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The search for novel insecticide targets in the post-genomics era with aspecific focus on G-protein coupled receptors

机译:在后基因组学时代寻找新型杀虫剂靶标特别关注G蛋白偶联受体

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摘要

Insects are considered pests globally, implicated in the destruction of agricultural fields and transmission of pathogens that cause deadly human diseases, such as dengue, Zika and malaria. The diversity of the insecticide arsenal has remained stagnant for decades, but the recent rise of insecticide resistance fueled the discovery of novel modes of action, and the power of genomics has reinvigorated this search. This review discusses the importance of comparative and functional insect genomics in the identification of potential gene targets for an insecticidal mode of action with low off-target toxicity. Due to the global participation in the sequencing and annotation of insect genomes, the targeting of specific genes with molecular tools like RNAi and CRISPR/Cas9 for genome engineering and consequent functional identification and validation has become more efficient. While there are multiple avenues to explore for insecticidal candidates, this review identifies G-protein coupled receptors as attractive targets, and hones in on the octopamine and dopamine receptors due to their potential.
机译:昆虫在全球范围内被认为是有害生物,与农田的破坏和导致致命人类疾病的病原体的传播有关,例如登革热,寨卡病毒和疟疾。几十年来,杀虫剂库的多样性一直停滞不前,但是最近对杀虫剂的抗药性的上升推动了新型作用方式的发现,而基因组学的力量又使这种探索更加活跃。这篇综述讨论了比较和功能昆虫基因组学在鉴定具有低脱靶毒性的杀虫作用模式的潜在基因靶标中的重要性。由于全球参与昆虫基因组的测序和注释,利用分子工具(例如RNAi和CRISPR / Cas9)对特定基因进行基因组工程以及随后的功能鉴定和验证变得更加有效。尽管有多种途径可以寻找杀虫候选物,但本综述将G蛋白偶联受体确定为有吸引力的靶标,并因其潜力而对章鱼胺和多巴胺受体进行了磨练。

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