Zheng Yi-Ming, Cui Zhen-Nan, Wu Yi-Sheng, Liu Shao-Gang, Gu Wen
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Jiangsu Provincial Key Lab for the Chemistry and Utilization of Agro-Forest Biomass, College of Chemical Engineering, Nanjing Forestry University, Nanjing, China.
Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Guangxi Collaborative Innovation Center for Chemistry and Engineering of Forest Products, Guangxi Minzu University, Nanning, China.
Pest Manag Sci. 2025 Sep;81(9):5368-5381. doi: 10.1002/ps.8891. Epub 2025 May 15.
To develop novel natural product-derived fungicides, four series of myrtenal oxadiazole/thiadiazole-hydrazide/amide derivatives were designed, synthesized and evaluated for their inhibitions toward several crop pathogenic fungi/oomycetes.
In the in vitro antifungal experiments, some myrtenal derivatives showed good antifungal activity against Botryosphaeria dothidea, Sclerotinia sclerotiorum and Fusarium graminearum. Among them, compound 6d exhibited the best antifungal activity against B. dothidea, with EC value of 0.052 mg/L, which was significantly stronger than carbendazim (EC = 0.40 mg/L). In vivo antifungal activity assay on apple fruits and branches showed that 6d displayed significant protective and curative effects, both superior to carbendazim. In the preliminary antifungal mechanism study, 6d can damage the surface morphology of mycelia, destroy the integrity and permeability of cell membrane, increase intracellular ROS content, thereby inhibiting the growth of B. dothidea. Compound 6d also significantly inhibited laccase with IC value of 8.45 μM, much stronger than cysteine and PMDD-5Y. Molecular docking also confirmed the binding affinity and interaction mode of 6d with laccase.
This study presented a promising lead compound for the study on novel laccase inhibitors as fungicidal agrochemicals, which demonstrated significant anti-B. dothidea activity and laccase inhibitory activity. © 2025 Society of Chemical Industry.
为开发新型天然产物衍生的杀菌剂,设计、合成了四个系列的桃金娘烯醛恶二唑/噻二唑-酰肼/酰胺衍生物,并评估了它们对几种作物致病真菌/卵菌的抑制作用。
在体外抗真菌实验中,一些桃金娘烯醛衍生物对苹果黑腐皮壳菌、核盘菌和禾谷镰刀菌表现出良好的抗真菌活性。其中,化合物6d对苹果黑腐皮壳菌表现出最佳的抗真菌活性,EC值为0.052 mg/L,显著强于多菌灵(EC = 0.40 mg/L)。对苹果果实和枝条的体内抗真菌活性测定表明,6d表现出显著的保护和治疗效果,均优于多菌灵。在初步的抗真菌机制研究中,6d可破坏菌丝体的表面形态,破坏细胞膜的完整性和通透性,增加细胞内ROS含量,从而抑制苹果黑腐皮壳菌的生长。化合物6d还显著抑制漆酶,IC值为8.45 μM,比半胱氨酸和PMDD-5Y强得多。分子对接也证实了6d与漆酶的结合亲和力和相互作用模式。
本研究为新型漆酶抑制剂作为农用杀菌剂的研究提供了一个有前景的先导化合物,其对苹果黑腐皮壳菌具有显著的活性和漆酶抑制活性。© 2025化学工业协会。