Compared to monocultures, agroforestry systems (AFS) are expected to provide enhanced resource-use efficiency and larger ecosystem services. However, due to the complexity of the interactions occurring in AFS, it is challenging to quantify and decompose the effects of shade trees on the main crop net primary productivity (NPP). Few process-based models are able to analyze the interactions between crop and shade trees for carbon and water. Interactions for light, water and energy occurring between tree and crops might have counterintuitive effects on photosynthesis, light use efficiency (LUE), transpiration efficiency and microclimate. We showed that a 3D process-based model, MAESPA, was able to quantitatively describe the spatial variabilit...
The productivity and environmental impact of coffee agroforestry systems depends on many factors: en...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...
Comparés aux monocultures, les systèmes agroforestiers (SAF) sont censés permettre une meilleure eff...
Comparés aux monocultures, les systèmes agroforestiers (SAF) sont censés permettre une meilleure eff...
Coffee-based agroforestry systems display two heterogeneous plant layers (shade tree and coffee) bot...
Agroforestry systems (AFS) are complex to model mainly due to the high spatial variability induced b...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
The productivity and environmental impact of coffee agroforestry systems depends on many factors: en...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...
Comparés aux monocultures, les systèmes agroforestiers (SAF) sont censés permettre une meilleure eff...
Comparés aux monocultures, les systèmes agroforestiers (SAF) sont censés permettre une meilleure eff...
Coffee-based agroforestry systems display two heterogeneous plant layers (shade tree and coffee) bot...
Agroforestry systems (AFS) are complex to model mainly due to the high spatial variability induced b...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
In agroforestry systems, shade trees strongly affect the physiology of the undergrown crop. However,...
The productivity and environmental impact of coffee agroforestry systems depends on many factors: en...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...
In agroforestry systems (AFS), quantifying the competition for light is a prerequisite toward unders...