Global nitrogen (N) deposition and precipitation change are two important factors influencing the diversity and function of terrestrial ecosystems. While considerable efforts have been devoted to investigate the responses of aboveground plant communities to altered precipitation regimes and N enrichment, the variations of belowground soil microbial communities are not well understood, particularly at the functional gene structure level. Based on a 9-year field experiment established in a typical steppe in Inner Mongolia, China, we examined the impacts of projected N deposition and precipitation increment on soil microbial functional gene composition, and assessed the soil/plant factors associated with the observed impacts. The overall funct...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
BACKGROUND: Global climatic change is generally expected to stimulate net primary production, and co...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Precipitation changes exert a fundamental effect on the nitrogen (N) cycle in water-limited grasslan...
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...
Changes of nitrogen (N) cycle caused by N fertilization and precipitation regimes have affected the ...
Global changes in nitrogen (N) deposition, precipitation patterns and land use could have an impact ...
Our understanding of the patterns and drivers of soil microbial communities at the regional scale re...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Abstract Our understanding of the patterns and drivers of soil microbial communities at the regional...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
Understanding how ecosystem carbon (C) and nitrogen (N) cycles respond to the variability of precipi...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
BACKGROUND: Global climatic change is generally expected to stimulate net primary production, and co...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Global nitrogen (N) deposition and precipitation change are two important factors influencing the di...
Precipitation changes exert a fundamental effect on the nitrogen (N) cycle in water-limited grasslan...
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...
Changes of nitrogen (N) cycle caused by N fertilization and precipitation regimes have affected the ...
Global changes in nitrogen (N) deposition, precipitation patterns and land use could have an impact ...
Our understanding of the patterns and drivers of soil microbial communities at the regional scale re...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Abstract Our understanding of the patterns and drivers of soil microbial communities at the regional...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
Understanding how ecosystem carbon (C) and nitrogen (N) cycles respond to the variability of precipi...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...
BACKGROUND: Global climatic change is generally expected to stimulate net primary production, and co...
International audienceBackground: Anthropogenic activities have increased the inputs of atmospheric ...