The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic changes throughout the last century are likely to have had a profound effect on the physiology of trees: altering the carbon and water fluxes passing through the stomatal pores. However, the magnitude and spatial patterns of such changes in natural forests remain highly uncertain. Here, stable carbon isotope ratios from a network of 35 tree-ring sites located across Europe are investigated to determine the intrinsic water-use efficiency (iWUE), the ratio of photosynthesis to stomatal conductance from 19012000. The results were compared with simulations of a dynamic vegetation model (LPX-Bern 1.0) that integrates numerous ecosystem and landatmosp...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Measurements of the stable carbon isotope ratio (delta C-13) on annual tree rings offer new opportun...
This is the final version of the article. Available from the European Geosciences Union (EGU) via th...
In order to predict accurately how elevated atmospheric CO2 concentrations will affect the global ca...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
The increasing carbon dioxide (CO2) concentration in the atmosphere in combination with climatic cha...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
The Earth’s carbon and hydrologic cycles are intimately coupled by gas exchange through plant stomat...
Plant water-use efficiency (WUE), which is the ratio of the uptake of carbon dioxide through photosy...
Measurements of the stable carbon isotope ratio (delta C-13) on annual tree rings offer new opportun...
This is the final version of the article. Available from the European Geosciences Union (EGU) via th...
In order to predict accurately how elevated atmospheric CO2 concentrations will affect the global ca...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...
Increasing water-use efficiency (WUE), the ratio of carbon gain to water loss, is a key mechanism th...