首页> 外文期刊>Pesticide Biochemistry and Physiology >Chlorpyrifos resistance is associated with mutation and amplification of the acetylcholinesterase-1 gene in the tomato red spider mite, Tetranychus evansi. (Special Issue: Molecular approaches to pest control, toxicology and resistance: dedicated to Professor Elvins Yuill Spencer, Ph.D. Editor-in-Chief, Pesticide Biochemistry and Physiology (1978-1990).)
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Chlorpyrifos resistance is associated with mutation and amplification of the acetylcholinesterase-1 gene in the tomato red spider mite, Tetranychus evansi. (Special Issue: Molecular approaches to pest control, toxicology and resistance: dedicated to Professor Elvins Yuill Spencer, Ph.D. Editor-in-Chief, Pesticide Biochemistry and Physiology (1978-1990).)

机译:毒死rif的抗性与番茄红叶螨Tetranychus evansi中乙酰胆碱酯酶-1基因的突变和扩增有关。 (特刊:害虫控制,毒理学和抗药性的分子方法:专为埃尔文斯·尤尔·斯宾塞教授,农药生物化学和生理学首席编辑(1978-1990年)。)

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摘要

The tomato red spider mite, Tetranychus evansi is an invasive pest of many African countries where it causes significant damage to a range of solanaceous crops. In Malawi the control of T. evansi relies heavily on the use of chemical pesticides and this species has evolved resistance to members of the pyrethroid and organophosphate (OP) classes. In this study the molecular mechanisms underlying resistance to the organophosphate chlorpyrifos were investigated in two resistant strains of T. evansi from Malawi and France. Cloning and sequencing of the gene encoding the OP target (ace-1) revealed an amino acid substitution at just one of the positions (331) previously implicated in OP resistance across a range of different insect and mite species. The amino acid residue usually found at this position in susceptible insects and mites is a phenylalanine (F) but was a tyrosine (Y) in all sequenced clones of the France strain and a tyrosine or tryptophan (W) in sequenced clones of the Malawi strain. Additionally we found evidence that the ace-1 locus is amplified in the resistant strains, with direct measurement of gene copy number by quantitative PCR showing there are around 8-10 copies of the gene in both the France and the Malawi strain. Sequencing of clones of ace-1 from the Malawi strain indicated that individual mites have fewer copies of the W331 allele than the Y331 allele. The enhanced copy number of the ace-1 gene in T. evansi and copy number variation of the two alleles seen in the Malawi strain may be a mechanism to compensate for fitness costs associated with the mutant alleles as has been proposed for T. urticae.
机译:番茄红蜘蛛螨(Tetranychus evansi)是许多非洲国家的一种入侵性害虫,对许多茄科作物造成了严重破坏。在马拉维,对埃文氏衣原体的控制严重依赖于化学农药的使用,该物种已对拟除虫菊酯和有机磷酸酯(OP)类的成员产生了抗药性。在这项研究中,研究了来自马拉维和法国的两种埃文氏锥虫抗性菌株对有机磷毒死rif具有抗性的分子机制。编码OP靶标(ace-1)的基因的克隆和测序表明,在先前涉及跨多种昆虫和螨虫的OP抗性的位置(331)的一个氨基酸取代处。通常在易感昆虫和螨虫的此位置上发现的氨基酸残基为苯丙氨酸(F),但在France菌株的所有测序克隆中均为酪氨酸(Y),而在马拉维菌株的测序克隆中为酪氨酸或色氨酸(W)。 。另外,我们发现有证据表明ace-1基因座在抗性菌株中得到了扩增,通过定量PCR直接测量基因拷贝数表明在法国和马拉维菌株中大约有8-10个基因拷贝。马拉维菌株ace-1克隆的测序表明,单个螨虫的W331等位基因拷贝比Y331等位基因少。埃文氏螺旋体中ace-1基因的拷贝数增加和马拉维菌株中两个等位基因的拷贝数变异可能是补偿与突变性等位基因相关的适应性成本的机制,正如针对荨麻疹所提出的。

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