Novel 5H-Chromeno[4,3-b]Pyridin-5-One Derivatives Against Phytopathogenic Fungi: Synthesis and Molecular Docking

IF 2.5 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Chemistry & Biodiversity Pub Date : 2025-03-27 DOI:10.1002/cbdv.202500386
Hailing Fan, Huiyin Chen, Quanjia Chen, Le Pan, Lu Jin
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Abstract

The development of novel fungicides is imperative for the protection of crops and the assurance of sustainable agricultural development. A total of 33 5H-chromeno[4,3-b]pyridin-5-one derivatives have been synthesized, and the antifungal activities of these derivatives against four pathogenic fungi (Alternaria alternata, Alternaria solani, Botrytis cinerea, and Fusarium oxysporum) have been evaluated. The structure-property relationship indicated that the introduction of side-chain groups at the hydroxyl position played a significant role in the antifungal activity, with the inhibition rates increasing by 3–4 folds. The results demonstrate that compound 1i exhibits superior antifungal activity in comparison to the positive controls, osthole, and azoxystrobin. The inhibition rate of 1i against A. alternata was found to be 68.90% at a concentration of 100 µg/mL, with a median effective concentration value of 15.72 µg/mL. Additionally, the in vivo inhibition rate of 1i against A. alternata on pears was found to keep 56.4% at 400 µg/mL after 7 days, which is more effective than those of the positive controls (37.3% for azoxystrobin and 42.3% for osthole). Molecular docking based on homology modeling reveals that the compound 1i is placed in a pocket constructed from amino acid residues including Pro-380, Thr-307, Leu-305, Gln-103, Gly-104, Thr-266, His-406, Ala-101, Ala-102, Arg-451, His-98, Leu-457, and Thr-99 of succinic dehydrogenase (SDH) with the binding energy of -7.16 kcal/mol. It was suggested that the compound 1i can be considered a potential inhibitor of SDH to exhibit antifungal activity.

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新型抗植物病原真菌5H-Chromeno[4,3-b]吡啶-5- 1衍生物的合成与分子对接
共合成了33个5H-chromeno[4,3-b]吡啶-5- 1衍生物,并对这些衍生物对4种病原菌(alternnaria alternata, Alternaria solani, Botrytis cinerea和Fusarium oxysporum)的抑菌活性进行了评价。结构-性能关系表明,在羟基位置引入侧链基团对抗真菌活性有显著作用,抑制率提高了3-4倍。结果表明,化合物1i与阳性对照、蛇床子素和偶氮嘧菌酯相比,具有较强的抗真菌活性。在100µg/mL浓度下,1i对交替稻瘟菌的抑制率为68.90%,EC50值为15.72µg/mL。结果表明,在400µg/mL浓度下,1i对梨树交替病菌的体内抑制率为56.4%,高于阳性对照(偶氮菌酯酶37.3%、蛇床子素42.3%)。基于同源性模型的分子对接表明,化合物1i位于琥珀酸脱氢酶(SDH)氨基酸残基构建的口袋中,结合能为-7.16 kcal/mol。这表明化合物1i可以被认为是SDH的潜在抑制剂,具有抗真菌活性。
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来源期刊
Chemistry & Biodiversity
Chemistry & Biodiversity 环境科学-化学综合
CiteScore
3.40
自引率
10.30%
发文量
475
审稿时长
2.6 months
期刊介绍: Chemistry & Biodiversity serves as a high-quality publishing forum covering a wide range of biorelevant topics for a truly international audience. This journal publishes both field-specific and interdisciplinary contributions on all aspects of biologically relevant chemistry research in the form of full-length original papers, short communications, invited reviews, and commentaries. It covers all research fields straddling the border between the chemical and biological sciences, with the ultimate goal of broadening our understanding of how nature works at a molecular level. Since 2017, Chemistry & Biodiversity is published in an online-only format.
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