Litter quality plays an important role in determining litter decomposition and nutrient cycling in terrestrial ecosystems. We investigated the main and interactive effects of nitrogen (N) addition and mowing on litter quality (%N, lignin, cellulose, and hemicellulose concentrations and lignin:N ratio) of four dominant species in a temperate steppe in northern China. In addition to species-specific impacts, both N addition and mowing can alter community composition by changing relative dominance of individual species, with consequences on litter decomposition. Nitrogen addition significantly increased N concentration of shoot litters at species- and community-level, while mowing did not affect N concentration. Nitrogen addition decreased con...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Litter chemical traits are one of the dominant controls on litter decomposition. Increasing atmosphe...
Litter decomposition contributes largely to global carbon (C) and nitrogen (N) cycling, and it is st...
Changes in litter chemistry and stoichiometry following N enrichment have important consequences on ...
The effects of nitrogen (N) and phosphorus (P) addition on litter decomposition are poorly understoo...
Anthropogenic activities introduce nitrogen (N) into terrestrial ecosystems, inducing changes in qua...
Litter decomposition greatly influences soil structure, nutrient content and carbon sequestration, b...
Decomposition of litter mixtures generally cannot be predicted from the component species incubated ...
Increasing availability of reactive nitrogen (N) threatens plant diversity in diverse ecosystems. Wh...
Elevated nitrogen (N) deposition can affect litter decomposition directly, by raising soil N availab...
International audienceGlobal reactive nitrogen (N) is projected to further increase in the coming ye...
1. Global reactive nitrogen (N) is projected to further increase in the coming years. Previous studi...
Litter decomposition is the fundamental process in nutrient cycling and soil carbon (C) sequestratio...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Litter chemical traits are one of the dominant controls on litter decomposition. Increasing atmosphe...
Litter decomposition contributes largely to global carbon (C) and nitrogen (N) cycling, and it is st...
Changes in litter chemistry and stoichiometry following N enrichment have important consequences on ...
The effects of nitrogen (N) and phosphorus (P) addition on litter decomposition are poorly understoo...
Anthropogenic activities introduce nitrogen (N) into terrestrial ecosystems, inducing changes in qua...
Litter decomposition greatly influences soil structure, nutrient content and carbon sequestration, b...
Decomposition of litter mixtures generally cannot be predicted from the component species incubated ...
Increasing availability of reactive nitrogen (N) threatens plant diversity in diverse ecosystems. Wh...
Elevated nitrogen (N) deposition can affect litter decomposition directly, by raising soil N availab...
International audienceGlobal reactive nitrogen (N) is projected to further increase in the coming ye...
1. Global reactive nitrogen (N) is projected to further increase in the coming years. Previous studi...
Litter decomposition is the fundamental process in nutrient cycling and soil carbon (C) sequestratio...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Soil microbial community composition and litter quality are important drivers of litter decompositio...