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Immuno-impedimetric Biosensor for Onsite Monitoring of Ascospores and Forecasting of Sclerotinia Stem Rot of Canola

机译:免疫阻抗生物传感器对油菜孢子的现场监测和油菜菌核病菌茎腐烂的预测

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摘要

Sclerotinia stem rot, caused by the fungal pathogen Sclerotinia sclerotiorum, is a destructive disease of canola and many other broadleaf crops. The primary inoculum responsible for initiating Sclerotinia epidemics is airborne ascospores released from the apothecia of sclerotia. Timely detection of the presence of airborne ascospores can serve as an early-warning system for forecasting and management of the disease. A major challenge is to develop a portable and automated device which can be deployed onsite to detect and quantify the presence of minute quantities of ascospores in the air and serves as a unit in a network of systems for forecasting of the epidemic. In this communication, we present the development of an impedimetric non-Faradaic biosensor based on anti-S. sclerotiorum polyclonal antibodies as probes to selectively capture the ascospores and sense their binding by an impedance based interdigitated electrode which was found to directly and unambiguously correlate the number of ascospores on sensor surface with the impedance response.
机译:菌核病菌核盘菌引起的核盘菌茎腐病是油菜和许多其他阔叶作物的破坏性疾病。引起菌核病流行的主要接种物是从菌核的萎缩症释放出来的空气传播的子囊孢子。及时检测空气中的子囊孢子的存在可以作为疾病预警和管理的预警系统。一个主要的挑战是开发一种便携式和自动化的设备,该设备可以在现场部署以检测和量化空气中微量的子孢子的存在,并作为用于预测流行病的系统网络中的一个单元。在本交流中,我们介绍了基于anti-S的非法拉第阻抗生物传感器的开发。核盘菌多克隆抗体作为探针,可选择性地捕获子囊孢子并通过基于阻抗的叉指电极感知其结合,发现该电极可将传感器表面上子囊孢子的数量与阻抗响应直接且明确相关。

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