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具有直接杀菌活性和系统获得性抗性的基于3,4-二氯异噻唑的高效抗真菌嗜球果伞素的合成。

Synthesis of potent antifungal 3,4-dichloroisothiazole-based strobilurins with both direct fungicidal activity and systemic acquired resistance.

作者信息

Yang Dongyan, Qi Xin, Zhou Xinhua, Li Zhengming, Zhou Hongjun, Fan Zhijin

机构信息

Innovative Institute for Plant Health, School of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering No. 24, Dongsha Road, Haizhu District Guangzhou Guangdong 510225 PR China

State Key Laboratory of Elemento-Organic Chemistry, College of Chemistry, Nankai University No. 94, Weijin Road Tianjin 300071 P. R. China

出版信息

RSC Med Chem. 2022 Jan 24;13(4):429-435. doi: 10.1039/d1md00402f. eCollection 2022 Apr 20.

Abstract

To continue our efforts to discover novel fungicide lead structures, a series of 3,4-dichloroisothiazole-based-strobilurin derivatives were synthesized and characterized. bioassay screening with 9 different plant pathogens suggested that the linker between 3,4-dichloroisothiazole and the pharmacophore played a critical role in fungicidal potency and scope. Among these, compound 2a with a -methoxy oxime ether as a linker was a better active compound. Further modification of 2a, 4a and 6a by replacement of carboxylic ester with a carboxamide led to the best active compound 7a in this study. bioassay screening and verification indicated that compounds 1c and 7a displayed the best efficacy against wheat white powder () and corn rust ( Schw). In addition, compound 7a was validated by upregulating salicylic acid (SA) signaling and reactive oxygen species (ROS)-related gene expression. A potent lead compound with a broad spectrum of fungicidal and systemic acquired resistance activity has been discovered by bridging 3,4-dichloroisothiazole and the strobilurin pharmacophore with various linkers.

摘要

为了继续我们发现新型杀菌剂先导结构的工作,合成并表征了一系列基于3,4-二氯异噻唑的甲氧基丙烯酸酯类衍生物。对9种不同植物病原体的生物测定筛选表明,3,4-二氯异噻唑与药效基团之间的连接子对杀菌效力和范围起着关键作用。其中,以甲氧基肟醚为连接子的化合物2a是一种活性较好的化合物。通过用羧酰胺取代羧酸酯对2a、4a和6a进行进一步修饰,得到了本研究中活性最佳的化合物7a。生物测定筛选和验证表明,化合物1c和7a对小麦白粉病()和玉米锈病(Schw)表现出最佳防效。此外,通过上调水杨酸(SA)信号和活性氧(ROS)相关基因表达对化合物7a进行了验证。通过用各种连接子连接3,4-二氯异噻唑和甲氧基丙烯酸酯药效基团,发现了一种具有广谱杀菌和系统获得性抗性活性的有效先导化合物。

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