Zheng Shaojun, Zhu Rui, Tang Bing, Chen Lizhuang, Bai Hongjin, Zhang Jiwen
School of Environmental and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang Jiangsu, China.
Key Laboratory of Protection & Utilization of Biological Resources in Tarim Basin of Xinjiang Production and Construction Corps/College of Life Sciences, Tarim University, Alar, Xinjiang, China.
Nat Prod Res. 2021 Jun;35(11):1816-1824. doi: 10.1080/14786419.2019.1644635. Epub 2019 Aug 5.
Starting from indole-3-acetonitrile, a total of 66 new calycanthaceous alkaloid analogues were synthesised in excellent yields. The prepared compounds were evaluated for their biological activities against a broad range of plant pathogen fungi. The results of bioassays indicated that the majority of tested compounds displayed comparable or better bioactivities than the positive control. Notably, Compound displayed a significant activities against , and , even better than the positive control streptomycin and Penicillin, with the same MIC value of 15.63 µg mL. Compound displayed a broad spectrum and remarkably activities among the tested calycanthaceous analogues and might be a novel potential leading compound for further development of antifungal agents. The results obtained in the study will be very helpful for further design and structural optimisation of calycanthaceous alkaloids as potential agrochemical lead for plant disease control.
从吲哚 - 3 - 乙腈出发,以优异的产率总共合成了66种新的蜡梅科生物碱类似物。对所制备的化合物针对多种植物病原真菌的生物活性进行了评估。生物测定结果表明,大多数测试化合物表现出与阳性对照相当或更好的生物活性。值得注意的是,化合物对[具体真菌名称1]、[具体真菌名称2]和[具体真菌名称3]表现出显著活性,甚至优于阳性对照链霉素和青霉素,其最小抑菌浓度(MIC)值相同,均为15.63 µg/mL。在测试的蜡梅科类似物中,化合物表现出广谱且显著的活性,可能是用于进一步开发抗真菌剂的新型潜在先导化合物。该研究中获得的结果将对蜡梅科生物碱作为植物病害防治潜在农用化学品先导的进一步设计和结构优化非常有帮助。