Knowledge of the impact of N enrichment on soil respiration components is critical for understanding carbon (C) cycling and its feedback processes with climate change. We conducted three N level addition experiments, control (CK, 0 g N m(-2)yr(-1)), low nitrogen addition (LN, 10 g N m(-2)yr(-1)), and high nitrogen addition (HN, 20 g N m(-2)yr(-1))) to investigate the response of microbial and root respiration to N enrichment in a long-term fenced grassland on the Loess Plateau of China. Compared to the control, both the LN and HN treatments generally decreased soil respiration and its two components for both years. Under N addition, the decreased rates of root respiration and microbial respiration were significantly and positively correlate...
National Natural Science Foundation of China 40730105 40673067 40501072;Ministry of Science and Tec...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Higher ecosystem nitrogen (N) inputs resulting from human activities often suppress soil microbial b...
Soil respiration is the second largest terrestrial carbon (C) flux; the responses of soil respiratio...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Forest soil respiration plays an important role in global carbon (C) cycling. Owing to the high degr...
Determining how nitrogen (N) impacts ecosystem carbon (C) cycling is critical to using C sequestrati...
1. Nitrogen (N) deposition and land-use practice (e.g. mowing) could have profound effects on soil r...
Microbial nitrogen (N) transformations play a key role in regulating N cycling in grassland ecosyste...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Increasing atmospheric nitrogen (N) deposition has profound effects on carbon (C) cycling in forest ...
AbstractMicrobial nutrient transformation plays an important role in regulating nitrogen (N) and pho...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
National Natural Science Foundation of China 40730105 40673067 40501072;Ministry of Science and Tec...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Higher ecosystem nitrogen (N) inputs resulting from human activities often suppress soil microbial b...
Soil respiration is the second largest terrestrial carbon (C) flux; the responses of soil respiratio...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Forest soil respiration plays an important role in global carbon (C) cycling. Owing to the high degr...
Determining how nitrogen (N) impacts ecosystem carbon (C) cycling is critical to using C sequestrati...
1. Nitrogen (N) deposition and land-use practice (e.g. mowing) could have profound effects on soil r...
Microbial nitrogen (N) transformations play a key role in regulating N cycling in grassland ecosyste...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Increasing atmospheric nitrogen (N) deposition has profound effects on carbon (C) cycling in forest ...
AbstractMicrobial nutrient transformation plays an important role in regulating nitrogen (N) and pho...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
National Natural Science Foundation of China 40730105 40673067 40501072;Ministry of Science and Tec...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...