The stomatal physiology of calcicoles in relation to calcium delivered in the xylem sap
- 22 July 1994
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 257 (1348) , 81-85
- https://doi.org/10.1098/rspb.1994.0097
Abstract
Physiological mechanisms in calcicoles in simulated highly calcareous habitats have been investigated using Campanula glomerata, Centaurea scabiosa and Leontodon hispidus. Diffusion resistance of the leaves was unaffected by high concentrations (15 mol m-3) of rhizospheric calcium in all three species, and in C. scabiosa and L. hispidus there was no inhibition of leaf extension even at 20 mol m-3. Free calcium concentrations in samples of xylem sap taken from the roots were found to be very close to those in the rhizosphere. However, stomata on isolated epidermis of C. scabiosa and L. hispidus closed in response to elevated free calcium in the same manner as those of Commelina communis, a calcium-neutral plant. It is concluded that the calcicoles must possess an efficient mechanism to remove high concentrations of free calcium delivered into the leaf's apoplast by the transpiration stream. If the xylem sap reached the apoplast around the stomata containing even 5-10% of its free calcium, stomatal function would be disturbed. If these species are representative of calcicoles in general, the leaf's mechanism for preventing excess calcium from reaching the stomatal guard cells may be indispensable. The capacity to remove or sequester most of the calcium delivered in the xylem may be a key factor in determining whether a plant is a calcicole or notKeywords
This publication has 10 references indexed in Scilit:
- Physiological disturbances caused by high rhizospheric calcium in the calcifugeLupinus luteusJournal of Experimental Botany, 1994
- The transpiration stream in the leaf apoplast: water and solutesPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1993
- Calcium in the xylem and its influence on the behaviour of stomataPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1993
- Inability to solubilize phosphate in limestone soils—key factor controlling calcifuge habit of plantsPlant and Soil, 1992
- The influence of increasing rhizospheric calcium on the ability of Lupinus luteus L. to control water use efficiencyNew Phytologist, 1991
- Effects of increased levels of soil CaCO3 on Lupin (Lupinus angustifolius) growth and nutritionSoil Research, 1990
- SYNERGISM BETWEEN CALCIUM IONS AND ABSCISIC ACID IN PREVENTING STOMATAL OPENINGNew Phytologist, 1985
- Calcium as an environmental variablePlant, Cell & Environment, 1984
- Influence of Limestone, Silicates and Soil pH on VegetationPublished by Springer Nature ,1983
- Some Experimental Aspects of the Calcicole-Calcifuge Problem: I. The Effects of Competition and Mineral Nutrition Upon Seedling Growth in the FieldJournal of Ecology, 1960