Stomata serve dual and often conflicting roles, facilitating carbon dioxide influx into the plant leaf for photosynthesis and restricting water efflux via transpiration. Strategies for reducing transpiration without incurring a cost for photosynthesis must circumvent this inherent coupling of carbon dioxide and water vapor diffusion. We expressed the synthetic, light-gated K+ channel BLINK1 in guard cells surrounding stomatal pores in Arabidopsis to enhance the solute fluxes that drive stomatal aperture. BLINK1 introduced a K+ conductance and accelerated both stomatal opening under light exposure and closing after irradiation. Integrated over the growth period, BLINK1 drove a 2.2-fold increase in biomass in fluctuating light without cost in...
Green plants are equipped with photoreceptors that are capable of sensing radiation in the ultraviol...
Stomata are cellular pores on the leaf epidermis that regulate CO2 uptake for photosynthesis and lim...
Dynamic light conditions require continuous adjustments of stomatal aperture. The kinetics of stomat...
Stomata serve dual and often conflicting roles, facilitating carbon dioxide influx into the plant le...
Stomatal pores facilitate gaseous exchange between the inner air spaces of the leaf and the atmosphe...
Although the signalling pathway of blue light (BL)-dependent stomatal opening is well characterized,...
Stomata of plant leaves open to enable CO2 entry for photosynthesis and close to reduce water loss v...
Both photosynthesis (A) and stomatal conductance (g s ) respond to changing irradiance, yet stomatal...
AbstractThe control of gaseous exchange between the leaf and bulk atmosphere by stomata governs CO2 ...
Stomata control gaseous fluxes between the internal leaf air spaces and the external atmosphere. Gua...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Recent work in this laboratory has been directed towards increasing net photosynthesis or decreasing...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
Stomata of most plants close to preserve water when the demand for CO2 by photosynthesis is reduced....
The control of gaseous exchange between the leaf and bulk atmosphere by stomata governs CO2 uptake f...
Green plants are equipped with photoreceptors that are capable of sensing radiation in the ultraviol...
Stomata are cellular pores on the leaf epidermis that regulate CO2 uptake for photosynthesis and lim...
Dynamic light conditions require continuous adjustments of stomatal aperture. The kinetics of stomat...
Stomata serve dual and often conflicting roles, facilitating carbon dioxide influx into the plant le...
Stomatal pores facilitate gaseous exchange between the inner air spaces of the leaf and the atmosphe...
Although the signalling pathway of blue light (BL)-dependent stomatal opening is well characterized,...
Stomata of plant leaves open to enable CO2 entry for photosynthesis and close to reduce water loss v...
Both photosynthesis (A) and stomatal conductance (g s ) respond to changing irradiance, yet stomatal...
AbstractThe control of gaseous exchange between the leaf and bulk atmosphere by stomata governs CO2 ...
Stomata control gaseous fluxes between the internal leaf air spaces and the external atmosphere. Gua...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Recent work in this laboratory has been directed towards increasing net photosynthesis or decreasing...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
Stomata of most plants close to preserve water when the demand for CO2 by photosynthesis is reduced....
The control of gaseous exchange between the leaf and bulk atmosphere by stomata governs CO2 uptake f...
Green plants are equipped with photoreceptors that are capable of sensing radiation in the ultraviol...
Stomata are cellular pores on the leaf epidermis that regulate CO2 uptake for photosynthesis and lim...
Dynamic light conditions require continuous adjustments of stomatal aperture. The kinetics of stomat...