Understanding how ecosystem carbon (C) and nitrogen (N) cycles respond to the variability of precipitation can help us assess the effects of global climate change on terrestrial ecosystem structure and function. We investigated the contributions of aboveground biomass, litter, root, soil and microbial communities to ecosystem C and N processes at 14 sites along a 1000 km precipitation gradient in native <i>Leymus chinensis</i> grasslands of northeastern China. The results show that aboveground biomass C and N increased gradually, while no significant regional trends in litter and root biomass were found with increasing mean annual precipitation (MAP) along the gradient. Soil respiration increased first and then decreased from the dry to mes...
Extreme precipitation events are predicted to occur more frequently and will have significant influe...
Understanding how grasslands are affected by a long-term increase in temperature is crucial to predi...
Evaluating the regional variation of ecosystem respiration (R-eco) in its response to the changes of...
Aims Secondary grasslands reestablished after deforestation in subtropical and tropical regions grea...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
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 ...
Precipitation is a key environmental factor in determining ecosystem structure and function. Knowled...
Previous studies have observed that increased precipitation positively affects primary production in...
Background: Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soi...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Soil microbial activity varies seasonally in frozen alpine soils during cold seasons and plays a cru...
The impact of climate change (i.e. warming and changes in precipitation patterns) on carbon (C) sequ...
Climate warming, altered precipitation and nitrogen deposition may critically affect plant growth an...
Extreme precipitation events are predicted to occur more frequently and will have significant influe...
Understanding how grasslands are affected by a long-term increase in temperature is crucial to predi...
Evaluating the regional variation of ecosystem respiration (R-eco) in its response to the changes of...
Aims Secondary grasslands reestablished after deforestation in subtropical and tropical regions grea...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
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 ...
Precipitation is a key environmental factor in determining ecosystem structure and function. Knowled...
Previous studies have observed that increased precipitation positively affects primary production in...
Background: Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soi...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Soil microbial activity varies seasonally in frozen alpine soils during cold seasons and plays a cru...
The impact of climate change (i.e. warming and changes in precipitation patterns) on carbon (C) sequ...
Climate warming, altered precipitation and nitrogen deposition may critically affect plant growth an...
Extreme precipitation events are predicted to occur more frequently and will have significant influe...
Understanding how grasslands are affected by a long-term increase in temperature is crucial to predi...
Evaluating the regional variation of ecosystem respiration (R-eco) in its response to the changes of...