CO2 provides an intermediate link in the red light response of guard cells.
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Summary
It is concluded, that in intact leaves the red light response of guard cells is mediated through a decrease of the intercellular CO2 concentration.
- Type
- article
- Published
- 2002-10-01
- Cited by
- 154
- References
- 38
- OpenAlex
- https://openalex.org/W1974696782
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30817746
Keywords
Guard cell, Biophysics, Darkness, Membrane, Red light
References
- Malate‐induced feedback regulation of plasma membrane anion channels could provide a CO2 sensor to guard cells.
- Microelectrode methods for intracellular recording and ionophoresis
- A defined range of guard cell calcium oscillation parameters encodes stomatal movements
- Introduction to biophysical plant physiology
- Evolutionary biology: Mitochondrial genes on the move
- Single guard cell recordings in intact plants: light-induced hyperpolarization of the plasma membrane.
- Photosynthetic properties of adaxial guard cells from Vicia leaves
- The HIC signalling pathway links CO2 perception to stomatal development
- Cytosolic calcium regulates ion channels in the plasma membrane of Vicia faba guard cells
- Blue light activates the plasma membrane H+‐ATPase by phosphorylation of the C‐terminus in stomatal guard cells
- Availability of Chloride Affects the Balance between Potassium Chloride and Potassium Malate in Guard Cells of Vicia faba L.
- Anions permeate and gate GCAC1, a voltage‐dependent guard cell anion channel
- Exploring biophysical and biochemical components of the osmotic motor that drives stomatal movement
- Encoding specificity in Ca2+ signalling systems
- Is the infiltration-centrifugation technique appropriate for the isolation of apoplastic fluid? A critical evaluation with different plant species.
- The multisensory guard cell. Stomatal responses to blue light and abscisic acid
- Miniaturised carbon dioxide sensor designed for measurements within plant leaves
- Separation and measurement of direct and indirect effects of light on stomata.
- The effect of elevated CO2 concentrations on K+ and anion channels of Vicia faba L. guard cells
- phot1 and phot2 mediate blue light regulation of stomatal opening
Cited by
- The acclimation of Tilia cordata stomatal opening in response to light, and stomatal anatomy to vegetational shade and its components
- The role of HT1 protein kinase in red light-induced stomatal opening
- Plant guard cell anion channel SLAC1 regulates stomatal closure
- Light-induced modification of plant plasma membrane ion transport.
- Identifying stomatal signalling genes to improve plant water use effeciency
- ABA depolarizes guard cells in intact plants, through a transient activation of R- and S-type anion channels.
- Guard cell metabolism and CO2 sensing.
- Is the signal from the mesophyll to the guard cells a vapour-phase ion?
- The Contribution of Photosynthesis to the Red Light Response of Stomatal Conductance1[OA]
- Control of stomatal aperture
- Opinion: stomatal responses to light and CO(2) depend on the mesophyll.
- Cryptochrome Signaling in Plants †
- Making sense out of Ca(2+) signals: their role in regulating stomatal movements.
- Analysis of gas exchange, stomatal behaviour and micronutrients uncovers dynamic response and adaptation of tomato plants to monochromatic light treatments.
- Cytosolic abscisic acid activates guard cell anion channels without preceding Ca2+ signals.
- The Stomata of the Fern Adiantum capillus-veneris Do Not Respond to CO2 in the Dark and Open by Photosynthesis in Guard Cells1[OA]
- Malate. Jack of all trades or master of a few?
- Opinion: The red-light response of stomatal movement is sensed by the redox state of the photosynthetic electron transport chain
- The role of the mesophyll in stomatal responses to light and CO2.
- Are fern stomatal responses to different stimuli coordinated? Testing responses to light, vapor pressure deficit, and CO2 for diverse species grown under contrasting irradiances.
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