Chen Xianrui, Li Yunyun, Li Gen, Wu Yanling, Mao Junru, Lin Jiasheng, Diao Mengxue, Huang Zhimin
National Key Laboratory of Non-Food Biomass Energy Technology, Guangxi Key Laboratory of Advanced Microwave Manufacturing Technology, Guangxi Academy of Sciences, 98 Daling Road, Nanning 530007, China.
Plants (Basel). 2025 Sep 1;14(17):2712. doi: 10.3390/plants14172712.
Huanglongbing (HLB), associated with Liberibacter asiaticus (Las), has severely impacted global citrus production, with no economically viable control measures currently available. This study explored microwave treatment at 2450 MHz as an innovative physical method for HLB control, combining pathogen elimination efficacy with metabolomic analysis. In controlled experiments, 36 HLB-infected citrus plants were treated with 500 W or 250 W microwave irradiation and underwent 10 cycles, achieving up to 99.83% reduction Las titer. Non-targeted metabolomic analysis identified 15 significantly altered metabolites, including upregulated beta-caryophyllene and lysophosphatidylinositols, and downregulated 5'-S-methyl-5'-thioadenosine. The results indicate that microwave treatment effectively suppressed Las while simultaneously triggering citrus physiological metabolic changes. These findings suggest that microwave treatment could serve as a sustainable alternative to chemical controls. However, further optimization of parameters, such as wavelengths, voltages, currents, and safety protocols, will be essential for practical field implementation.
黄龙病(HLB)与亚洲韧皮杆菌(Las)有关,已严重影响全球柑橘生产,目前尚无经济上可行的控制措施。本研究探索了2450兆赫的微波处理作为一种创新的物理方法来控制黄龙病,将病原体消除效果与代谢组学分析相结合。在对照实验中,36株感染黄龙病的柑橘植株接受了500瓦或250瓦的微波照射,并进行了10个循环,Las滴度降低了99.83%。非靶向代谢组学分析确定了15种显著变化的代谢物,包括上调的β-石竹烯和溶血磷脂酰肌醇,以及下调的5'-S-甲基-5'-硫代腺苷。结果表明,微波处理有效地抑制了Las,同时引发了柑橘生理代谢的变化。这些发现表明,微波处理可以作为化学控制的可持续替代方法。然而,对于实际田间应用,进一步优化波长、电压、电流和安全协议等参数至关重要。