The short-term growth response to salt of the developing barley leaf
Open Access
- 1 March 2006
- journal article
- review article
- Published by Oxford University Press (OUP) in Journal of Experimental Botany
- Vol. 57 (5), 1079-1095
- https://doi.org/10.1093/jxb/erj095
Abstract
Recent results concerning the short-term growth response to salinity of the developing barley leaf are reviewed. Plants were grown hydroponically and the growth response of leaf 3 was studied between 10 min and 5 d following addition of 100 mM NaCl to the root medium. The aim of the experiments was to relate changes in variables that are likely to affect cell elongation to changes in leaf growth. Changes in hormone content (ABA, cytokinins), water and solute relationships (osmolality, turgor, water potential, solute concentrations), gene expression (water channel), cuticle deposition, membrane potential, and transpiration were followed, while leaf elongation velocity was monitored. Leaf elongation decreased close to zero within seconds following addition of NaCl. Between 20 and 30 min after exposure to salt, elongation velocity recovered rather abruptly, to about 46% of the pre-stress level, and remained at the reduced rate for the following 5 d, when it reached about 70% of the level in non-stressed plants. Biophysical and physiological analyses led to three major conclusions. (i) The immediate reduction and sudden recovery in elongation velocity is due to changes in the water potential gradient between leaf xylem and peripheral elongating cells. Changes in transpiration, ABA and cytokinin content, water channel expression, and plasma membrane potential are involved in this response. (ii) Significant solute accumulation, which aids growth recovery, is detectable from 1 h onwards; growing and non-growing leaf regions and mesophyll and epidermis differ in their solute response. (iii) Cuticular wax density is not affected by short-term exposure to salt; transpirational changes are due to stomatal control.Keywords
This publication has 63 references indexed in Scilit:
- Potassium activities in cell compartments of salt-grown barley leavesJournal of Experimental Botany, 2003
- Plasma Membrane Intrinsic Proteins from Maize Cluster in Two Sequence Subgroups with Differential Aquaporin ActivityPlant Physiology, 2000
- The biochemical control of leaf expansion during droughtPlant Growth Regulation, 1999
- pH-Regulated Leaf Cell Expansion in Droughted Plants Is Abscisic Acid DependentPlant Physiology, 1998
- Kinetics of maize leaf elongation IV. Effects of (+)- and (-)-abscisic acidJournal of Experimental Botany, 1998
- Can cell wall peroxidase activity explain the leaf growth response ofLolium temulentumL. during drought?Journal of Experimental Botany, 1997
- Kinetics of Maize Leaf ElongationJournal of Experimental Botany, 1991
- Dynamic Aspects and Enhancement of Leaf Elongation in RicePlant Physiology, 1980
- THE EFFECT OF KINETIN AND ABSCISIC ACID ON WATER AND ION TRANSPORT IN ISOLATED MAIZE ROOTSNew Phytologist, 1974
- Immediate and Subsequent Growth Responses of Maize Leaves to Changes in Water StatusPlant Physiology, 1971