Shunyu Xiang, Meijun Chen, Shaorui Tian, Haoran Peng, H S Sun, Mengji Cao, Cécilia Ménard‐Moyon, Xianchao Sun, Alberto Bianco
Abstract Ralstonia solanacearum is a major plant pathogen causing bacterial wilt, whose unpredictable onset hinders timely detection and effective control. Here, we report the design, preparation and field use of a dual pH-responsive multifunctional double network (DN) hydrogel for the efficient and sustainable control of bacterial wilt. The primary network of carboxylated agarose chelates Zn 2+ and loosens under acidic conditions (pH ≤ 5) to release a pesticide (zhongshengmycin) and Zn 2+ , while the secondary L-phenylalanine (Phe)/ Zn 2+ network disassembles to provide additional bioactive components (Phe and Zn 2+ ). This dual-triggered release achieves a combined antibacterial effect, enhances plant growth, and activates plant disease resistance pathways. A simple root application protects plants for up to 14 days, and field experiments demonstrate disease control for up to 30 days, significantly preserving tomato yield. Here, we present a sustainable, effective system for managing bacterial wilt and highlight the potential of smart hydrogels in crop protection.