Physiological responses in two populations of Andropogon glomeratus Walter B.S.P. to short-term salinity
- 31 January 1988
- journal article
- research article
- Published by Springer Nature in Oecologia
- Vol. 75 (1) , 78-82
- https://doi.org/10.1007/bf00378817
Abstract
Andropogon glomeratus is a C4 nonhalophytic grass which exhibits population differentiation for tolerance to short-term salinity exposure. To investigate possible physiological mechanisms whch enable salt-tolerant individuals to survive short-term inundation, gas exchange and water relations parameters were measured before and during a 5-day watering treatment of half-strength synthetic seawater in plants from a tolerant and a non-tolerant population. Photosynthetic recovery was followed for 10 days after the salinity treatment. Photosynthetic CO2 uptake was substantially inhibited in both populations. Stomatal conductances decreased and intercellular CO2 concentrations increased, indicating non-stomatal factors were primarily responsible for the decrease in CO2 uptake. After termination of the salinity treatment photosynthetic capacity increased more rapidly in the tolerant population and reached the pretreatment level after 6 days, whereas the nontolerant population did not recover fully after 10 days. A-Ci curves measured before and after the salinity treatment indicated a decrease in the carboxylation efficiency, and suggested a proportionately greater metabolic inhibition relative to the increase in the stomatal limitation. Osmotic adjustment occurred in a 2-day period in the tolerant population, but there was no change in the osmotic potentials or the water potential at the point of turgor loss in the nontolerant population. Thus short-term salt tolerance in the marsh population is associated with rapid osmotic adjustment and recovcry of photosynthetic capacity shortly after the end of the salinity exposure, rather than maintenance of greater photosynthesis during the salinity treatment.Keywords
This publication has 29 references indexed in Scilit:
- Effect of Salinity on Leaf Gas Exchange in Two Populations of a C4 NonhalophytePlant Physiology, 1987
- The Influence of Resaturation Method and Tissue 3Quercus albaL. SeedlingsJournal of Experimental Botany, 1987
- Rapid Osmotic Adjustment by a Succulent Halophyte to Saline ShockPlant Physiology, 1985
- Photosynthetic and Stomatal Responses of the Grey Mangrove, Avicennia marina, to Transient Salinity ConditionsPlant Physiology, 1984
- THE SOLUTE AND WATER RELATIONS OF AGROSTIS STOLONIFERA ECOTYPES DIFFERING IN THEIR SALT TOLERANCENew Phytologist, 1981
- TOLERANCE TO SALT, PARTIAL ANAEROBIOSIS, AND OSMOTIC STRESS IN AGROSTIS STOLONIFERANew Phytologist, 1977
- THE EFFECTS OF SODIUM CHLORIDE ON HIGHER PLANTSBiological Reviews, 1976
- SOME ASPECTS OF TISSUE WATER RELATIONS IN THREE POPULATIONS OF EUCALYPTUS VIMINALIS LABILL.New Phytologist, 1975
- Salinity tolerance within the grass speciesAgrostis stolonifera LPlant and Soil, 1971
- Evolution of Salt Tolerance in Two Coexisting Species of GrassNature, 1968