International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any other type of vegetation. Phosphorus (P) limitations to C uptake are paramount for tropical and subtropical forests around the globe. Yet the generality of photosynthesis-P relationships underlying these limitations are in question, and hence are not represented well in terrestrial biosphere models. Here we demonstrate the dependence of photosynthesis and underlying processes on both leaf N and P concentrations. The regulation of photosynthetic capacity by P was similar across four continents. Implementing P constraints in the ORCHIDEE-CNP model, gross photosynthesis was reduced by 36% across the tropics and subtr...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical soils are often characterised by low phosphorus availability and tropical forest trees typi...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical soils are often characterised by low phosphorus availability and tropical forest trees typi...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
International audienceAbstract Tropical forests take up more carbon (C) from the atmosphere per annu...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical soils are often characterised by low phosphorus availability and tropical forest trees typi...