More efficient gas exchange strategies under dynamic light environments have been hypothesised to contribute to the dominance of angiosperms in the vascular plant flora. However, we still lack a clear understanding of how stomatal dynamics affect photosynthetic dynamics and whether differences exist between lineages. Stomatal and photosynthetic dynamics following changes in irradiance were studied in 15 species, encompassing ferns, gymnosperms and angiosperms. We determined the effect of stomatal speed on dynamic photosynthesis and water loss. Moreover, we assessed whether dynamic behaviour followed evolutionary lineage divisions, or whether ecological adaptation to maximise light fleck use could describe dynamic behaviour. ...
The best predictor of leaf level photosynthetic rate is the porosity of the leaf surface, as determi...
Stomata control gaseous exchange between the leaf and bulk atmosphere limiting CO2 uptake for photos...
<div><p>Ferns usually have relatively lower photosynthetic potential than angiosperms. However, it i...
More efficient gas exchange strategies under dynamic light environments have been hypothesised to co...
Plants control water-use efficiency (WUE) by regulating water loss and CO2 diffusion through stomata...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
The proportion of the leaf epidermis allocated to stomata (EP%) and stomatal function (the capacity ...
The exchange of water for carbon dioxide required for photosynthesis in the leaves of vascular plant...
Summary Stomatal responses to environmental signals differ substantially between ferns and angiosper...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Both photosynthesis (A) and stomatal conductance (g s ) respond to changing irradiance, yet stomatal...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
Photosynthetic kinetics in changing light intensity is considered pivotal for the survival of unders...
Producing leaves with closely spaced veins is a key innovation linked to high rates of photosynthesi...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
The best predictor of leaf level photosynthetic rate is the porosity of the leaf surface, as determi...
Stomata control gaseous exchange between the leaf and bulk atmosphere limiting CO2 uptake for photos...
<div><p>Ferns usually have relatively lower photosynthetic potential than angiosperms. However, it i...
More efficient gas exchange strategies under dynamic light environments have been hypothesised to co...
Plants control water-use efficiency (WUE) by regulating water loss and CO2 diffusion through stomata...
Stomata are the numerous pores on the leaves of land plants. These pores occur between two adjustabl...
The proportion of the leaf epidermis allocated to stomata (EP%) and stomatal function (the capacity ...
The exchange of water for carbon dioxide required for photosynthesis in the leaves of vascular plant...
Summary Stomatal responses to environmental signals differ substantially between ferns and angiosper...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Both photosynthesis (A) and stomatal conductance (g s ) respond to changing irradiance, yet stomatal...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
Photosynthetic kinetics in changing light intensity is considered pivotal for the survival of unders...
Producing leaves with closely spaced veins is a key innovation linked to high rates of photosynthesi...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
The best predictor of leaf level photosynthetic rate is the porosity of the leaf surface, as determi...
Stomata control gaseous exchange between the leaf and bulk atmosphere limiting CO2 uptake for photos...
<div><p>Ferns usually have relatively lower photosynthetic potential than angiosperms. However, it i...