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西亚试剂:Fluorescent chlorophyll catabolites in bananas light up blu

发布时间:2025-12-22

Fluorescent chlorophyll catabolites in bananas light up blue halos of cell death

Simone Mosera,b, Thomas Müllera,b, Andreas Holzingerc, Cornelius Lützc, Steffen Jockuschd, Nicholas J. Turrod,1 and Bernhard Kr?utlera,b,1

aInstitute of Organic Chemistry and
bCentre for Molecular Biosciences, University of Innsbruck, A-6020 Innsbruck, Austria;
cInstitute of Botany, University of Innsbruck, A-6020 Innsbruck, Austria; and
dDepartment of Chemistry, Columbia University, New York, NY 10027

Breakdown of chlorophyll is a major contributor to the diagnostic color changes in fall leaves, and in ripening apples and pears, where it commonly provides colorless, nonfluorescent tetrapyrroles. In contrast, in ripening bananas (Musa acuminata) chlorophylls fade to give unique fluorescent catabolites (FCCs), causing yellow bananas to glow blue, when observed under UV light. Here, we demonstrate the capacity of the blue fluorescent chlorophyll catabolites to signal symptoms of programmed cell death in a plant. We report on studies of bright blue luminescent rings on the peel of very ripe bananas, which arise as halos around necrotic areas in ‘senescence associated' dark spots. These dark spots appear naturally on the peel of ripe bananas and occur in the vicinity of stomata. Wavelength, space, and time resolved fluorescence measurements allowed the luminescent areas to be monitored on whole bananas. Our studies revealed an accumulation of FCCs in luminescent rings, within senescing cells undergoing the transition to dead tissue, as was observable by morphological textural cellular changes. FCCs typically are short lived intermediates of chlorophyll breakdown. In some plants, FCCs are uniquely persistent, as is seen in bananas, and can thus be used as luminescent in vivo markers in tissue undergoing senescence. While FCCs still remain to be tested for their own hypothetical physiological role in plants, they may help fill the demand for specific endogenous molecular reporters in noninvasive assays of plant senescence. Thus, they allow for in vivo studies, which provide insights into critical stages preceding cell death.

 

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