Combinatorial Synthesis of Sulfonate Derivatives of α/β-Naphthol as Anti- Oomycete Agents

卵菌 辣椒疫霉 化学 磺酸盐 EC50型 取代基 杀菌剂 结构-活动关系 菌丝体 组合化学 立体化学 生物 有机化学 体外 生物化学 食品科学 植物 胡椒粉 基因
作者
Zhiping Che,Yuee Tian,Song Zhang,Jiaxuan He,Di Sun,Xiaolong Guo,Yuanhao Li,Li‐Na Zhu,Yihao Guo,Yibo Liu,Xiaobo Huang,Shengming Liu,Genqiang Chen
出处
期刊:Combinatorial Chemistry & High Throughput Screening [Bentham Science Publishers]
卷期号:25 (12): 2026-2032 被引量:8
标识
DOI:10.2174/1386207325666220128120208
摘要

Background: Developing new, efficient, and environment-friendly small molecule fungicides is the key to effectively prevent and control plant pathogenic oomycetes. α/β-Naphthol is an important raw material for drug synthesis. Due to its special structure, α/β-naphthol and its analogs possess significant biological activity. The preparation and anti-oomycete activity of novel sulfonate derivatives based on α/β-naphthol against Phytophthora capsici have not been reported yet. Methods: Thirty-two sulfonate derivatives of α/β-naphthol (4a-p and 5a-p) were prepared. The structure of all title compounds was identified by 1H NMR, MS, and m.p. The anti-oomycete activity of 4a-p and 5a-p against P. capsici was determined using the mycelial growth rate method. Results: With our ongoing research aimed at the discovery and development of fungicidal agents, 4a-p and 5a-p were designed and synthesized, and their anti-oomycete activity against P. capsici was evaluated in vitro. Two compounds 4a and 5a were found to have good anti-oomycete activity against P. capsici, and their corresponding EC50 values were 63.41 and 65.21 mg/L, respectively. Conclusion: It has been observed that the substituent R in these derivatives is aliphatic, which is very important for maintaining their anti-oomycete activity. The results lay a foundation for further design and development of sulfonate derivatives of α/β-naphthol as fungicidal agents. The structure- fungicidal activity relationship of α/β-naphthol derivatives is under investigation in our laboratory.
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