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Gene Amplification, ABC Transporters and Cytochrome P450s: Unraveling the Molecular Basis of Pyrethroid Resistance in the Dengue Vector, Aedes aegypti

机译:基因扩增,ABC转运蛋白和细胞色素P450s:揭示登革热载体,埃及伊蚊中拟除虫菊酯抗药性的分子基础。

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摘要

Background\ud\udPyrethroid insecticides are widely utilized in dengue control. However, the major vector, Aedes aegypti, is becoming increasingly resistant to these insecticides and this is impacting on the efficacy of control measures. The near complete transcriptome of two pyrethroid resistant populations from the Caribbean was examined to explore the molecular basis of this resistance.\ud\udPrincipal Findings\ud\udTwo previously described target site mutations, 1016I and 1534C were detected in pyrethroid resistant populations from Grand Cayman and Cuba. In addition between two and five per cent of the Ae. aegypti transcriptome was differentially expressed in the resistant populations compared to a laboratory susceptible population. Approximately 20 per cent of the genes over-expressed in resistant mosquitoes were up-regulated in both Caribbean populations (107 genes). Genes with putative monooxygenase activity were significantly over represented in the up-regulated subset, including five CYP9 P450 genes. Quantitative PCR was used to confirm the higher transcript levels of multiple cytochrome P450 genes from the CYP9J family and an ATP binding cassette transporter. Over expression of two genes, CYP9J26 and ABCB4, is due, at least in part, to gene amplification.\ud\udSignificance\ud\udThese results, and those from other studies, strongly suggest that increases in the amount of the CYP9J cytochrome P450s are an important mechanism of pyrethroid resistance in Ae. aegypti. The genetic redundancy resulting from the expansion of this gene family makes it unlikely that a single gene or mutation responsible for pyrethroid resistance will be identified in this mosquito species. However, the results from this study do pave the way for the development of new pyrethroid synergists and improved resistance diagnostics. The role of copy number polymorphisms in detoxification and transporter genes in providing protection against insecticide exposure requires further investigation.
机译:背景\拟除虫菊酯类杀虫剂被广泛用于登革热控制。但是,主要媒介埃及伊蚊对这些杀虫剂的耐药性越来越高,这正在影响防治措施的效力。检查了来自加勒比海的两个拟除虫菊酯抗性种群的接近完整的转录组,以探索这种抗药性的分子基础。\ ud \ ud主要发现\ ud \ ud先前在大开曼群岛的拟除虫菊酯抗性种群中检测到两个先前描述的靶位点突变,即1016I和1534C。和古巴。另外,Ae的百分之二到百分之五。与实验室易感人群相比,抗性人群中的埃及埃及转录组差异表达。在两个加勒比海种群中,在抗性蚊子中过表达的基因中约有20%上调(107个基因)。具有假定的单加氧酶活性的基因在上调的子集中显着过量表达,包括五个CYP9 P450基因。使用定量PCR确认来自CYP9J家族和ATP结合盒转运蛋白的多个细胞色素P450基因的更高转录水平。 CYP9J26和ABCB4这两个基因的过度表达至少部分是由于基因扩增。\ ud \ ud意义\ ud \ ud这些结果以及其他研究的结果强烈表明CYP9J细胞色素P450的数量增加是Ae中拟除虫菊酯抗药性的重要机制。埃及。由于该基因家族的扩展而产生的遗传冗余使得不可能在该蚊虫物种中鉴定出与拟除虫菊酯抗药性有关的单个基因或突变。但是,这项研究的结果确实为开发新型拟除虫菊酯增效剂和改进抗药性诊断铺平了道路。拷贝数多态性在排毒和转运蛋白基因中提供的杀虫剂防护作用中的作用需要进一步研究。

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