柠檬黄单胞菌
柑橘溃疡病
溃疡
化学
园艺
植物
细菌
生物
生物化学
遗传学
基因
作者
Wenhua Rao,Shang Gao,Minyu Li,Chao Shen,Tao Lin,Dingyang Zhang,Xiaohong Pan,Binghai Lou,Wenhua Rao,Jinfeng Hu
摘要
Abstract BACKGROUND Citrus canker, a bacterial disease caused by Xanthomonas citri subsp. citri (Xcc), is one of the major threats to the citrus industry. Inorganic copper (Cu) formulations such as Bordeaux mixture and Kocide 3000 are currently used to control citrus canker; however, they are poorly water‐soluble and have negligible plant transport, making the systemic treatment of citrus canker difficult. RESULTS This study synthesized Cu 2 O@His by one‐pot self‐assembly of Cu 2+ and histidine for controlling citrus canker. The results showed that Cu 2 O@His had a uniform size distribution (≈2.7 nm) and good water solubility. It could disrupt the cell membrane of Xcc and enter into the bacterial cells to destroy the DNA, thereby inhibiting the growth (half maximal inhibitory concentration = 7.4 μg mL −1 ) and production of virulence factors of Xcc. This was attributed to its excellent dispersibility and reactive oxygen species‐inducing ability. The therapeutic efficacy and plant transport of Cu 2 O@His were much better than those of Kocide 3000. Additionally, it had remarkable biosafety for citrus plants and earthworms (lethal concentration 50% >> 40 mg kg −1 ). CONCLUSION This study provides a new, eco‐friendly and more efficient option for citrus canker control. © 2025 Society of Chemical Industry.
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