Predicted future shifts in the magnitude and frequency (larger but fewer) of precipitation events and enhanced nitrogen (N) deposition may interact to affect grassland productivity, but the effects of N enrichment on the productivity response to individual precipitation events remain unclear. In this study, we quantified the effects of N addition on the response patterns of gross primary productivity (GPP) to individual precipitation events of different sizes (P-size) in a temperate grassland in China. The results showed that N enrichment significantly increased the time-integrated amount of GPP in response to an individual precipitation event (GPP(total)), and the N-induced stimulation of GPP increased with increasing Psize. N enrichment r...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Water availability has profound effects on plant growth and productivity in temperate and semiarid g...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Predicted future shifts in the magnitude and frequency (larger but fewer) of precipitation events an...
Nitrogen (N) is a key limiting resource for aboveground net primary productivity (ANPP) in diverse t...
Given that plant growth is often water-limited in grasslands, it has been proposed that projected in...
Nitrogen (N) enrichment often increases aboveground net primary productivity (ANPP) of the ecosystem...
Long-term livestock over-grazing causes nitrogen outputs to exceed inputs in Inner Mongolia, suggest...
Given that plant growth is often water-limited in grasslands, it has been proposed that projected in...
Given that plant growth is often water limited in drylands, it has been proposed that water seems to...
Soil respiration, R-s, is strongly controlled by water availability in semiarid grasslands. However,...
Abstract Background Nitrogen- and water-use efficiency (NUE and WUE) reflect the capacity of plants ...
Global change will lead to increases in regional precipitation and nitrogen (N) deposition in the se...
1. Nitrogen (N) deposition is a continuous process and likely to affect ecosystem carbon (C) and wat...
Changes in the sizes of precipitation events in the context of global climate change may have profou...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Water availability has profound effects on plant growth and productivity in temperate and semiarid g...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Predicted future shifts in the magnitude and frequency (larger but fewer) of precipitation events an...
Nitrogen (N) is a key limiting resource for aboveground net primary productivity (ANPP) in diverse t...
Given that plant growth is often water-limited in grasslands, it has been proposed that projected in...
Nitrogen (N) enrichment often increases aboveground net primary productivity (ANPP) of the ecosystem...
Long-term livestock over-grazing causes nitrogen outputs to exceed inputs in Inner Mongolia, suggest...
Given that plant growth is often water-limited in grasslands, it has been proposed that projected in...
Given that plant growth is often water limited in drylands, it has been proposed that water seems to...
Soil respiration, R-s, is strongly controlled by water availability in semiarid grasslands. However,...
Abstract Background Nitrogen- and water-use efficiency (NUE and WUE) reflect the capacity of plants ...
Global change will lead to increases in regional precipitation and nitrogen (N) deposition in the se...
1. Nitrogen (N) deposition is a continuous process and likely to affect ecosystem carbon (C) and wat...
Changes in the sizes of precipitation events in the context of global climate change may have profou...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Water availability has profound effects on plant growth and productivity in temperate and semiarid g...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...