Ding Yan-Yan, Dai Tian-Li, Luo Xiong-Fei, Zhang Shao-Yong, Zhang Zhi-Jun, Mou Guo-Liang, Qin Lu-Lu, Jin Ya-Rui, Liu Ying-Qian
School of Pharmacy, Lanzhou University, Lanzhou, People's Republic of China.
Key Laboratory of Vector Biology and Pathogen Control of Zhejiang Province, College of Life Science, Huzhou University, Huzhou, People's Republic of China.
Pest Manag Sci. 2025 Apr;81(4):1752-1764. doi: 10.1002/ps.8567. Epub 2024 Dec 5.
Plant pathogenic bacteria and fungi had a wide impact on various crops and caused serious economic losses. Compared to traditional antibiotics and fungicides, alkaloids are noteworthy for their significant biological activities. Tetrahydrocarbazole (THCz) was widely present in many indole alkaloids and had various pharmacological activities. This study used Fischer indole synthesis method and fragment splicing strategy to design and synthesize a novel drug like chemical entity based on THCz alkaloid guidance, evaluated the antimicrobial activities of these derivatives against plant pathogenic bacteria and fungi and discussed the structure-activity relationship.
Among these derivatives, compound KZa-17 displayed good antibacterial activity against Xanthomonas oryzae pv. oryzae (Xoo), Xanthomonas axonopodis pv. citri, Pseudo-monas sollamacearum and Erwinia aroideae. The MIC values were 3.12, 1.56, 6.25, 12.5 μg/mL, respectively, which were better than the positive control drugs thiodiazole copper and bismerthiazol. The results of in vivo antibacterial activity test showed that the protective effect of compound KZa-17 on rice at 200 μg/mL was 32.76%, which was better than that of thiodiazole copper (24.73%). The biochemical experiments showed that compound KZa-17 could inhibit biofilm formation of Xoo, reduce drug resistance and pathogenicity of bacteria, damage cell membrane integrity, increase permeability, and cause oxidative stress damage.
Most of the newly synthesized derivatives based on THCz alkaloid guidance showed favorable antimicrobial effects. In particular, compound KZa-17 can be used as a candidate lead compound for further structural optimization and development. © 2024 Society of Chemical Industry.
植物病原细菌和真菌对各种作物有广泛影响,并造成严重经济损失。与传统抗生素和杀菌剂相比,生物碱因其显著的生物活性而值得关注。四氢咔唑(THCz)广泛存在于许多吲哚生物碱中,并具有多种药理活性。本研究采用费歇尔吲哚合成法和片段拼接策略,以THCz生物碱为导向设计并合成了一种新型类药物化学实体,评估了这些衍生物对植物病原细菌和真菌的抗菌活性,并探讨了构效关系。
在这些衍生物中,化合物KZa - 17对水稻白叶枯病菌(Xanthomonas oryzae pv. oryzae,Xoo)、柑橘溃疡病菌(Xanthomonas axonopodis pv. citri)、青枯雷尔氏菌(Pseudo-monas sollamacearum)和软腐欧文氏菌(Erwinia aroideae)表现出良好的抗菌活性。其最低抑菌浓度(MIC)值分别为3.12、1.56、6.25、12.5μg/mL,优于阳性对照药物噻菌铜和叶枯唑。体内抗菌活性试验结果表明,化合物KZa - 17在200μg/mL时对水稻的保护效果为32.76%,优于噻菌铜(24.73%)。生化实验表明,化合物KZa - 17可抑制Xoo生物膜形成,降低细菌耐药性和致病性,破坏细胞膜完整性,增加通透性,并引起氧化应激损伤。
大多数基于THCz生物碱导向新合成的衍生物显示出良好的抗菌效果。特别是,化合物KZa - 17可作为进一步结构优化和开发的候选先导化合物。© 2024化学工业协会。