作物保护
生物技术
生物
杀虫剂
化学控制
作物
生化工程
农药
病菌
可持续农业
可持续生产
农作物产量
农学
病虫害综合治理
可持续发展
持续性
病虫害防治
作者
Meiqing Li,Siyu Zhu,Yang Yu,Hao Ren,Honglei Yan,Yanyan Liu,Shuang Gao,Fengrui Li
摘要
BACKGROUND: Conventional pesticide delivery systems often suffer from low deposition and insufficient targeted release in complex pathogenic microenvironments. Inspired by the pathogen infection process, this study aimed to develop a novel controlled-release platform capable of responding to specific infection microenvironments to achieve efficient and targeted pesticide delivery. RESULTS: A dual-responsive nano-delivery platform (BZP) was successfully constructed by loading the fungicide boscalid (Bos) onto a zeolitic imidazolate framework-8 (ZIF-8) nanocarrier and utilizing pectin as a pathogen-recognizable gatekeeper. The acidic pH- and pectinase-responsive properties enabled on-demand pesticide release specifically in the infection induced by Botrytis cinerea. BZP demonstrated an 87.35% cumulative release rate of Bos under acidic conditions (pH 5.5) with pectinase, exceeding that of nanocarriers without the pectin coating (65.64%) after 168 h of treatment. The nanoparticles (73 ± 11 nm) enabled bidirectional vascular transport and fungal cell wall penetration for targeted antimicrobial action. Meanwhile, it exhibited potent antifungal activity that matched the efficacy of the boscalid wettable powder (BWP). Additionally, the pectin coating greatly improved the foliar retention of BZP. Notably, BZP showed no apparent phytotoxicity to test plants and exhibited excellent biosafety in earthworms. CONCLUSION: This study provides theoretical insights for enhancing the targeted release and efficient foliar deposition of nanopesticides, aiming to improve pesticide utilization efficiency and ensure environmental safety, thereby offering promising applications in sustainable agriculture. © 2026 Society of Chemical Industry.
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