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N-取代的N'-苯基吡啶甲酰肼对植物病原真菌的设计、合成、生物活性及作用机制

Design, synthesis, bioactivity and action mechanism of N-substituted N'-phenylpicolinohydrazides against phytopathogenic fungi.

作者信息

Zhang Yuhao, Bai Ruofei, Du Tengyi, Wang Yiwei, Zhou Bohang, Zhou Congwei, Zhou Le

机构信息

College of Chemistry & Pharmacy, Northwest A&F University, Yangling, 712100, Shaanxi, People's Republic of China.

College of Environment and Life Sciences, Weinan Normal University, Weinan, 714000, Shaanxi, People's Republic of China.

出版信息

Mol Divers. 2025 Jun;29(3):2209-2226. doi: 10.1007/s11030-024-10984-9. Epub 2024 Sep 17.

DOI:10.1007/s11030-024-10984-9
PMID:39285119
Abstract

N'-phenylpicolinohydrazide has been proven to be a promising lead compound for research and development of novel fungicides for agriculture in our previous study. As our continuing research, in this study, a series of N-substituted derivatives of N'-phenylpicolinohydrazide were synthesized and explored for the inhibition activity on nine phytopathogenic fungi and action mechanism. The results found that eleven of the compounds had excellent antifungal activity with more than 80% inhibition rates at 50 µg/mL on part or most of the fungi, especially A. solani and P. piricola. Compounds 5i, 5j and 5k showed EC values of < 8.0 µg/mL against A. solani superior to positive control carbendazim (EC = 36.0 µg/mL) while 5p and 5q exhibited the highest activity with EC values of 2.72 and 2.80 µg/mL against P. piricola superior to positive control boscalid (EC > 50.0 µg/mL). Furthermore, 5k also showed significant protective effect against A. solani infection on tomatoes in a concentration-dependent manner. Action mechanism research showed that 5k was able to increase the intracellular ROS level, change both MMP and permeability of cell membrane and damage mycelial morphology. Molecular docking studies showed that 5k could bind into ubiquinone-binding region of succinate dehydrogenase by hydrogen bonds, π-cation, π-π stacked, π-alkyl, and alkyl interactions. Additionally, the antibacterial activity was also investigated. Thus, N-substituted derivatives of N'-phenylpicolinohydrazide were emerged as novel and highly promising antifungal molecular skeletons to develop new fungicides for crop protection.

摘要

在我们之前的研究中,N'-苯基吡啶甲酰肼已被证明是一种用于农业新型杀菌剂研发的有前景的先导化合物。作为我们的持续研究,在本研究中,合成了一系列N'-苯基吡啶甲酰肼的N-取代衍生物,并研究了它们对九种植物病原真菌的抑制活性及作用机制。结果发现,其中11种化合物具有优异的抗真菌活性,在50 µg/mL浓度下对部分或大多数真菌的抑制率超过80%,尤其是对茄链格孢和梨火疫病菌。化合物5i、5j和5k对茄链格孢的EC值< 8.0 µg/mL,优于阳性对照多菌灵(EC = 36.0 µg/mL),而5p和5q对梨火疫病菌表现出最高活性,EC值分别为2.72和2.80 µg/mL,优于阳性对照啶酰菌胺(EC > 50.0 µg/mL)。此外,5k对番茄上的茄链格孢感染也表现出显著的浓度依赖性保护作用。作用机制研究表明,5k能够增加细胞内活性氧水平,改变线粒体膜电位和细胞膜通透性,并破坏菌丝形态。分子对接研究表明,5k可以通过氢键、π-阳离子、π-π堆积、π-烷基和烷基相互作用结合到琥珀酸脱氢酶的泛醌结合区域。此外,还研究了其抗菌活性。因此,N'-苯基吡啶甲酰肼的N-取代衍生物成为开发用于作物保护的新型杀菌剂的极具前景的抗真菌分子骨架。

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