Aims: Soil organic nitrogen (N) turnover is significantly influenced by elevated N deposition, precipitation and human-caused disturbances, but the underlying mechanism remains unclear. Identifying the relationships among the soil organic N fractions and N-mineralizing enzymes activities may advance our knowledge of the dynamics of soil organic N. Methods: A field experiment was conducted in a semi-arid steppe and an abandoned cropland in northern China to investigate the effects of elevated N deposition and precipitation on soil organic N fractions and their relationships with N-mineralizing enzymes, i.e., protease, amidase, urease and N-acetyl-β-D-glucosaminidase (NAG) activities. Results: The concentrations of N in various fractions were...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Drivers of nitrogen (N) mineralization in paddy soils, especially under anaerobic soil conditions, a...
Changes of nitrogen (N) cycle caused by N fertilization and precipitation regimes have affected the ...
Both atmospheric nitrogen (N) deposition and precipitation can strongly impact below-ground biogeoch...
Both atmospheric nitrogen (N) deposition and precipitation can strongly impact below-ground biogeoch...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Due to the intensification of human activities, global warming and increased atmospheric nitrogen de...
Shrub encroachment has caused a vegetation shift in arid and semiarid grassland ecosystems around th...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Soil soluble organic nitrogen (SON) concentrations in terrestrial ecosystems were influenced differe...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Proteins constitute the single largest soil organic nitrogen (SON) reservoir and its decomposition d...
Nitrogen (N) cycling in drylands under changing climate is not well understood. Our understanding of...
Proteins constitute the single largest soil organic nitrogen (SON) reservoir and its decomposition d...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Drivers of nitrogen (N) mineralization in paddy soils, especially under anaerobic soil conditions, a...
Changes of nitrogen (N) cycle caused by N fertilization and precipitation regimes have affected the ...
Both atmospheric nitrogen (N) deposition and precipitation can strongly impact below-ground biogeoch...
Both atmospheric nitrogen (N) deposition and precipitation can strongly impact below-ground biogeoch...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Due to the intensification of human activities, global warming and increased atmospheric nitrogen de...
Shrub encroachment has caused a vegetation shift in arid and semiarid grassland ecosystems around th...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Soil soluble organic nitrogen (SON) concentrations in terrestrial ecosystems were influenced differe...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Proteins constitute the single largest soil organic nitrogen (SON) reservoir and its decomposition d...
Nitrogen (N) cycling in drylands under changing climate is not well understood. Our understanding of...
Proteins constitute the single largest soil organic nitrogen (SON) reservoir and its decomposition d...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Drivers of nitrogen (N) mineralization in paddy soils, especially under anaerobic soil conditions, a...
Changes of nitrogen (N) cycle caused by N fertilization and precipitation regimes have affected the ...