← Papers

Unverified paper record

BODIPY-Rhodacycle Fluorescent Probe for In Situ Imaging of Ethylene Dynamics in Live Systems.

Analytical chemistry · 26 Nov 2025 · 10.1021/acs.analchem.5c05350

Abstract

Endogenous ethylene production occurs across biological kingdoms, yet its pathophysiological roles remain incompletely defined. In situ detection of ethylene is impeded by its inherent volatility and chemical inertness. Here, we report BORh, a new turn-on fluorescent probe that operates via ethylene-triggered displacement of a rhodium quencher from a BODIPY-rhodacycle scaffold, liberating the intensely fluorescent BOET. BORh exhibits high sensitivity and selectivity, broad pH tolerance, and negligible cytotoxicity. In mammalian PC12 cells, it permits real-time visualization of both exogenously supplied and in situ generated ethylene. Within photosynthetic systems, BORh overcomes cell wall barriers and chlorophyll autofluorescence, enabling in situ monitoring of ethylene dynamics in algae ( Chlamydomonas reinhardtii ) and higher plant ( Arabidopsis thaliana and Allium cepa ) tissues. Remarkably, BORh-enabled fluorescence imaging revealed synchronous upregulation of ethylene and reactive oxygen species (ROS) under plant abiotic stress. H 2 O 2 exhibited concentration-dependent biphasic regulation of ethylene biosynthesis, whereas ethylene exerted no reciprocal effect on ROS generation. These findings establish ROS as upstream regulators of ethylene biosynthesis within plant stress signaling cascades. BORh emerges as a robust chemical tool for spatiotemporal dissection of ethylene biochemistry, offering new insights into ROS-ethylene crosstalk during plant stress responses and paving the way for future investigations of ethylene function in mammalian pathophysiology.

Plant phenotyping relevance

植物組織内のエチレン動態を可視化・測定する蛍光プローブを開発し、植物での性能を実証しているため、植物生理状態の取得法が中心である。

abstractHere, we report BORh, a new turn-on fluorescent probe
abstractenabling in situ monitoring of ethylene dynamics in algae ( Chlamydomonas reinhardtii ) and higher plant ( Arabidopsis thaliana and Allium cepa ) tissues
abstractBORh-enabled fluorescence imaging revealed synchronous upregulation of ethylene and reactive oxygen species (ROS) under plant abiotic stress

Code and data availability

公開本文の所在を確認できませんでした。非公開または購読が必要な可能性があります。

No evidence-backed public reproduction asset is currently recorded.

This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.