The “hierarchy of factors” hypothesis states that decomposition rates are controlled primarily by climatic, followed by biological and soil variables. Tropical montane forests (TMF) are globally important ecosystems, yet there have been limited efforts to provide a biome-scale characterization of litter decomposition. We designed a common litter decomposition experiment replicated in 23 tropical montane sites across the Americas, Asia, and Africa and combined these results with a previous study of 23 sites in tropical lowland forests (TLF). Specifically, we investigated (1) spatial heterogeneity in decomposition, (2) the relative importance of biological factors that affect leaf and wood decomposition in TMF, and (3) the role of climate in ...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmospher...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Litter decomposition recycles nutrients and causes large ?uxes of carbon dioxide into the atmosphere...
Tropical forests play a substantial role in the global carbon (C) cycle and are projected to experie...
Tropical forests play a substantial role in the global carbon (C) cycle and are projected to experie...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Although tropical forests occupy a small fraction of the earth’s total land area, they play a dispro...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmospher...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Litter decomposition recycles nutrients and causes large ?uxes of carbon dioxide into the atmosphere...
Tropical forests play a substantial role in the global carbon (C) cycle and are projected to experie...
Tropical forests play a substantial role in the global carbon (C) cycle and are projected to experie...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Although tropical forests occupy a small fraction of the earth’s total land area, they play a dispro...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Future climates have the potential to alter decomposition rates in tropical forest with implications...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...