Ke Shaoyong, Gao Zilin, Zhang Zhigang, Liu Fang, Wen Shaohua, Wang Yueying, Huang Daye
Key Lab of Microbial Pesticides (Ministry of Agriculture and Rural Affairs), National Biopesticide Engineering Research Centre, Hubei Biopesticide Engineering Research Centre, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.
College of Science, Huazhong Agricultural University, Wuhan 430070, China.
J Agric Food Chem. 2023 Oct 11;71(40):14505-14516. doi: 10.1021/acs.jafc.3c04307. Epub 2023 Sep 27.
Natural products are one of the main sources of drug and agrochemicals discovery. Biphenyls skeleton are ubiquitous structures in many classes of natural products, which indicate extensive biological activities. So, in order to investigate the potential applications for natural biphenyl derivatives, a series of novel carboxamide derivatives with diverse substituent patterns were designed and synthesized based on active pharmacophore from natural biphenyl lignans, and their antifungal activities against several typical plant pathogens belonging to oomycetes, ascomycete, deuteromycetes, and basidiomycetes were fully investigated. The highly potential compounds were further tested assay against Pers. of cucumber to demonstrate a practical application for controlling common plant diseases, which indicated four compounds could effectively control the resistant strains of carbendazim, rutamycin, and pyrazolidide. The potential modes of action for compound against were also explored using molecular docking, microscopic technology, and label-free quantitative proteomics analysis. The results show that compound may be a potential novel fungicidal agent used for gray mold resistance control, which can influence the protein synthesis of . These findings can provide a certain theoretical basis for the development of novel biphenyl derivatives as potential green antifungal agents.
天然产物是药物和农用化学品发现的主要来源之一。联苯骨架是许多类天然产物中普遍存在的结构,这表明其具有广泛的生物活性。因此,为了研究天然联苯衍生物的潜在应用,基于天然联苯木脂素的活性药效团设计并合成了一系列具有不同取代模式的新型羧酰胺衍生物,并对其针对几种属于卵菌纲、子囊菌纲、半知菌类和担子菌纲的典型植物病原体的抗真菌活性进行了全面研究。对具有高度潜力的化合物进一步进行黄瓜灰霉病菌的测试分析,以证明其在防治常见植物病害方面的实际应用,结果表明四种化合物可以有效防治多菌灵、鲁他霉素和咯菌腈的抗性菌株。还使用分子对接、显微镜技术和无标记定量蛋白质组学分析探索了化合物对黄瓜灰霉病菌的潜在作用模式。结果表明,该化合物可能是一种用于防治灰霉病的潜在新型杀菌剂,其可影响黄瓜灰霉病菌的蛋白质合成。这些发现可为开发新型联苯衍生物作为潜在的绿色抗真菌剂提供一定的理论依据。