The potential of excessive nitrogen (N) suppressing litter decay in is widely recognized. The role of phosphorus (P) in plant litter decay is less understood and is generally assumed to have a weak influence in decomposition outside tropical or wetland ecosystems. Based on the “microbial mining” hypothesis that suggests the availability of limiting nutrients is the driving mechanism of decay, P could have a strong influence on carbon (C) cycling in low-P ecosystems. The objective of this study was to determine if increasing P availability will influence the decomposition of leaf litter in a low-P temperate forested ecosystem. If the availability of a limiting nutrient is a driving mechanism mediating decay, then increasing the availability ...
Species-rich forests can produce litter of varying carbon (C) and nitrogen (N) composition (i.e., qu...
Summary 1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance o...
1.The majority of aboveground carbon in tropical forests is stored in wood, which is returned to the...
The potential of excessive nitrogen (N) suppressing litter decay in is widely recognized. The role o...
The potential of excessive nitrogen (N) suppressing litter decay in is widely recognized. The role o...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance of tropic...
The dynamics of phosphorus (P) in litter–soil systems during litter decomposition across a plantatio...
The dynamics of phosphorus (P) in litter–soil systems during litter decomposition across a plantatio...
1.The majority of aboveground carbon in tropical forests is stored in wood, which is returned to the...
The effects of nutrient (N and P) enrichment on leaf litter decomposition in streams have been inves...
The decomposition of leaf and root litter plays an important role in the cycling of nutrients and ca...
Species-rich forests can produce litter of varying carbon (C) and nitrogen (N) composition (i.e., qu...
Summary 1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance o...
1.The majority of aboveground carbon in tropical forests is stored in wood, which is returned to the...
The potential of excessive nitrogen (N) suppressing litter decay in is widely recognized. The role o...
The potential of excessive nitrogen (N) suppressing litter decay in is widely recognized. The role o...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
Litter decomposition is an important control on carbon accumulation in tropical peatlands. Stoichiom...
1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance of tropic...
The dynamics of phosphorus (P) in litter–soil systems during litter decomposition across a plantatio...
The dynamics of phosphorus (P) in litter–soil systems during litter decomposition across a plantatio...
1.The majority of aboveground carbon in tropical forests is stored in wood, which is returned to the...
The effects of nutrient (N and P) enrichment on leaf litter decomposition in streams have been inves...
The decomposition of leaf and root litter plays an important role in the cycling of nutrients and ca...
Species-rich forests can produce litter of varying carbon (C) and nitrogen (N) composition (i.e., qu...
Summary 1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance o...
1.The majority of aboveground carbon in tropical forests is stored in wood, which is returned to the...