门控钠离子通道的突变介导的。然而,在细胞色素 P450 介导的解毒情况下,涉及的特定酶(s)尚未确定。在这项研究中,使用退化 PCR 方法从花粉象甲中鉴定了十个部分 P450 基因序列。然后使用定量 PCR 检查了在一系列在生物测定中对拟除虫菊酯表现出不同抗性水平的花粉象甲种群中这些基因的表达水平。研究表明,在对拟除虫菊酯具有抗性的品系的成虫和幼虫中,CYP6BQ23 基因显著高度过表达(高达约 900 倍),与敏感品系相比。CYP6BQ23 的过表达与这些种群的微体制剂中抗性水平和溴氰菊酯代谢率显著相关。全长 CYP6BQ23 与细胞色素 P450 还原酶在昆虫(Sf9)细胞系中的功能重组表达表明,它能够有效地将溴氰菊酯代谢为 4-羟基溴氰菊酯。此外,我们通过使用 ESI-TOF MS/MS 检测 4-羟基 tau-氟戊菊酯证明,功能表达的 CYP6BQ23 还代谢 tau-氟戊菊酯。生成了蛋白质模型,随后的对接模拟揭示了 CYP6BQ23 对溴氰菊酯和 tau-氟戊菊酯的预测底物结合模式。综上所述,这些结果强烈表明,CYP6BQ23 的过表达是导致欧洲大部分地区花粉象甲种群对拟除虫菊酯产生抗性的主要机制。

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