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Development of a near-infrared fluorescent probe for in situ monitoring of hydrogen peroxide in plants.

Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy · 19 Apr 2025 · 10.1016/j.saa.2025.126267

Abstract

In plants, hydrogen peroxide (H 2 O 2 ), one of the significant reactive oxygen species, plays a dual function. Investigating its concentration is essential for understanding its production and scavenging mechanisms in plants. In this study, a near-infrared fluorescent probe (Cy-Bo) was developed, which is based on the hemicyanine compound. By introducing indole salts into the oxygenated anthraquinone structure, the conjugated system is expanded, enabling the probe to emit long-wavelength fluorescence in the near-infrared region, thereby minimizing interference from other biomolecules in plant tissues (λ ex = 650 nm, λ em = 720 nm). As for the specific recognition of H 2 O 2 , the pinacol phenylborate ester was selected to be the recognition group. It shows good linearity (R 2 = 0.998) in the concentration range of 0.5-100 μM, with a detection limit of 0.07 μM. Furthermore, this probe Cy-Bo has been used for in vivo fluorescence imaging in plants due to its good bio-penetration and in-situ imaging capabilities. The results reveal a significant increase in H 2 O 2 concentration in Arabidopsis thaliana under progressively increasing drought, high-temperature, and salt stress. This tool provides a non-invasive, in situ imaging method for detecting H 2 O 2 in plants, which has a fast response, easy operation, and high sensitivity. It enables visual monitoring of H 2 O 2 fluctuations and aids in advancing physiological and pathological studies related to H 2 O 2 .

Plant phenotyping relevance

植物体内の過酸化水素濃度を蛍光画像として取得・可視化するプローブとイメージング法の開発が研究の中心であり、植物の生理状態を測定するフェノタイピング手法に該当する。

abstracta near-infrared fluorescent probe (Cy-Bo) was developed
abstractThis tool provides a non-invasive, in situ imaging method for detecting H 2 O 2 in plants

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