The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomata1, 2, 3. However, uncertainties in the magnitude4, 5, 6 and consequences7, 8 of the physiological responses9, 10 of plants to elevated CO2 in natural environments hinders modelling of terrestrial water cycling and carbon storage11. Here we use annually resolved long-term δ13C tree-ring measurements across a European forest network to reconstruct the physiologically driven response of intercellular CO2 (Ci) caused by atmospheric CO2 (Ca) trends. When removing meteorological signals from the δ13C measurements, we find that trees across Europe regulated gas exchange so that for one ppmv atmospheric CO2 increase, Ci increased by ~0.76 ppmv, most...
BackgroundThe analysis of tree-ring carbon isotope composition (δ(13)C) has been widely used to esti...
Higher atmospheric CO2 concentrations (ca ) can under certain conditions increase tree growth by enh...
Plant water‐use efficiency (WUE, the carbon gained through photosynthesis per unit of water lost thr...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
Terrestrial plants remove CO₂ from the atmosphere through photosynthesis, a process that is accompan...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
Plant Water Use Efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Multiple lines of evidence suggest that plant water-use efficiency (WUE) -the ratio of carbon assimi...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Background: The analysis of tree-ring carbon isotope composition (d13C) has been widely used to esti...
1. The rising levels of atmospheric carbon dioxide concentration ([CO2]) and temperature have the po...
BackgroundThe analysis of tree-ring carbon isotope composition (δ(13)C) has been widely used to esti...
Higher atmospheric CO2 concentrations (ca ) can under certain conditions increase tree growth by enh...
Plant water‐use efficiency (WUE, the carbon gained through photosynthesis per unit of water lost thr...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
Terrestrial plants remove CO₂ from the atmosphere through photosynthesis, a process that is accompan...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
Plant Water Use Efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Multiple lines of evidence suggest that plant water-use efficiency (WUE) -the ratio of carbon assimi...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Background: The analysis of tree-ring carbon isotope composition (d13C) has been widely used to esti...
1. The rising levels of atmospheric carbon dioxide concentration ([CO2]) and temperature have the po...
BackgroundThe analysis of tree-ring carbon isotope composition (δ(13)C) has been widely used to esti...
Higher atmospheric CO2 concentrations (ca ) can under certain conditions increase tree growth by enh...
Plant water‐use efficiency (WUE, the carbon gained through photosynthesis per unit of water lost thr...