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Stomata-targeted nanocarriers enhance plant defense against pathogen colonization

Nature Communications. 2025-05; 
Suppanat Puangpathumanond, Heng Li Chee, Cansu Sevencan, Xin Yang, On Sun Lau, Tedrick Thomas Salim Lew Department of Chemical and Biomolecular Engineering, National University of Singapore,
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摘要

Plant pathogens significantly threaten food security and agricultural sustainability, with climate change expected to exacerbate outbreaks. Despite these growing threats, current agrochemical delivery remains untargeted and inefficient. In this study, we develop surface ligand-engineered nanoparticles for targeted delivery to stomata (SENDS), a nanocarrier system designed to target stomatal guard cells, which serve as key pathogen entry points into the plant apoplast. Our approach employs rational ligand engineering of porous nanoparticles, optimizing ligand orientation for efficient stomata targeting across different plant species. Foliar application of SENDS encapsulating an antimicrobial plant alkaloid reduc... More

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