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Bed bugs evolved unique adaptive strategy to resist pyrethroid insecticides

机译:臭虫进化出独特的适应性策略来抵抗拟除虫菊酯类杀虫剂

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摘要

Recent advances in genomic and post-genomic technologies have facilitated a genome-wide analysis of the insecticide resistance-associated genes in insects. Through bed bug, Cimex lectularius transcriptome analysis, we identified 14 molecular markers associated with pyrethroid resistance. Our studies revealed that most of the resistance-associated genes functioning in diverse mechanisms are expressed in the epidermal layer of the integument, which could prevent or slow down the toxin from reaching the target sites on nerve cells, where an additional layer of resistance (kdr) is possible. This strategy evolved in bed bugs is based on their unique morphological, physiological and behavioral characteristics and has not been reported in any other insect species. RNA interference-aided knockdown of resistance associated genes showed the relative contribution of each mechanism towards overall resistance development. Understanding the complexity of adaptive strategies employed by bed bugs will help in designing the most effective and sustainable bed bug control methods.
机译:基因组和后基因组技术的最新进展促进了昆虫中与杀虫剂抗性相关基因的全基因组分析。通过臭虫,Cimex lectularius转录组分析,我们鉴定了14种与拟除虫菊酯抗药性相关的分子标记。我们的研究表明,在各种机制中起作用的大多数与抗性相关的基因都在被膜的表皮层中表达,这可以阻止或减慢毒素到达神经细胞靶位点的速度,而在该位点,抗性又有一层(kdr )是可能的。这种臭虫进化的策略是基于它们独特的形态,生理和行为特征,尚未在其他任何昆虫物种中报道。 RNA干扰辅助抗性相关基因的敲低表明每种机制对整体抗性发展的相对贡献。了解臭虫采用的自适应策略的复杂性将有助于设计最有效和可持续的臭虫控制方法。

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