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桃蚜(Myzus persicae (Sulzer))中与拟除虫菊酯类杀虫剂强抗性相关的M918T钠通道基因突变的特征分析。

Characterization of the M918T sodium channel gene mutation associated with strong resistance to pyrethroid insecticides in the peach-potato aphid, Myzus persicae (Sulzer).

作者信息

Eleftherianos I, Foster S P, Williamson M S, Denholm I

机构信息

Division of Plant and Invertebrate Ecology, Rothamsted Research, Harpenden, Herts, UK.

出版信息

Bull Entomol Res. 2008 Apr;98(2):183-91. doi: 10.1017/S0007485307005524. Epub 2007 Dec 13.

DOI:10.1017/S0007485307005524
PMID:18076786
Abstract

Recent advances in the characterisation of insect sodium channel gene sequences have identified a small number of point mutations within the channel protein that are implicated in conferring target-site resistance to pyrethroid insecticides (so-called knockdown resistance or kdr). The L1014F (leucine-to-phenylalanine) mutation located in the centre of segment 6 of the domain II region (IIS6) of the sodium channel (the so-called kdr trait) has been detected in the peach-potato aphid, Myzus persicae (Sulzer), and is considered to be the primary cause of pyrethroid resistance in this species. Here we report on the characterisation of a second mutation, M918T (methione-to-threonine), within the nearby IIS4-S5 intracellular linker (the so-called super-kdr trait) in a field clone also possessing L1014F, with both mutations present in heterozygous form. The resistance phenotype of M. persicae clones possessing various combinations of L1014F and M918T to a wide range of pyrethroids (both Type I and II) was assessed in leaf-dip bioassays and to lambda-cyhalothrin applied at up to ten times the recommended field rate as foliar sprays to aphids feeding on whole plants. Bioassay results demonstrated that presence of both mutations was associated with extreme resistance to all the pyrethroids tested relative to aphids lacking the mutations. Furthermore, this resistance well exceeded that shown by aphids that were homozygous for L1014F but lacking M918T. However, pre-treatment with piperonyl butoxide in the leaf-dip bioassays failed to suppress pyrethroid resistance in aphids carrying one or both of the mutations. The relevance of these findings for monitoring and managing pyrethroid resistance in M. persicae populations in the field is discussed.

摘要

昆虫钠通道基因序列特征研究的最新进展已确定,通道蛋白内存在少量点突变,这些突变与拟除虫菊酯类杀虫剂的靶标位点抗性(即所谓的击倒抗性或kdr)有关。位于钠通道结构域II区域(IIS6)第6段中心的L1014F(亮氨酸突变为苯丙氨酸)突变(即所谓的kdr性状)已在桃蚜Myzus persicae(Sulzer)中被检测到,被认为是该物种对拟除虫菊酯产生抗性的主要原因。在此,我们报告在一个同样具有L1014F的田间克隆中,靠近IIS4 - S5细胞内连接区发现的第二个突变M918T(甲硫氨酸突变为苏氨酸)(即所谓的超级kdr性状),这两个突变均以杂合形式存在。通过叶片浸渍生物测定法评估了具有L1014F和M918T不同组合的桃蚜克隆对多种拟除虫菊酯(I型和II型)的抗性表型,并评估了在以高达推荐田间施药剂量的十倍作为叶面喷雾剂施用于取食整株植物的蚜虫时,对高效氯氟氰菊酯的抗性。生物测定结果表明,相对于没有这些突变的蚜虫,这两个突变的存在与对所有测试拟除虫菊酯的极端抗性相关。此外,这种抗性远远超过了仅L1014F纯合但缺乏M918T的蚜虫所表现出的抗性。然而,在叶片浸渍生物测定中用胡椒基丁醚预处理未能抑制携带一个或两个突变的蚜虫对拟除虫菊酯的抗性。本文讨论了这些发现对于监测和管理田间桃蚜种群中拟除虫菊酯抗性的意义。

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