阿米西达
杀菌剂
化学
行动方式
苯并咪唑
茄丝核菌
过氧化氢酶
体内
酶
生物化学
抗氧化剂
多菌灵
体外
立体化学
细胞内
作用机理
戊唑醇
结构-活动关系
药理学
戒毒(替代医学)
生物活性
IC50型
对接(动物)
抗真菌
氧化还原
抑制性突触后电位
作者
Renle Xu,Jiaying Wu,Chenyan Yin,向瑜 秦,Xiaoyu Wang,Lifan Pei,Amir Khan Korai,Yanqing Gao,Shujing Yu,Jian Li
标识
DOI:10.1021/acs.jafc.5c17571
摘要
This study developed a series of rosin-based Schiff derivatives to control rice sheath blight caused by Rhizoctonia solani, with azoxystrobin as a positive control in in vitro fungicidal screening across eight phytopathogens. Compound 3c displayed the most potent inhibitory effect against R. solani (effective concentration value of 3.54 mg/L), outperforming azoxystrobin (8.64 mg/L). In vivo activity assays confirmed that 3c exerted significant protective and curative effects on rice plants, with values of 84.0% and 78.9%. Morphological and ultrastructural observations revealed that 3c destroyed cell structures and triggered a cytoplasmic leakage. Physiological and biochemical analyses indicated that 3c inhibited the activities of antioxidant enzymes (especially the catalase enzyme), disrupting intracellular redox homeostasis, detoxification capacity, and energy metabolism. Molecular docking results demonstrated that 3c stably bound to the active site of CAT through hydrogen bonds and hydrophobic interactions. Collectively, these findings suggest that 3c is a promising fungicidal candidate for sustainable management of rice disease.
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