Proline Content and Metabolism during Rehydration of Wilted Excised Leaves in the Dark
- 1 December 1972
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 50 (6) , 679-681
- https://doi.org/10.1104/pp.50.6.679
Abstract
Excised bean (Phaseolus vulgaris) leaves were used to measure changes in proline content and proline metabolism during rehydration in the dark after the leaves had been incubated in the dark 24 hours in a wilted condition.The increase in nonprotein proline which occurs in wilted leaves stopped immediately upon rehydration, and thereafter levels of proline declined. The rate of decline and the fate of the metabolized proline depended on the amount of carbohydrate present. When the level of carbohydrate was relatively high, the rate of decline in proline content was slow, and the proline was converted mainly to protein proline. When the level of carbohydrate was relatively low, the rate of proline decline was rapid and a large percentage of the proline was oxidized to CO(2) and other amino acids in addition to conversion to protein proline.The results indicate that nonprotein proline can be oxidized when the level is increased by endogenous synthesis. Proline oxidation has been observed when the levels are increased by adding exogenous proline. Oxidation of endogenous proline is inhibited by carbohydrates in the leaf, as is true of oxidation of exogenous proline.Keywords
This publication has 7 references indexed in Scilit:
- Effects of Proline and Carbohydrates on the Metabolism of Exogenous Proline by Excised Bean Leaves in the DarkPlant Physiology, 1972
- Effect of Wilting on Carbohydrates during Incubation of Excised Bean Leaves in the DarkPlant Physiology, 1971
- Changes in Amino Acid Content of Excised Leaves During Incubation. III. Role of Sugar in the Accumulation of Proline in Wilted LeavesPlant Physiology, 1966
- Changes in Amino Acid Content of Excised Leaves During Incubation I. The Effect of Water Content of Leaves and Atmospheric Oxygen LevelPlant Physiology, 1966
- Amino Acid and Protein Metabolism in Bermuda Grass During Water StressPlant Physiology, 1966
- Conversion of m-carboxyphenylalanine to m-carboxyphenylglycine in Wedgewood iris leavesArchives of Biochemistry and Biophysics, 1965
- PHOTOMETRIC ESTIMATION OF PROLINE AND ORNITHINEJournal of Biological Chemistry, 1952