杀菌剂
合理设计
化学控制
生物技术
杀虫剂
生物
风险分析(工程)
有害生物分析
病虫害综合治理
生化工程
环境安全
生物杀虫剂
病虫害防治
农林复合经营
毒理
农学
新兴技术
业务
工程类
抗药性
工作(物理)
可持续生产
合成生物学
作物保护
作者
Lihui Shao,Yinyin Wu,Xianqun Hu,Bo Zhang,Xiang Zhou,Song Yang
摘要
BACKGROUND: Addressing escalating pesticide resistance and food security necessitates sustainable plant pathogen management. This study rationally designed and synthesized novel chromone-acylhydrazone derivatives engineered to target fungal tubulin, aiming to provide new avenues for disease control. RESULTS: . Mechanistic studies revealed that H9's 3-fluorobenzoylhydrazide moiety disrupts microtubule polymerization via critical hydrogen bonding, while the chromone core facilitates favorable π-alkyl interactions. H9 demonstrated promising pharmacokinetic profiles and negligible mammalian toxicity. Further, encapsulation within polyurethane microcapsules (H9-Loaded PU MCs) yielded an efficient (89.12% encapsulation efficiency) sustained-release system, significantly improving foliar adhesion and fungicidal efficacy. CONCLUSIONS: This work highlights H9 as a groundbreaking, safe fungicide, whose exceptional bioactivity, favorable safety profile, and advanced sustained-release formulation technology offer a powerful solution for next-generation sustainable pest management. This underscores the significant potential of rational molecular design coupled with advanced formulation technology in advancing pesticide candidates with green potential. © 2026 Society of Chemical Industry.
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