Institute of Pesticide Science, College of Plant Protection, Southwest University, Chongqing 400715, P.R. China.
J Agric Food Chem. 2023 Nov 29;71(47):18359-18374. doi: 10.1021/acs.jafc.3c03493. Epub 2023 Nov 15.
Plants employ abundant toxic secondary metabolites to withstand insect attack, while pollinators can tolerate some natural defensive compounds. Coumarins, as promising green alternatives to chemical insecticides, possess wide application prospects in the crop protection field. Herein, the bioactivities of 30 natural coumarin derivatives against were assessed and revealed that 6-methylcoumarin exhibited potent aphicidal activity against aphids but displayed no toxicity to honeybees. Additionally, using biochemical, bioinformatic, and molecular assays, we confirmed that the action mode of 6-methylcoumarin against aphids was by inhibiting acetylcholinesterase (AChE). Meanwhile, functional assays revealed that the difference in action site, which located in Lys585 in aphid AChE (equivalent to Val548 in honeybee AChE), was the principal reason for 6-methylcoumarin being toxic to aphids but safe to pollinators. This action site was further validated by mutagenesis data, which uncovered how 6-methylcoumarin was unique selective to the aphid over honeybee or mammalian AChE. Furthermore, a 2D-QSAR model was established, revealing that the central structural feature was H3m, which offers guidance for the future design of more potent coumarin compounds. This work provides a sustainable strategy to take advantage of coumarin analogues for pest management while protecting nontarget pollinators.
植物利用丰富的有毒次生代谢物来抵御昆虫的攻击,而传粉媒介可以容忍一些天然的防御化合物。香豆素作为有前途的化学杀虫剂的绿色替代品,在作物保护领域具有广泛的应用前景。本文评估了 30 种天然香豆素衍生物对 的生物活性,结果表明 6-甲基香豆素对蚜虫具有很强的杀虫活性,但对蜜蜂没有毒性。此外,通过生化、生物信息学和分子测定,我们证实了 6-甲基香豆素对蚜虫的作用模式是通过抑制乙酰胆碱酯酶(AChE)。同时,功能测定表明,作用位点的差异,即位于蚜虫 AChE 中的 Lys585(相当于蜜蜂 AChE 中的 Val548),是 6-甲基香豆素对蚜虫有毒但对传粉媒介安全的主要原因。突变数据进一步验证了该作用位点,揭示了 6-甲基香豆素如何对蚜虫 AChE 具有独特的选择性,而对蜜蜂或哺乳动物 AChE 则没有。此外,建立了一个 2D-QSAR 模型,揭示了中央结构特征是 H3m,这为未来设计更有效的香豆素化合物提供了指导。这项工作为利用香豆素类似物进行害虫管理,同时保护非目标传粉媒介提供了一种可持续的策略。