子囊孢子
油菜
菌核病
茎腐病
生产力
农业
菌核病
持续性
工程类
农业工程
农学
园艺
生物
植物
经济
生态学
孢子
宏观经济学
作者
Pedro A. Duarte,Lukas Menze,Gaser N. Abdelrasoul,Shari Yosinski,Zak Kobos,Riley Stuermer,Mark A. Reed,Jian Yang,Xiujie S. Li,Jie Chen
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2020-01-01
卷期号:20 (19): 3644-3652
被引量:20
摘要
Smart-agriculture technologies comprise a set of management systems designed to sustainably increase the efficiency and productivity of farming. In this paper, we present a lab-on-a-chip device that can be employed as a plant disease forecasting tool for canola crop. Our device can be employed as a platform to forecast potential outbreaks of one of the most devastating diseases of canola and other crops, Sclerotinia stem rot. The system consists of a microfluidic chip capable of detecting single airborne Sclerotinia sclerotiorum ascospores. Target ascospores are injected into the chip and selectively captured by dielectrophoresis, while other spores in the sample are flushed away. Afterward, captured ascospores are released into the flow stream of the channel and are detected employing electrochemical impedance spectroscopy and coplanar microelectrodes. Our device provides a design for a low-cost, miniaturized, and automated platform technology for airborne spore detection and disease prevention.
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