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Two novel sodium channel mutations associated with resistance to indoxacarb and metaflumizone in the diamondback moth Plutella xylostella

机译:小菜蛾小菜蛾对茚虫威和甲氟虫zone的抗性相关的两个新的钠通道突变

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摘要

Indoxacarb and metaflumizone belong to a relatively new class of sodium channel blocker insecticides (SCBIs). Due to intensive use of indoxacarb, field-evolved indoxacarb resistance has been reported in several lepidopteran pests including the diamondback moth, Plutella xylostella, a serious pest of cruciferous crops. In particular, the BY12 population of P. xylostella, collected from Baiyun, Guangdong province of China in 2012, was 750-fold more resistant to indoxacarb and 70-fold more resistant to metaflumizone compared with the susceptible Roth strain. Comparison of cDNA sequences encoding the sodium channel genes of Roth and BY12 revealed two point mutations (F1845Y and V1848I) in the 6th segment of domain IV of the PxNav protein in the BY population. Both mutations are located within a highly conserved sequence region that is predicted to be involved in the binding sites of local anesthetics and SCBIs based on mammalian sodium channels. A significant correlation was observed among ten field-collected populations between the mutant allele (Y1845 or I1848) frequencies (1.7% to 52.5%) and resistance levels to both indoxacarb (34- to 870-fold) and metaflumizone (1- to 70-fold). The two mutant alleles were never found to co-exist in the same allele of PxNav, suggesting that they arose independently. This is the first time that sodium channel mutations have been associated with high levels of resistance to SCBIs. F1845Y and V1848I are molecular markers for resistance monitoring in the diamondback moth and possibly other insect pest species.
机译:茚虫威和杀虫脲属于相对较新的钠通道阻断剂杀虫剂(SCBIs)。由于茚虫威的大量使用,据报导,田间进化出的茚虫威抗性在几种鳞翅目害虫中包括小菜蛾,小菜蛾(Plutella xylostella),这是一种十字花科作物的严重害虫。尤其是,2012年从中国广东省白云市收集的小菜蛾BY12种群对Rx菌株的抗药性是对茚虫威的750倍,对甲氟虫zone的抗性70倍。比较编码Roth和BY12的钠通道基因的cDNA序列,发现BY人群PxNav蛋白IV结构域第6段的两个点突变(F1845Y和V1848I)。两种突变均位于高度保守的序列区域内,该序列区域预计会基于哺乳动物的钠通道参与局部麻醉剂和SCBIs的结合位点。在突变的等位基因(Y1845或I1848)频率(1.7%至52.5%)与对茚虫威(34至870倍)和甲氟虫zone(1至70-)的抗药性水平之间的十个田间种群中观察到显着相关性折)。从未发现这两个突变等位基因在PxNav的同一等位基因中共存,表明它们是独立出现的。这是钠通道突变首次与对SCBIs的高水平抗性相关。 F1845Y和V1848I是用于监测小菜蛾和其他害虫物种中抗性的分子标记。

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