Unverified paper record
Live Whole-Plant Detection of Rapidly Accumulating Reactive Oxygen Species Following Applied Stress in Arabidopsis thaliana.
Methods in molecular biology (Clifton, N.J.) · 1 Jan 2023 · 10.1007/978-1-0716-3044-0_21
Abstract
Reactive Oxygen Species (ROS) waves serve as key systemic signals within plants. Following the initial sensation of a stress, auto-propagation of ROS (the ROS wave) begins and rapidly spreads to distant, systemic tissues of the plant and invokes important physiological responses. Highly sensitive methods capable of imaging this systemic signal at the whole-plant level have long been desired for the study of ROS signaling. Here, we describe a straightforward and highly sensitive method for the detection and quantification of ROS in planta at the whole-plant level in Arabidopsis thaliana with the In Vivo Imaging System (IVIS) Lumina S5 imaging platform and the fluorescent probe 2',7'-dichlorofluorescin diacetate (H 2 DCFDA). This method can be used for high-throughput screening of the ROS Wave within Arabidopsis plants, with up to 16 plants capable of being imaged approximately every half hour.
Plant phenotyping relevance
植物全体のROSを画像化・定量するIVIS測定法を開発・記述しており、植物生理状態のフェノタイピング取得が中心です。
abstractHighly sensitive methods capable of imaging this systemic signal at the whole-plant level have long been desired
abstractwe describe a straightforward and highly sensitive method for the detection and quantification of ROS in planta at the whole-plant level
abstractThis method can be used for high-throughput screening of the ROS Wave within Arabidopsis plants
Code and data availability
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