• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in ways that appear to optimize water-use efficiency. It is unknown where in the history of land plants this important stomatal control mechanism evolved. Here, we test the hypothesis that major clades of plants have distinct stomatal sensitivities to Ca reflecting a relatively recent evolution of water-use optimization in derived angiosperms.\ud \ud • Responses of stomatal conductance (gs) to step changes between elevated, ambient and low Ca (600, 380 and 100 µmol mol−1, respectively) were compared in a phylogenetically and ecologically diverse range of higher angiosperms, conifers, ferns and lycopods.\ud \ud • All species responded to low Ca ...
<div><p>Plant gas exchange is a key process shaping global hydrological and carbon cycles and is oft...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
Angiosperm and conifer tree species respond differently when exposed to elevated CO2, with angiosper...
Angiosperm and conifer tree species respond differently when exposed to elevated CO2, with angiosper...
<p>Stomatal conductances of all species were responsive to CO<sub>2</sub> in the light, but the natu...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
Plant gas exchange is a key process shaping global hydrological and carbon cycles and is often chara...
<div><p>Plant gas exchange is a key process shaping global hydrological and carbon cycles and is oft...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
Angiosperm and conifer tree species respond differently when exposed to elevated CO2, with angiosper...
Angiosperm and conifer tree species respond differently when exposed to elevated CO2, with angiosper...
<p>Stomatal conductances of all species were responsive to CO<sub>2</sub> in the light, but the natu...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (A(net)) and minimi...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
Plant gas exchange is a key process shaping global hydrological and carbon cycles and is often chara...
<div><p>Plant gas exchange is a key process shaping global hydrological and carbon cycles and is oft...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
AbstractStomata are small pores in the surface of plant leaves, balancing the uptake of CO2 against ...