Global climate change could have profound effects on belowground microbial communities and subsequently affect soil biogeochemical processes. The interactive effects of multiple co-occurring climate change factors on microbially mediated processes are not well understood. A four-factorial field experiment with elevated CO2, watering, nitrogen (N) addition and night warming was conducted in a temperate steppe of northern China. Real-time polymerase chain reaction and terminal-restriction fragment length polymorphism, combined with clone library techniques, were applied to examine the effects of those climate change factors on N-related microbial abundance and community composition. Only the abundance of ammonia-oxidizing bacteria significant...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...
Global climate change could have profound effects on belowground microbial communities and subsequen...
Global changes in nitrogen (N) deposition, precipitation patterns and land use could have an impact ...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
In order to investigate the effect of climate change on the functional role of microbial community, ...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Ammonia-oxidizing archaea (AOA) and bacteria (AOB) predominantly control ammonia oxidation, the firs...
Nitrogen deposition and climate warming can alter soil bacterial communities. However, the response ...
Soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. However...
Purpose: Global climate change, in particular temperature variation, is likely to alter soil microbi...
ABSTRACT: Soil microorganisms are influenced by climate change. However, the effect of climate chang...
Environmental change factors can significantly affect the composition and physiology of soil microbe...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...
Global climate change could have profound effects on belowground microbial communities and subsequen...
Global changes in nitrogen (N) deposition, precipitation patterns and land use could have an impact ...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
In order to investigate the effect of climate change on the functional role of microbial community, ...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Ammonia-oxidizing archaea (AOA) and bacteria (AOB) predominantly control ammonia oxidation, the firs...
Nitrogen deposition and climate warming can alter soil bacterial communities. However, the response ...
Soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. However...
Purpose: Global climate change, in particular temperature variation, is likely to alter soil microbi...
ABSTRACT: Soil microorganisms are influenced by climate change. However, the effect of climate chang...
Environmental change factors can significantly affect the composition and physiology of soil microbe...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Soil nitrification is a crucial process that increases nitrogen (N) availability for plants and driv...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...