Guard cells are electrically isolated from other plant cells and therefore offer the unique possibility to conduct current- and voltage-clamp recordings on single cells in an intact plant. Guard cells in their natural environment were impaled with double-barreled electrodes and found to exhibit three physiological states. A minority of cells were classified as far-depolarized cells. These cells exhibited positive membrane potentials and were dominated by the activity of voltage-dependent anion channels. All other cells displayed both outward and inward rectifying K+-channel activity. These cells were either depolarized or hyperpolarized, with average membrane potentials of -41 mV (SD 16) and -112 mV (SD 19), respectively. Depolarized guard ...
AbstractThis study deals with effects of membrane excitation on photosynthesis and cell protection a...
A quantitative analysis of the time and voltage dependence of outward-rectifying K+ currents (IK+.ou...
Stomata open in response to red and blue light. Red light-induced stomatal movement is mediated by g...
Guard cells are electrically isolated from other plant cells and therefore offer the unique possibil...
Guard cells are electrically isolated from other plant cells and therefore offer the unique possibil...
Despite the availability of many mutants for signal transduction, Arabidopsis thaliana guard cells h...
In guard cells, membrane hyperpolarization in response to a blue light (BL) stimulus is achieved by ...
In leaf mesophyll cells of pea (Pisum sativum) light induces a transient depolarization that is at l...
Electrical properties of the plasma membrane of guard cell protoplasts isolated from stomates of Vic...
Potassium uptake and export in the resting conditions and in response to the phytohormone abscisic a...
White light (25 watts per square meter) induced an increase in plasma membrane K(+)-channel activity...
AbstractPermeabilization of biological membranes by pulsed electric fields (“electroporation”) is fr...
Light transiently depolarizes the membrane of growing leaf cells. The ionic basis for changes in cel...
The apoplastic pH of guard cells probably acidifies in response to light, since light induces proton...
AbstractThis study deals with effects of membrane excitation on photosynthesis and cell protection a...
A quantitative analysis of the time and voltage dependence of outward-rectifying K+ currents (IK+.ou...
Stomata open in response to red and blue light. Red light-induced stomatal movement is mediated by g...
Guard cells are electrically isolated from other plant cells and therefore offer the unique possibil...
Guard cells are electrically isolated from other plant cells and therefore offer the unique possibil...
Despite the availability of many mutants for signal transduction, Arabidopsis thaliana guard cells h...
In guard cells, membrane hyperpolarization in response to a blue light (BL) stimulus is achieved by ...
In leaf mesophyll cells of pea (Pisum sativum) light induces a transient depolarization that is at l...
Electrical properties of the plasma membrane of guard cell protoplasts isolated from stomates of Vic...
Potassium uptake and export in the resting conditions and in response to the phytohormone abscisic a...
White light (25 watts per square meter) induced an increase in plasma membrane K(+)-channel activity...
AbstractPermeabilization of biological membranes by pulsed electric fields (“electroporation”) is fr...
Light transiently depolarizes the membrane of growing leaf cells. The ionic basis for changes in cel...
The apoplastic pH of guard cells probably acidifies in response to light, since light induces proton...
AbstractThis study deals with effects of membrane excitation on photosynthesis and cell protection a...
A quantitative analysis of the time and voltage dependence of outward-rectifying K+ currents (IK+.ou...
Stomata open in response to red and blue light. Red light-induced stomatal movement is mediated by g...