Zhao Xiaohan, Zhai Lingzi, Chen Jingwen, Zhou Yongzhi, Gao Jiuhe, Xu Wenxiao, Li Xiaowei, Liu Kaixu, Zhong Tian, Xiao Ying, Yu Xi
State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Taipa, Macao 999078, People's Republic of China.
Faculty of Medicine, Macau University of Science and Technology, Avenida Wai Long, Taipa, Macau 999078, People's Republic of China.
J Agric Food Chem. 2024 Jul 17;72(28):15401-15415. doi: 10.1021/acs.jafc.4c00454. Epub 2024 Jun 14.
In the context of global population growth expected in the future, enhancing the agri-food yield is crucial. Plant diseases significantly impact crop production and food security. Modern microfluidics offers a compact and convenient approach for detecting these defects. Although this field is still in its infancy and few comprehensive reviews have explored this topic, practical research has great potential. This paper reviews the principles, materials, and applications of microfluidic technology for detecting plant diseases caused by various pathogens. Its performance in realizing the separation, enrichment, and detection of different pathogens is discussed in depth to shed light on its prospects. With its versatile design, microfluidics has been developed for rapid, sensitive, and low-cost monitoring of plant diseases. Incorporating modules for separation, preconcentration, amplification, and detection enables the early detection of trace amounts of pathogens, enhancing crop security. Coupling with imaging systems, smart and digital devices are increasingly being reported as advanced solutions.
在未来全球人口增长的背景下,提高农业食品产量至关重要。植物病害对作物生产和粮食安全有重大影响。现代微流控技术为检测这些病害提供了一种紧凑且便捷的方法。尽管该领域仍处于起步阶段,很少有全面的综述探讨这一主题,但实际研究具有巨大潜力。本文综述了用于检测由各种病原体引起的植物病害的微流控技术的原理、材料和应用。深入讨论了其在实现不同病原体的分离、富集和检测方面的性能,以阐明其前景。凭借其通用设计,微流控技术已被开发用于快速、灵敏且低成本地监测植物病害。结合分离、预浓缩、扩增和检测模块能够早期检测痕量病原体,增强作物安全性。与成像系统相结合,越来越多的智能和数字设备被报道为先进的解决方案。