Changes in Levels of Solutes During Osmotic Adjustment to Water Stress in Leaves of Four Tropical Pasture Species
- 1 January 1981
- journal article
- research article
- Published by CSIRO Publishing in Functional Plant Biology
- Vol. 8 (1) , 77-91
- https://doi.org/10.1071/pp9810077
Abstract
Three tropical grasses, green panic (Panicum maximum var. trichoglume), buffel grass (Cenchrus ciliaris), and spear grass (Heteropogon contortus), and a tropical legume, siratro (Macroptilium atropurpureum), were field-grown in a semi-arid environment. One set of plants was well watered, while another set was subjected to a continuous 35-day drying cycle. Samples of specific leaves were taken at the beginning, middle and end of the drying cycle, and 1, 5 and 14 days after rewatering. The major low-molecular-weight solutes which accumulated in the grasses during water stress were the inorganic ions sodium (green panic), potassium (buffel and spear grass) and chloride (all grasses). Accumulation of these ions largely accounted for the osmotic adjustments determined from a previous study of water relations of the leaves. Concentrations of the minor constituents glucose and fructose increased only slightly in the stressed grasses, whereas levels of sucrose, the major carbohydrate component, increased substantially, particularly in spear grass. Inositol accumulated to a small extent in spear grass. Differences between the grasses were evident in the organic acid spectrum and also in changes in concentration of organic acids due to water stress. In water-stressed tissue, malate levels increased in green panic and spear grass but were reasonably constant in buffel grass. Aconitate concentrations (not detected in buffel grass) decreased in stressed green panic, but increased in spear grass. Oxalate (only trace quantities in spear grass) was a major component in green panic and buffel grass, but did not appear to vary with increase in water stress. Succinate accumulated only in stressed spear grass. The contribution of carbohydrates and organic acids to the osmotic adjustment was relatively small. Proline accumulated to varying degrees in all stressed grasses. Betaine occurred only in trace amounts in spear grass, but accumulated substantially in green panic and buffel grass. Water-stressed leaves of siratro did not accumulate inorganic ions, sugars, organic acids, proline or betaine, but pinitol levels increased. Implications of the results relating osmotic adjustment to changes in chemical composition are discussed.Keywords
This publication has 17 references indexed in Scilit:
- Availability of Chloride Affects the Balance between Potassium Chloride and Potassium Malate in Guard Cells of Vicia faba L.Plant Physiology, 1978
- Osmotic Adjustment of Sorghum and Sunflower Crops in Response to Water Deficits and Its Influence on the Water Potential at Which Stomata CloseFunctional Plant Biology, 1978
- Salt Stress and Comparative Physiology in the Gramineae. I. Ion Relations of Two Salt- and Water-Stressed Barley Cultivars, California Mariout and ArimarFunctional Plant Biology, 1978
- Is there an osmotic regulatory mechanism in algae and higher plants?Journal of Theoretical Biology, 1977
- Role of Changes in Solute Concentration in Maintaining Favorable Water Balance in Field‐Grown Cotton1Agronomy Journal, 1977
- Quaternary ammonium compounds in plants in relation to salt resistancePhytochemistry, 1977
- Root Temperature and Soil Water Potential Effects on Growth and Soluble Carbohydrate Concentration of Corn Seedlings1Crop Science, 1976
- Amino Acid and Protein Metabolism in Bermuda Grass During Water StressPlant Physiology, 1966
- The Composition of Staphylococcus aureus in Relation to the Water Activity of the Growth MediumJournal of General Microbiology, 1964
- The biosynthesis and metabolism of betaines in plants. 1. The estimation and distribution of glycinebetaine (betaine) in Beta vulgaris L. and other plantsBiochemical Journal, 1953