Insect Gut Microbiota and Pesticide Degradation in Response to Innate Metabolites- a Review

Saleem Jaffar, Muhammad Yasin, Muhammad mazahir, AJmal Hussain, Aftab Ahmad Khan, Hongai Su, Tian Zeng
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Abstract

Insects host a diverse microbiota in their gut, encompassing bacteria, fungi, viruses, and archaea, influencing their physiology, nutrition, and overall health. The composition of these microbial communities varies with factors like insect species, diet, and the environment. Insect gut microbiota serve pivotal roles such as aiding digestion, synthesizing essential nutrients, safeguarding against pathogens, and detoxifying toxins, including insecticides. A particularly promising facet of their function lies in influencing the metabolism of insecticides. These gut microbiotas can either augment or diminish insecticide toxicity through mechanisms like enzymatic breakdown, sequestration, target site alteration, or modulation of the insect's immune response. Understanding these interactions is paramount for devising sustainable pest management strategies. This review explores into insect gut microbiota, their impact on insecticide susceptibility, and the potential use of microbial metabolites in eco-friendly pest control. We explore pesticide degradation mechanisms, the consequences of microbiota disruption on susceptibility, and the role of microbiota-produced metabolites in shaping pesticide efficacy. Ultimately, we highlight the potential of microbiota manipulation as a strategy to enhance insecticide effectiveness and combat pesticide resistance in pest management.
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昆虫肠道微生物群与农药降解对先天代谢物的反应--综述
昆虫的肠道中寄生着多种微生物群,包括细菌、真菌、病毒和古细菌,影响着它们的生理、营养和整体健康。这些微生物群落的组成因昆虫种类、饮食和环境等因素而异。昆虫肠道微生物群发挥着至关重要的作用,如帮助消化、合成必需的营养物质、抵御病原体和解毒(包括杀虫剂)。其功能的一个特别有前途的方面是影响杀虫剂的新陈代谢。这些肠道微生物可通过酶分解、螯合、靶点改变或调节昆虫的免疫反应等机制,增强或减弱杀虫剂的毒性。了解这些相互作用对于制定可持续的害虫管理策略至关重要。本综述探讨了昆虫肠道微生物群、它们对杀虫剂敏感性的影响以及微生物代谢物在生态友好型害虫控制中的潜在用途。我们探讨了杀虫剂降解机制、微生物群破坏对杀虫剂敏感性的影响,以及微生物群产生的代谢物在影响杀虫剂药效方面的作用。最终,我们强调了操纵微生物区系作为一种提高杀虫剂效力和对抗害虫管理中的杀虫剂抗药性的策略的潜力。
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