The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although these forests account for more carbon assimilation and storage than any other terrestrial ecosystem. Based on a unique combination of seasonal pan-tropical data sets from 89 experimental sites (68 include aboveground wood productivity measurements and 35 litter productivity measurements), their associated canopy photosynthetic capacity (enhanced vegetation index, EVI) and climate, we ask how carbon assimilation and aboveground allocation are related to climate seasonality in tropical forests and how they interact in the seasonal carbon cycle. We found that canopy photosynthetic capacity seasonality responds positively to precipitation when rai...
The fixation of carbon in tropical forests mainly occurs through the production of wood and leaves, ...
The tropical forest carbon sink is known to be drought sensitive, but it is unclear which forests ar...
Climate models predict a range of changes in the Amazonian region, including increased frequency of ...
The seasonal climate drivers of the carbon cy- cle in tropical forests remain poorly known, although...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
Climate models predict a range of changes in tropical forest regions, including increased average te...
Climate models predict a range of changes in tropical forest regions, including increased average te...
The responses of tropical forests to environmental change are critical uncertainties in predicting t...
International audienceAimThe carbon sink in tropical forests is a highly uncertain component of the ...
Interannual variability in the global land carbon sink is strongly related to variations in tropical...
Our limited understanding of the climate controls on tropical forest seasonality is one of the bigge...
The fixation of carbon in tropical forests mainly occurs through the production of wood and leaves, ...
The tropical forest carbon sink is known to be drought sensitive, but it is unclear which forests ar...
Climate models predict a range of changes in the Amazonian region, including increased frequency of ...
The seasonal climate drivers of the carbon cy- cle in tropical forests remain poorly known, although...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
Climate models predict a range of changes in tropical forest regions, including increased average te...
Climate models predict a range of changes in tropical forest regions, including increased average te...
The responses of tropical forests to environmental change are critical uncertainties in predicting t...
International audienceAimThe carbon sink in tropical forests is a highly uncertain component of the ...
Interannual variability in the global land carbon sink is strongly related to variations in tropical...
Our limited understanding of the climate controls on tropical forest seasonality is one of the bigge...
The fixation of carbon in tropical forests mainly occurs through the production of wood and leaves, ...
The tropical forest carbon sink is known to be drought sensitive, but it is unclear which forests ar...
Climate models predict a range of changes in the Amazonian region, including increased frequency of ...