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Bioactivity and structure-activity relationship of cinnamic acid esters and their derivatives as potential antifungal agents for plant protection

机译:肉桂酸酯及其衍生物作为潜在的植物保护用抗真菌剂的生物活性和构效关系

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摘要

A series of cinnamic acid esters and their derivatives were synthesized and evaluated for antifungal activities in vitro against four plant pathogenic fungi by using the mycelium growth rate method. Structure−activity relationship was derived also. Almost all of the compounds showed some inhibition activity on each of the fungi at 0.5 mM. Eight compounds showed the higher average activity with average EC50 values of 17.4–28.6 μg/mL for the fungi than kresoxim-methyl, a commercial fungicide standard, and ten compounds were much more active than commercial fungicide standards carbendazim against P. grisea or kresoxim-methyl against both P. grisea and Valsa mali. Compounds >C1 and >C2 showed the higher activity with average EC50 values of 17.4 and 18.5 μg/mL and great potential for development of new plant antifungal agents. The structure−activity relationship analysis showed that both the substitution pattern of the phenyl ring and the alkyl group in the alcohol moiety significantly influences the activity. There exists complexly comprehensive effect between the substituents on the phenyl ring and the alkyl group in the alcohol moiety on the activity. Thus, cinnamic acid esters showed great potential the development of new antifungal agents for plant protection due to high activity, natural compounds or natural compound framework, simple structure, easy preparation, low-cost and environmentally friendly.
机译:合成了一系列肉桂酸酯及其衍生物,并通过菌丝体生长速率法评估了其对四种植物病原真菌的体外抗真菌活性。构效关系也被推导。几乎所有化合物在0.5 mM时对每种真菌均表现出一定的抑制活性。八种化合物对真菌的平均活性较高,对真菌的平均EC50值为17.4–28.6μg/ mL,比商品杀真菌剂标准多菌灵甲基多杀菌素和多菌灵对多杀稻瘟病菌或多菌灵的活性高得多。甲基对P. grisea和Valsa mali都有抗性。化合物> C1 和> C2 显示出更高的活性,平均EC50值为17.4和18.5μg/ mL,具有开发新型植物抗真菌剂的巨大潜力。结构活性关系分析表明,醇部分中苯环和烷基的取代方式均显着影响活性。苯环上的取代基与醇部分中的烷基之间的活性存在复杂的综合影响。因此,肉桂酸酯由于具有高活性,天然化合物或天然化合物骨架,结构简单,易于制备,成本低廉和环境友好等优点,在开发用于植物保护的新型抗真菌剂方面显示出巨大的潜力。

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