Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its relationship to leaf nitrogen content links the carbon and nitrogen cycles. Process understanding for reliably predicting photosynthetic capacity is still missing. To advance this understanding we have tested across C3 plant species the coordination hypothesis, which assumes nitrogen allocation to photosynthetic processes such that photosynthesis tends to be co-limited by ribulose-1,5-bisphosphate (RuBP) carboxylation and regeneration. The coordination hypothesis yields an analytical solution to predict photosynthetic capacity and calculate area-based leaf nitrogen content (Na). The resulting model linking leaf photosynthesis, stomata conductance an...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its relatio...
hal-01190237Photosynthetic capacity is one of the most sensitive parameters in vegetation models and...
hal-01190237Photosynthetic capacity is one of the most sensitive parameters in vegetation models and...
Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its relatio...
<div><p>Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
The distribution of leaf nitrogen among photosynthetic proteins (i.e. chlorophyll, the electron tran...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
<div><p>Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrest...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its relatio...
hal-01190237Photosynthetic capacity is one of the most sensitive parameters in vegetation models and...
hal-01190237Photosynthetic capacity is one of the most sensitive parameters in vegetation models and...
Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its relatio...
<div><p>Photosynthetic capacity is one of the most sensitive parameters in vegetation models and its...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
The distribution of leaf nitrogen among photosynthetic proteins (i.e. chlorophyll, the electron tran...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
<div><p>Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrest...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...