Wall Extensibility and Cell Hydraulic Conductivity Decrease in Enlarging Stem Tissues at Low Water Potentials
- 1 August 1990
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 93 (4) , 1610-1619
- https://doi.org/10.1104/pp.93.4.1610
Abstract
Measurements with a guillotine psychrometer (H Nonami, JS Boyer [1990] Plant Physiol 94: 1601-1609) indicate that the inhibition of stem growth at low water potentials (low ψw) is accompanied by decreases in cell wall extensibility and tissue hydraulic conductance to water that eventually limit growth rate in soybean (Glycine max L. Merr.). To check this conclusion, we measured cell wall properties and cell hydraulic conductivities with independent techniques in soybean seedlings grown and treated the same way, i.e. grown in the dark and exposed to low ψw by transplanting dark grown seedlings to vermiculite of low water content. Wall properties were measured with an extensiometer modified for intact plants, and conductances were measured with a cell pressure probe in intact plants. Theory was developed to relate the wall measurements to those with the psychrometer. In the elongation zone, the plastic deformability of the walls decreased when measured with the extensiometer while growth was inhibited at low ψw. It increased during a modest growth recovery. This behavior was the same as that for the wall extensibility observed previously with the psychrometer. Tissue that was killed before measurement with the extensiometer also showed a similar response, indicating that changes in wall extensibility represented changes in wall physical properties and not rates of wall biosynthesis. The elastic compliance (reciprocal of bulk elastic modulus) did not change in the elongating or mature tissue. The hydraulic conductivity of cortical cells decreased in the elongating tissue and increased slightly during growth recovery in a response similar to that observed with the psychrometer. We conclude that the plastic properties of the cell walls and the conductance of the cells to water were decreased at low ψw but that the elastic properties of the walls were of little consequence in this response.This publication has 29 references indexed in Scilit:
- Osmotic Properties of Pea Internodes in Relation to Growth and Auxin ActionPlant Physiology, 1983
- Growth and Water Relations of Cultured Tomato Cells after Adjustment to Low External Water PotentialsPlant Physiology, 1982
- Control of Leaf Expansion by Nitrogen Nutrition in Sunflower PlantsPlant Physiology, 1982
- Growth-sustaining Water Potential Distributions in the Primary Corn RootPlant Physiology, 1980
- Growth-induced Water Potentials in Plant Cells and TissuesPlant Physiology, 1978
- Pressure Probe Technique for Measuring Water Relations of Cells in Higher PlantsPlant Physiology, 1978
- Effect of Turgor Pressure and Cell Size on the Wall Elasticity of Plant CellsPlant Physiology, 1977
- Growth Rate and Turgor PressurePlant Physiology, 1974
- Leaf Enlargement and Metabolic Rates in Corn, Soybean, and Sunflower at Various Leaf Water PotentialsPlant Physiology, 1970
- Regulation of hibernating periods by temperature.Proceedings of the National Academy of Sciences, 1965