Anti-phytopathogenic activity and the possible mechanisms of action of isoquinoline alkaloid sanguinarine

血桂碱 巴马汀 白屈菜红碱 黄连碱 生物碱 EC50型 异喹啉 菌丝体 阿米西达 吴茱萸碱 孢子萌发 化学 生物化学 小檗碱 生物 植物 体外 药理学 杀菌剂 立体化学 孢子 蛋白激酶C
作者
Zhong-Min Zhao,Xiaofei Shang,Raymond Kobla Lawoe,Ying‐Qian Liu,Rui Zhou,Yu Sun,Yin-Fang Yan,Juncai Li,Guan‐Zhou Yang,Cheng‐Jie Yang
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier BV]
卷期号:159: 51-58 被引量:59
标识
DOI:10.1016/j.pestbp.2019.05.015
摘要

Isoquinoline alkaloids possess broad pharmacological activities. In this study, the antifungal activity of twelve isoquinoline alkaloids, including berberine (1), jatrorrhizine (2), coptisine (3), corydaline (4), tetrahydroberberine (5), chelidonine (6), dihydrosanguinarine (7), chelerythrine (8), sanguinarine (9), palmatine (10), tetrahydropalmatine (11) and columbamine (12) were evaluated against eight plant pathogenic fungi in vitro. All the tested compounds showed varying degrees of inhibition against the eight tested plant fungi. Among them, sanguinarine exhibited high antifungal activity (EC50 ranging from 6.96-59.36 μg/mL). It displayed the best inhibitory activity against Magnaporthe oryzae (EC50 = 6.96 μg/mL), compared with azoxystrobin (EC50 = 12.04 μg/mL), and significantly suppressed spore germination of M. oryzae with the inhibition rate reaching 100% (50 μg/mL). The optical microscopy and scanning electron microscopy observations revealed that after treating M. oryzae mycelia with sanguinarine at 10 μg/mL, the mycelia appeared curved, collapsed and the cell membrane integrity was eventually damaged. Furthermore, the reactive oxygen species production, mitochondrial membrane potential and nuclear morphometry of mycelia had been changed, and the membrane function and cell proliferation of mycelia were destroyed. These results will enrich our insights into action mechanisms of antifungal activity of sanguinarine against M. oryzae.
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