Stomata control the flow of gases between plants and the atmosphere. This review is centered on stomatal responses to elevated CO2 concentration and considers other key environmental factors and underlying mechanisms at multiple levels. First, an outline of general responses in stomatal conductance under elevated CO2 is presented. Second, stomatal density response, its development, and the trade-off with leaf growth under elevated CO2 conditions are depicted. Third, the molecular mechanism regulating guard cell movement at elevated CO2 is suggested. Finally, the interactive effects of elevated CO2 with other factors critical to stomatal behavior are reviewed. It may be useful to better understand how stomata respond to elevated CO2 levels w...
The atmospheric carbon dioxide concentration have always been fluctuating. In the past [CO2] did not...
Investigations were undertaken in the context of the potential environmental impact of Carbon Captur...
Rising atmospheric concentrations of carbon dioxide (CO2) and ozone (O3) will stimulate and impair, ...
Guard cells form epidermal stomatal gas-exchange valves in plants and regulate the aperture of stoma...
Definitions of the variables used and the units are given in Table 1 The literature reports enormous...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
The response of adaxial and abaxial stomatal conductance in Rumex obtusifolius to growth at elevated...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Rising atmospheric carbon dioxide concentration ([CO2]) significantly influences plant growth, devel...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus · euramericana clone I214...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus · euramericana clone I214...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus x euramericana clone 1214) ...
CO2 acts as an environmental signal that regulates stomatal movements. High CO2 concentrations reduc...
The atmospheric carbon dioxide concentration have always been fluctuating. In the past [CO2] did not...
Investigations were undertaken in the context of the potential environmental impact of Carbon Captur...
Rising atmospheric concentrations of carbon dioxide (CO2) and ozone (O3) will stimulate and impair, ...
Guard cells form epidermal stomatal gas-exchange valves in plants and regulate the aperture of stoma...
Definitions of the variables used and the units are given in Table 1 The literature reports enormous...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
The response of adaxial and abaxial stomatal conductance in Rumex obtusifolius to growth at elevated...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
Rising atmospheric carbon dioxide concentration ([CO2]) significantly influences plant growth, devel...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus · euramericana clone I214...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus · euramericana clone I214...
Using a free-air CO2 enrichment (FACE) experiment, poplar trees (Populus x euramericana clone 1214) ...
CO2 acts as an environmental signal that regulates stomatal movements. High CO2 concentrations reduc...
The atmospheric carbon dioxide concentration have always been fluctuating. In the past [CO2] did not...
Investigations were undertaken in the context of the potential environmental impact of Carbon Captur...
Rising atmospheric concentrations of carbon dioxide (CO2) and ozone (O3) will stimulate and impair, ...