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烟粉虱对拟除虫菊酯加有机磷混合物抗性相关的烟粉虱对氯菊酯钠通道基因中的突变。

Mutations in the Bemisia tabaci para sodium channel gene associated with resistance to a pyrethroid plus organophosphate mixture.

作者信息

Morin S, Williamson M S, Goodson S J, Brown J K, Tabashnik B E, Dennehy T J

机构信息

Department of Entomology, University of Arizona, Forbes 410, Tucson 85721, USA.

出版信息

Insect Biochem Mol Biol. 2002 Dec;32(12):1781-91. doi: 10.1016/s0965-1748(02)00137-6.

Abstract

The voltage-gated sodium channel is the primary target site of pyrethroid insecticides. In some insects, super knockdown resistance (super-kdr) to pyrethroids is caused by point mutations in the linker fragment between transmembrane segments 4 and 5 of the para-type sodium channel protein domain II (IIS4-5). Here, we identify two mutations in the IIS4-5 linker of the para-type sodium channel of the whitefly, BEMISIA TABACI: methionine to valine at position 918 (M918V) and leucine to isoleucine at position 925 (L925I). Although each mutation was isolated independently from strains >100-fold resistant to a pyrethroid (fenpropathrin) plus organophosphate (acephate) mixture, only L925I was associated with resistance in strains derived from the field in 2000 and 2001. The L925I mutation occurred in all individuals from nine different field collections that survived exposure to a discriminating concentration of fenpropathrin plus acephate. Linkage analysis of hemizygous male progeny of unmated heterozygous F1 females (L925Ixwild-type) shows that the observed resistance is tightly linked to the voltage-gated sodium channel locus. The results provide a molecular tool for better understanding, monitoring and managing pyrethroid resistance in B. tabaci.

摘要

电压门控钠通道是拟除虫菊酯类杀虫剂的主要作用靶点。在一些昆虫中,对拟除虫菊酯的超级击倒抗性(super-kdr)是由副型钠通道蛋白结构域II(IIS4-5)跨膜片段4和5之间的连接片段中的点突变引起的。在此,我们在烟粉虱BEMISIA TABACI的副型钠通道的IIS4-5连接片段中鉴定出两个突变:第918位的甲硫氨酸突变为缬氨酸(M918V)以及第925位的亮氨酸突变为异亮氨酸(L925I)。尽管每个突变都是从对拟除虫菊酯(甲氰菊酯)加有机磷(乙酰甲胺磷)混合物具有>100倍抗性的品系中独立分离出来的,但只有L925I与2000年和2001年从田间采集的品系中的抗性相关。在暴露于鉴别浓度的甲氰菊酯加乙酰甲胺磷后存活下来的来自九个不同田间采集地的所有个体中都出现了L925I突变。对未交配的杂合F1雌性(L925I×野生型)的半合子雄性后代进行连锁分析表明,观察到的抗性与电压门控钠通道基因座紧密连锁。这些结果为更好地理解、监测和管理烟粉虱对拟除虫菊酯的抗性提供了一种分子工具。

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