Primary Events Regulating Stem Growth at Low Water Potentials
- 1 August 1990
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 93 (4) , 1601-1609
- https://doi.org/10.1104/pp.93.4.1601
Abstract
Cell enlargement is inhibited by inadequate water. As a first step toward understanding the mechanism, all the physical parameters affecting enlargement were monitored to identify those that changed first, particularly in coincidence with the inhibition. The osmotic potential, turgor, yield threshold turgor, growth-induced water potential, wall extensibility, and conductance to water were measured in the elongating region, and the water potential was measured in the xylem of stems of dark-grown soybean (Glycine max [L.] Merr.) seedlings. A stepdown in water potential was achieved around the roots by transplanting the seedlings to vermiculite of low water content, and each of the parameters was measured simultaneously in the same plants while intact or within a few minutes of being intact using a newly developed guillotine psychrometer. The gradient of decreasing water potential from the xylem to the enlarging cells (growth-induced water potential) was the first of the parameters to decrease to a growth-limiting level. The kinetics were the same as for the inhibition of growth. The decreased gradient was caused mostly by a decreased water potential of the xylem. This was followed after 5 to 10 hours by a similar decrease in cell wall extensibility and tissue conductance for water. Later, the growth-induced water potential recovered as a result of osmotic adjustment and a rise in the water potential of the xylem. Still later, moderate growth resumed at a rate apparently determined by the low wall extensibility and tissue conductance for water. The turgor did not change significantly during the experiment. These results indicate that the primary event during the growth inhibition was the change in the growth-induced water potential. Because the growth limitation subsequently shifted to the low wall extensibility and tissue conductance for water, the initial change in potential may have set in motion subsequent metabolic changes that altered the characteristics of the wall and cell membranes.Keywords
This publication has 29 references indexed in Scilit:
- Wall Extensibility and Cell Hydraulic Conductivity Decrease in Enlarging Stem Tissues at Low Water PotentialsPlant Physiology, 1990
- Water Deficit and Abscisic Acid Cause Differential Inhibition of Shoot versus Root Growth in Soybean SeedlingsPlant Physiology, 1990
- Turgor and Growth at Low Water PotentialsPlant Physiology, 1989
- Drought- and ABA-Induced Changes in Polypeptide and mRNA Accumulation in Tomato LeavesPlant Physiology, 1988
- Water Deficit-Induced Changes in Abscisic Acid, Growth, Polysomes, and Translatable RNA in Soybean HypocotylsPlant Physiology, 1988
- Rapid Wall Relaxation in Elongating TissuesPlant Physiology, 1988
- Cell Wall Proteins at Low Water PotentialsPlant Physiology, 1987
- Origin of Growth-Induced Water PotentialPlant Physiology, 1987
- Pressure Probe and Isopiestic Psychrometer Measure Similar TurgorPlant Physiology, 1987
- Cell Wall Yield Properties of Growing TissuePlant Physiology, 1985