Chrome Extension
WeChat Mini Program
Use on ChatGLM

Discovery of Hyrtinadine A and Its Derivatives as Novel Antiviral and Anti-Phytopathogenic-Fungus Agents

Ji Dong, Henan Ma, Beibei Wang, Shaoxiang Yang, Ziwen Wang, Yongqiang Li, Yuxiu Liu, Qingmin Wang

MOLECULES(2022)

Cited 2|Views16
No score
Abstract
Plant diseases caused by viruses and fungi have a serious impact on the quality and yield of crops, endangering food security. The use of new, green, and efficient pesticides is an important strategy to increase crop output and deal with the food crisis. Ideally, the best pesticide innovation strategy is to find and use active compounds from natural products. Here, we took the marine natural product hyrtinadine A as the lead compound, and designed, synthesized, and systematically investigated a series of its derivatives for their antiviral and antifungal activities. Compound 8a was found to have excellent antiviral activity against the tobacco mosaic virus (TMV) (inactivation inhibitory effect of 55%/500 mu g/mL and 19%/100 mu g/mL, curative inhibitory effect of 52%/500 mu g/mL and 22%/100 mu g/mL, and protection inhibitory effect of 57%/500 mu g/mL and 26%/100 mu g/mL) and emerged as a novel antiviral candidate. These compound derivatives displayed broad-spectrum fungicidal activities against 14 kinds of phytopathogenic fungi at 50 mu g/mL and the antifungal activities of compounds 5c, 5g, 6a, and 6e against Rhizoctonia cerealis are higher than that of the commercial fungicide chlorothalonil. Therefore, this study could lay a foundation for the application of hyrtinadine A derivatives in plant protection.
More
Translated text
Key words
alkaloid,antiviral activity,fungicidal activity,hyrtinadine A,marine natural product,structure-activity relationship,structure optimization
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined