The maintenance of turgor, volume and nutrient supply. Plant Physiol 69: 456–459Ĭram WJ (1976) Negative feedback regulation of transport in cells. Plant Cell and Environment 7: 63–70īuser-Suter C, Wiemken A, Matile P (1982) A malic acid permease in isolated vacuoles of a crassulacean acid metabolism plant. Planta 154: 332–338īuchanan-Bollig IC, Kluge M, Müller D (1984) Kinetic changes with temperature of phosphoenolpyruvate carboxylase from a CAM plant. Plant Physiol 68: 1354–1358īrulfert J, Guerrier D, Queiroz O (1982) Photoperiodism and crassulacean acid metabolism II Relations between leaf aging and photoperiod in crassulacean acid metabolism induction. Physiol Plant 60: 21–25īoudet AM, Canut H, Alibert G (1981) Isolation and characterization of vacuoles from Melilotus alba mesophyll. This process is experimental and the keywords may be updated as the learning algorithm improves.Īoki K, Nishida K (1984) ATPase activity associated with vacuoles and tonoplast vesicles isolated from the CAM plant, Kalanchoe daigremontiana. These keywords were added by machine and not by the authors. In all of these examples vacuolar malate accumulation is an integral part of biophysical/biochemical pH-stat mechanisms (Smith and Raven 1976). surplus uptake of cations over anions (Torii and Laties 1966 Osmond and Laties 1969) or OH - production during reduction of inorganic anions like NO 3 - and SO 4 2- (Osmond 1976 Smith and Raven 1976) extension growth associated with the acid-growth mechanism (Haschke and Lüttge 1977) and shrinking and swelling of cells in turgor-dependent movements as in stomata (Raschke 1979). ![]() ![]() Examples are: osmotic adjustments in general (Cram 1976) plant nutrition, e.g. Accumulation of organic-acid anions and particularly of malate in the vacuole is involved in many functions of higher plants.
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