Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial carbon cycles; however, most ecosystem models use a rather simplistic relationship between leaf nitrogen content and photosynthetic capacity. Such an approach does not consider how patterns of nitrogen allocation may change with differences in light intensity, growing-season temperature and CO(2) concentration. To account for this known variability in nitrogen-photosynthesis relationships, we develop a mechanistic nitrogen allocation model based on a trade-off of nitrogen allocated between growth and storage, and an optimization of nitrogen allocated among light capture, electron transport, carboxylation, and respiration. The developed model is ...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
<div><p>Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrest...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
Although plant photosynthetic capacity as determined by the maximum carboxylation rate (i.e., Vc,max...
Although plant photosynthetic capacity as determined by the maximum carboxylation rate (i.e., Vc,max...
The distribution of leaf nitrogen among photosynthetic proteins (i.e. chlorophyll, the electron tran...
Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a key plant ...
<p>The nitrogen allocation model is used to quantify the responses of <i>V<sub>c,max25</sub></i> to ...
Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a key plant ...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
Most evapotranspiration over land occurs through vegetation. The fraction of net radiation balanced ...
Abstract. Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a ...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
<div><p>Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrest...
Nitrogen is a dominant regulator of vegetation dynamics, net primary production, and terrestrial car...
Although plant photosynthetic capacity as determined by the maximum carboxylation rate (i.e., Vc,max...
Although plant photosynthetic capacity as determined by the maximum carboxylation rate (i.e., Vc,max...
The distribution of leaf nitrogen among photosynthetic proteins (i.e. chlorophyll, the electron tran...
Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a key plant ...
<p>The nitrogen allocation model is used to quantify the responses of <i>V<sub>c,max25</sub></i> to ...
Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a key plant ...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
Most evapotranspiration over land occurs through vegetation. The fraction of net radiation balanced ...
Abstract. Photosynthetic capacity, determined by light harvesting and carboxylation reactions, is a ...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...
The representation of carbon-nitrogen (N) interactions in global models of the natural or managed la...