Temperature effects on malic-acid efflux from the vacuoles and on the carboxylation pathways in crassulacean-acid-metabolism plants
- 1 January 1988
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 174 (4) , 453-461
- https://doi.org/10.1007/bf00634473
Abstract
The studies described in the paper were conducted with tissue slices of Crassulacean acid metabolism (CAM) plants floating in isotonic buffer. In a first series of experiments, temperature effects on the efflux of [14C]malate and14CO2 were studied. An increase of temperature increased the efflux from the tissue in a non-linear manner. The efflux was markedly influenced also by the temperatures applied during the pretreatment. The rates of label export in response to the temperature and the relative contributions of14CO2 and [14C]malate to the label export were different in the two studied CAM plants (Kalanchoë daigremontiana, Sempervivum montanum). In further experiments, temperature response of the labelling patterns produced by14CO2 fixation and light and darkness were studied. In tissue which had accumulated malate (acidified state) an increase of temperature decreased the rates of dark CO2 fixation whilst the rates of CO2 fixation in light remained largely unaffected. An increase of temperature shifted the labelling patterns from a C4-type (malate being the mainly labelled compound) into a C3-type (label in carbohydrates). No such shift in the labelling patterns could be observed in the tissue which had depleted the previously stored malate (deacidified state). The results indicate that in the acidified tissue the increase of temperature increases the efflux of malate from the vacuole by changing the properties of the tonoplast. It is assumed that the increased export of malic acid lowers the in-vivo activity of phosphoenol pyruvate carboxylase by feedback inhibition.Keywords
This publication has 32 references indexed in Scilit:
- Net CO2 output by CAM plants in the light: the role of leaf conductancePhysiologia Plantarum, 1986
- Light period of Crassulacean Acid Metabolism: Control of carbon transfer from malic acid to carbohydrates by CO2 concentrationPhysiologia Plantarum, 1985
- Mechanism of passive malic-acid efflux from vacuoles of the CAM plantKalanchoë daigremontianaThe Journal of Membrane Biology, 1984
- Light-Stimulated Burst of Carbon Dioxide Uptake following Nocturnal Acidification in the Crassulacean Acid Metabolism Plant Kalanchoë diagremontianaPlant Physiology, 1982
- Day/Night Changes in the Sensitivity of Phosphoenolpyruvate Carboxylase to Malate during Crassulacean Acid MetabolismPlant Physiology, 1980
- Resolution of Net Dark Fixation of Carbon Dioxide into Its Respiration and Gross Fixation Components in Bryophyllum daigremontianumJournal of Experimental Botany, 1976
- Proton and malate fluxes in cells of Bryophyllum daigremontianum leaf slices in relation to potential osmotic pressure of the mediumZeitschrift für Pflanzenphysiologie, 1974
- Mineral ion fluxes in slices of acidified and de-acidified leaves of the CAM plant Bryophyllum daigremontianumZeitschrift für Pflanzenphysiologie, 1974
- Dark fixation of CO2 in crassulacean acid metabolism: Are two carboxylation steps involved?Zeitschrift für Pflanzenphysiologie, 1974
- Studies on phosphoenolpyruvate carboxylase and other enzymes of crassulacean acid metabolism of Bryophyllum tubiflorum and Sedum praealtumZeitschrift für Pflanzenphysiologie, 1972