Plant gas exchange is a key process shaping global hydrological and carbon cycles and is often characterized by plant water use efficiency (WUE - the ratio of CO2 gain to water vapor loss). Plant fossil record suggests that plant adaptation to changing atmospheric CO2 involved correlated evolution of stomata density (d) and size (s), and related maximal aperture, amax. We interpreted the fossil record of s and d correlated evolution during the Phanerozoic to quantify impacts on gas conductance affecting plant transpiration, E, and CO2 uptake, A, independently, and consequently, on plant WUE. A shift in stomata configuration from large s-low d to small s-high d in response to decreasing atmospheric CO2 resulted in large changes in plant gas ...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
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...
The capacity of plants to fix carbon is ultimately constrained by two core plant attributes: photosy...
The capacity of plants to fix carbon is ultimately constrained by two core plant attributes: photosy...
The importance of plants in regulating and defining Earth’s greenhouse gas and water vapor compositi...
• 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...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
Rising atmospheric [CO2], c(a), is expected to affect stomatal regulation of leaf gas-exchange of wo...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
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...
The capacity of plants to fix carbon is ultimately constrained by two core plant attributes: photosy...
The capacity of plants to fix carbon is ultimately constrained by two core plant attributes: photosy...
The importance of plants in regulating and defining Earth’s greenhouse gas and water vapor compositi...
• 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...
• The stomata of angiosperms respond to changes in ambient atmospheric concentrations of CO2 (Ca) in...
Rising atmospheric [CO2], c(a), is expected to affect stomatal regulation of leaf gas-exchange of wo...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...