Unverified paper record
Minimally-invasive, real-time, non-destructive, species-independent phytohormone biosensor for precision farming.
Biosensors & bioelectronics · 28 Jun 2022 · 10.1016/j.bios.2022.114515
Abstract
To keep up with population growth, precision farming technologies must be implemented to sustainably increase agricultural output. The impact of such technologies can be expanded by monitoring phytohormones, such as salicylic acid. In this study, we present a plant-wearable electrochemical sensor for in situ detection of salicylic acid. The sensor utilizes microneedle-based electrodes that are functionalized with a layer of salicylic acid selective magnetic molecularly imprinted polymers. The sensor's capability to detect the phytohormone is demonstrated both in vitro and in vivo with a limit of detection of 2.74 μM and a range of detection that can reach as high as 150 μM. Furthermore, the selectivity of the sensor is verified by testing the sensor on commonly occurring phytohormones. Finally, we demonstrate the capability of the sensor to detect the onset of fungal infestation in Tobacco 5 min post-inoculation. This work shows that the sensor could serve as a promising platform for continuous and non-destructive monitoring in the field and as a fundamental research tool when coupled with a portable potentiostat.
Plant phenotyping relevance
植物体内の植物ホルモンを非破壊・連続測定するウェアラブル電気化学センサーを開発し、in vitro/in vivo性能と真菌感染開始の検出を検証しており、植物状態の取得手法が中心である。
abstractwe present a plant-wearable electrochemical sensor for in situ detection of salicylic acid.
abstractThe sensor's capability to detect the phytohormone is demonstrated both in vitro and in vivo
abstractwe demonstrate the capability of the sensor to detect the onset of fungal infestation in Tobacco 5 min post-inoculation.
Code and data availability
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