Potassium homeostasis in vacuolate plant cells.
- 17 September 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (19) , 10510-10514
- https://doi.org/10.1073/pnas.93.19.10510
Abstract
Plant cells contain two major pools of K+, one in the vacuole and one in the cytosol. The behavior of K+ concentrations in these pools is fundamental to understanding the way this nutrient affects plant growth. Triple-barreled microelectrodes have been used to obtain the first fully quantitative measurements of the changes in K+ activity (aK) in the vacuole and cytosol of barley (Hordeum vulgare L.) root cells grown in different K+ concentrations. The electrodes incorporate a pH-selective barrel allowing each measurement to be assigned to either the cytosol or vacuole. The measurements revealed that vacuolar aK declined linearly with decreases in tissue K+ concentration, whereas cytosolic aK initially remained constant in both epidermal and cortical cells but then declined at different rates in each cell type. An unexpected finding was that cytoplasmic pH declined in parallel with cytosolic aK, but acidification of the cytosol with butyrate did not reveal any short-term link between these two parameters. These measurements show the very different responses of the vacuolar and cytosolic K+ pools to changes in K+ availability and also show that cytosolic K+ homeostasis differs quantitatively in different cell types. The data have been used in thermodynamic calculations to predict the need for, and likely mechanisms of, active K+ transport into the vacuole and cytosol. The direction of active K+ transport at the vacuolar membrane changes with tissue K+ status.Keywords
This publication has 14 references indexed in Scilit:
- Simultaneous Measurement of Intracellular pH and K+ or NO3- in Barley Root Cells Using Triple-Barreled, Ion-Selective MicroelectrodesPlant Physiology, 1995
- The Plant Inorganic Pyrophosphatase Does Not Transport K+ in Vacuole Membrane Vesicles Multilabeled with Fluorescent Probes for H+, K+, and Membrane PotentialPublished by Elsevier ,1995
- Calcium-Activated K+ Channels and Calcium-Induced Calcium Release by Slow Vacuolar Ion Channels in Guard Cell Vacuoles Implicated in the Control of Stomatal Closure.Plant Cell, 1994
- Can K+ Channels Do It All?Plant Cell, 1993
- Electrical Measurements on EndomembranesScience, 1992
- Analysis and presentation of intracellular measurements obtained with ion-selective microelectrodesExperimental Physiology, 1990
- Role of "active" potassium transport in the regulation of cytoplasmic pH by nonanimal cells.Proceedings of the National Academy of Sciences, 1987
- Ion Distribution in Roots of Barley Seedlings Measured by Electron Probe X-Ray MicroanalysisPlant Physiology, 1981
- Intracellular pH.Physiological Reviews, 1981
- Transmembrane Electropotential in Barley Roots as Related to Cell Type, Cell Location, and Cutting and Aging EffectsPlant Physiology, 1976