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High-Resolution Chlorophyll Fluorescence Imaging Serves as a Non-Invasive Indicator to Monitor the Spatio-Temporal Variations of Metabolism during the Day-Night Cycle and during the Endogenous Rhythm in Continuous Light in the CAM Plant Kalanchoë daigremontiana
Authors:U. Rascher,U. Lü  ttge
Affiliation:Institute of Botany, Darmstadt University of Technology, Schnittspahnstr. 3 - 5, 64287 Darmstadt, Germany;Biosphere 2 Center, Columbia University, Oracle, AZ 85623, USA
Abstract:Abstract: Chlorophyll fluorescence imaging is a powerful tool to monitor temporal and spatial dynamics of photosynthesis and photosynthesis-related metabolism. In this communication, we use high resolution chlorophyll fluorescence imaging techniques under strictly controlled conditions to quantify day courses of relative effective quantum yield (φPSII) of an entire leaf of the crassulacean acid metabolism (CAM) plant Kalanchoë daigremontiana at different light intensities. Careful interpretation of the combined gas exchange and fluorescence data, in combination with micro malate samples, allow the interpretation of underlying metabolic properties, such as leaf internal CO2 concentration (ciCO2) and energy demand of the cells. Spatial variations of φPSII, which occur as running wave fronts at the transition from phase III to phase IV of CAM, may reflect spatial differences of ciCO2, which are preserved in the tightly packed mesophyll cells of K. daigremontiana. An endogenous rhythm is driven by a master switch which mediates between malate storage and malate release to and from the vacuole, however, using fluorescence techniques, four different metabolic states can be distinguished which also account for the activity of phosphoenolpyruvate carboxylase.
Keywords:Kalanchoë daigremontiana    chlorophyll fluorescence imaging    photosynthetic efficiency    quantum yield of photosynthesis    crassulacean acid metabolism (CAM)    internal CO2 concentration    malate
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