植物基生物杀虫剂的选择性作用:分子机制和降低对非目标生物的风险

IF 6.7 Q1 ENVIRONMENTAL SCIENCES
Lara T.M. Costa , Guy Smagghe , Luis O. Viteri Jumbo , Gil R. Santos , Raimundo W.S. Aguiar , Eugenio E. Oliveira
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引用次数: 0

摘要

以植物为基础的生物杀虫剂,如精油和提取物,是分子的复杂混合物,对害虫表现出选择性毒性,同时最大限度地减少对非目标生物(nto)的伤害,如传粉者、寄生蜂和捕食者。最近对丁香(Syzygium aromaticum)、Negramina (Siparuna guianensis)和无花果(Ficus carica)的研究表明,它们的精油和提取物对有益生物的毒性通常低于对害虫的毒性,这可能是由于施用时间等生态因素所致。本文综述了植物的生理选择性,即植物化合物与靶点在害虫和NTOs中的优先相互作用。计算方法和基因工程的进步使预测这些相互作用成为可能,揭示了植物化合物(如β-石竹烯、补骨脂素、倍半玫瑰呋喃和丁香酚)更有效地与害虫体内的特定酶和受体结合。通过探索这些机制,我们强调了植物基杀虫剂在降低nto风险方面的潜力及其在可持续害虫管理计划中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective actions of plant-based biorational insecticides: Molecular mechanisms and reduced risks to non-target organisms
Plant-based biorational insecticides such as essential oils and extracts are complex mixtures of molecules that exhibit selective toxicity toward insect pests while minimizing harm to nontarget organisms (NTOs) such as pollinators, parasitoids, and predators. Recent investigations using clove (Syzygium aromaticum), Negramina (Siparuna guianensis), and common fig (Ficus carica) indicate that their essential oils and extracts generally exhibit lower toxicity to beneficial organisms than to target pests, potentially due to ecological factors like application timing. This review focuses on physiological selectivity, which involves preferential interactions between plant compounds and targets in pests versus NTOs. Advances in computational methods and genetic engineering enable the prediction of these interactions, revealing that plant compounds (e.g. β-caryophyllene, psoralen, sesquirosefuran, and eugenol) bind more effectively to specific enzymes and receptors in pest insects. By exploring these mechanisms, we highlight the potential of plant-based insecticides to reduce risks to NTOs and their role in sustainable pest management programs.
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来源期刊
Current Opinion in Environmental Science and Health
Current Opinion in Environmental Science and Health Medicine-Public Health, Environmental and Occupational Health
CiteScore
14.90
自引率
0.00%
发文量
92
审稿时长
114 days
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