植物源杀虫生物碱的结构改造及作用机制的研究进展

    Research progress on structural modification and action mechanism of plant-derived insecticidal alkaloids

    • 摘要: 植物源杀虫剂因其具有靶标特异性强、易降解无残留、对环境无污染等优点,成为绿色农药开发的重要方向。作为植物次生代谢产物中结构多样性显著的功能成分,生物碱类化合物通过干扰神经传导、抑制代谢酶活性等多重作用机制,展现出广谱杀虫特性与低生态毒性特征。本文系统总结了基于生物碱分子骨架的结构优化策略,重点剖析了吡啶类、喹啉类和吲哚类等典型生物碱在官能团修饰、杂环融合等化学改造中的构效关系,揭示了关键药效基团的空间排布与杀虫活性的内在关联。同时随着分子对接与靶标蛋白解析技术的发展,该类化合物杀虫机制也得到了阐明,如通过竞争性结合几丁质酶或谷氨酸(Glu)-γ-氨基丁酸(GABA)调控系统等靶点产生神经毒性,或通过干扰昆虫生长代谢相关的酶而产生慢性生理抑制等多种作用模式发挥杀虫效应。研究结果不仅可为基于天然生物碱类先导化合物的合理药物设计提供理论依据,同时明晰了生物碱类杀虫剂的作用机制,推动植物源生物碱类杀虫剂的研发向精准化、智能化方向发展。

       

      Abstract: Due to their strong target specificity, easy degradation, no residue, no pollution to the environment and other advantages, plant-derived insecticides have become an important area of development for green insecticides. As the most structurally diverse functional components of plant secondary metabolites, alkaloids exhibit broad-spectrum insecticidal properties and low ecotoxicity by interfering with nerve conduction and inhibiting metabolic enzyme activities. In this paper, we systematically summarize the structure optimization strategy based on the molecular skeleton of alkaloids, and focus on analyzing the structure-activity relationship (SAR) of typical alkaloids, such as pyridines, quinolines and quinolizidines, in terms of functional group modification and heterocyclic ring fusion, to reveal the intrinsic association between the spatial arrangement of the key pharmacophoric groups and the insecticidal activity. Meanwhile, with the development of molecular docking and target protein analysis technology, the insecticidal mechanism of this class of compounds has also been elucidated, such as neurotoxicity through competitive binding to chitinase or glutamate (Glu)-γ-aminobutyric acid (GABA) regulatory system and other targets, or by interfering with enzymes related to insect growth and metabolism to produce chronic physiological inhibition and other modes of action to exert insecticidal effects. The results of this study not only provide theoretical basis for rational drug design based on natural alkaloidal lead compounds, but also clarify the mechanism of action of alkaloidal insecticides, which will promote the research and development of plant-derived alkaloidal insecticides in the direction of precision and intelligence.

       

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