Developmental Regulation of Enzymes of Sucrose and Hexose Metabolism in Effective and Ineffective Soybean Nodules
- 1 February 1990
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 92 (2) , 346-351
- https://doi.org/10.1104/pp.92.2.346
Abstract
Soybean (Glycine max) nodules formed by inoculation with either an effective strain or an ineffective (noninvasive, nodule-forming) strain of Bradyrhizobium japonicum were assayed for changes in developmental patterns of carbon metabolic enzymes of the plant nodule cells. Of the enzyme activities measured, only sucrose synthase, glutamine synthetase, and alcohol dehydrogenase were altered in the ineffective nodules relative to the effective nodules. Sucrose synthase and glutamine synthetase activities were greatly reduced, whereas alcohol dehydrogenase activity was elevated. Dark-induced senescence severely affected sucrose synthase but had little, if any, effect on the other enzymes measured. The development patterns of the anaerobically induced enzymes, aldolase and alcohol dehydrogenase, were different from those expected, implying that their development is not regulated solely by oxygen deprivation. However, anaerobic treatment of nodules resulted in responses similar to those enzymes in maize. The developmental profiles of the carbon metabolic enzymes suggest that carbohydrates are metabolized via the sucrose synthase and pentose phosphate pathways. This route of carbon metabolism, compared to glycolysis, would reduce the requirement of ATP for carbohydrate catabolism, generate NADPH for biosynthetic reactions, and provide intermediates for plant secondary metabolism.This publication has 19 references indexed in Scilit:
- Nodulin Gene Expression in Effective Alfalfa Nodules and in Nodules Arrested at Three Different Stages of DevelopmentPlant Physiology, 1988
- Purification and Properties of the H+-Translocating ATPase from the Plasma Membrane of Tomato RootsPlant Physiology, 1986
- A Novel Sucrose Synthase Pathway for Sucrose Degradation in Cultured Sycamore CellsPlant Physiology, 1986
- Sucrose Synthase of Soybean NodulesPlant Physiology, 1985
- Symbiotic mutants of rhizobium meliloti that uncouple plant from bacterial differentiationCell, 1985
- Pyrophosphate:fructose 6-phosphate 1-phosphotransferase and glycolysis in non-photosynthetic tissues of higher plantsBiochemical Journal, 1985
- Enzymes of the Poly-β-Hydroxybutyrate and Citric Acid Cycles of Rhizobium japonicum BacteroidsPlant Physiology, 1984
- Enzymes of Sucrose Breakdown in Soybean NodulesPlant Physiology, 1984
- Metabolism of 14C-Labeled Photosynthate and Distribution of Enzymes of Glucose Metabolism in Soybean NodulesPlant Physiology, 1983
- Reversible Dark-Induced Senescence of Soybean Root NodulesPlant Physiology, 1983