<div><p>Stomata are small pores surrounded by guard cells that regulate gas exchange between plants and the atmosphere. Guard cells integrate multiple environmental signals and control the aperture width to ensure appropriate stomatal function for plant survival. Leaf temperature can be used as an indirect indicator of stomatal conductance to environmental signals. In this study, leaf thermal imaging of 374 <i>Arabidopsis</i> ecotypes was performed to assess their stomatal responses to changes in environmental CO2 concentrations. We identified three ecotypes, Köln (Kl-4), Gabelstein (Ga-0), and Chisdra (Chi-1), that have particularly low responsiveness to changes in CO2 concentrations. We next investigated stomatal responses to other enviro...
Stomata have a key role in the regulation of gas exchange and intercellular CO2 concentrations of le...
Increases in global carbon dioxide, temperature and, in some latitudes, humidity are characteristic ...
SummaryStomatal pores of higher plants close in response to decreases in atmospheric relative humidi...
Global average atmospheric CO2 concentrations are predicted to double before the end of this century...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Stomatal responses to closing stimuli are disturbed after long-term exposure of plants to low vapour...
Stomatal responses to closing stimuli are disturbed after long-term exposure of plants to low vapour...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Climate change mitigation is at the forefront of global discussion, thus the study of plant response...
Climate change mitigation is at the forefront of global discussion, thus the study of plant response...
Stomata are microscopic pores found on the surfaces of leaves that act to control CO2 uptake and wat...
Stomatal pores of higher plants close in response to decreases in atmospheric relative humidity (RH)...
Stomata modulate the exchange of water and CO2 between plant and atmosphere. Although stomatal densi...
Plants require essentially carbon dioxide (CO2) and water to survive. However, CO2 uptake implicates...
Plants require essentially carbon dioxide (CO2) and water to survive. However, CO2 uptake implicates...
Stomata have a key role in the regulation of gas exchange and intercellular CO2 concentrations of le...
Increases in global carbon dioxide, temperature and, in some latitudes, humidity are characteristic ...
SummaryStomatal pores of higher plants close in response to decreases in atmospheric relative humidi...
Global average atmospheric CO2 concentrations are predicted to double before the end of this century...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Stomatal responses to closing stimuli are disturbed after long-term exposure of plants to low vapour...
Stomatal responses to closing stimuli are disturbed after long-term exposure of plants to low vapour...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Climate change mitigation is at the forefront of global discussion, thus the study of plant response...
Climate change mitigation is at the forefront of global discussion, thus the study of plant response...
Stomata are microscopic pores found on the surfaces of leaves that act to control CO2 uptake and wat...
Stomatal pores of higher plants close in response to decreases in atmospheric relative humidity (RH)...
Stomata modulate the exchange of water and CO2 between plant and atmosphere. Although stomatal densi...
Plants require essentially carbon dioxide (CO2) and water to survive. However, CO2 uptake implicates...
Plants require essentially carbon dioxide (CO2) and water to survive. However, CO2 uptake implicates...
Stomata have a key role in the regulation of gas exchange and intercellular CO2 concentrations of le...
Increases in global carbon dioxide, temperature and, in some latitudes, humidity are characteristic ...
SummaryStomatal pores of higher plants close in response to decreases in atmospheric relative humidi...