Nitrogen deposition and climate warming can alter soil bacterial communities. However, the response of soil bacteria in an alpine steppe to these changes is largely unknown. In this study, a field experiment was performed on the northeastern Qinghai-Tibetan Plateau to determine the changes in soil bacterial communities of alpine steppes in response to nitrogen application and warming. The experiment consisted of four treatments, namely no-N application with no-warming (CK), N application (8 kg N ha−1 year−1) with no-warming (N), warming with no-N application (W), and N application (8 kg N ha−1 year−1) with warming (W&N). This study aimed to investigate (1) the changes in soil bacterial diversity and community structure under simulated n...
Global climate change could have profound effects on belowground microbial communities and subsequen...
This study aimed at predicting how sub-alpine coniferous ecosystems respond to global changes in the...
Previous studies have explored the effects of global change on above-ground vegetation in grassland ...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Soil microbial communities are influenced by climate change drivers such as warming and altered prec...
Warming and grazing significantly affect the structure and function of an alpine meadow ecosystem. Y...
ABSTRACT: Soil microorganisms are influenced by climate change. However, the effect of climate chang...
Information on how soil microbial communities respond to warming is still scarce for alpine scrub ec...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Environmental change factors can significantly affect the composition and physiology of soil microbe...
Information on how soil microbial communities respond to warming is still scarce for alpine scrub ec...
Global climate change could have profound effects on belowground microbial communities and subsequen...
This study aimed at predicting how sub-alpine coniferous ecosystems respond to global changes in the...
Previous studies have explored the effects of global change on above-ground vegetation in grassland ...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Soil microbial communities are influenced by climate change drivers such as warming and altered prec...
Warming and grazing significantly affect the structure and function of an alpine meadow ecosystem. Y...
ABSTRACT: Soil microorganisms are influenced by climate change. However, the effect of climate chang...
Information on how soil microbial communities respond to warming is still scarce for alpine scrub ec...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Environmental change factors can significantly affect the composition and physiology of soil microbe...
Information on how soil microbial communities respond to warming is still scarce for alpine scrub ec...
Global climate change could have profound effects on belowground microbial communities and subsequen...
This study aimed at predicting how sub-alpine coniferous ecosystems respond to global changes in the...
Previous studies have explored the effects of global change on above-ground vegetation in grassland ...