Climate change has the capacity to alter water availability and the litter production of tropical forests, which will alter rates of carbon (C) cycling and storage. We conducted a short-term field experiment in two hydrologically diverse forests in the Brazilian Pantanal to assess the initial response of litter decomposition and soil respiration (Rsoil) to variations in litter pool size. Total annual Rsoil and decomposition significantly declined with litter removal and increased with litter addition, but the rate of litter decomposition was highest for plots where litter was removed. Rsoil was positively related to soil organic matter content and the rate of litter decomposition, but not soil moisture or temperature, suggesting that the li...
<div><p>Human-caused alterations of the carbon and nutrient cycles are expected to impact tropical e...
Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmospher...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Litterfall plays an important role in nutrient cycling and maintenance of soil fertility in terrestr...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Soil respiration plays a significant role in the carbon cycle of Amazonian tropical forests, althoug...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Central Amazonian rainforest landscape supports a mosaic of tall terra firme rainforest and ecotone ...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
<div><p>Human-caused alterations of the carbon and nutrient cycles are expected to impact tropical e...
Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmospher...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
1. Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmosp...
Litterfall plays an important role in nutrient cycling and maintenance of soil fertility in terrestr...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Soil respiration plays a significant role in the carbon cycle of Amazonian tropical forests, althoug...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Central Amazonian rainforest landscape supports a mosaic of tall terra firme rainforest and ecotone ...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
<div><p>Human-caused alterations of the carbon and nutrient cycles are expected to impact tropical e...
Litter decomposition recycles nutrients and causes large fluxes of carbon dioxide into the atmospher...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...