Climate change is projected to have impacts on precipitation and temperature regimes in drylands of high elevation regions, with especially large effects in the Qinghai-Tibetan Plateau. However, there was limited information about how the projected climate change will impact on the soil microbial community and their activity in the region. Here, we present results from a study conducted across 72 soil samples from 24 different sites along a temperature and precipitation gradient (substituted by aridity index ranging from 0.079 to 0.89) of the Plateau, to assess how changes in aridity affect the abundance, community composition, and diversity of bacteria, ammonia-oxidizers, and denitrifers (nirK/S and nosZ genes-containing communities) as we...
Global surface temperature is predicted to increase by at least 1.5°C by the end of this century. Ho...
Abstract Our understanding of the patterns and drivers of soil microbial communities at the regional...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Soil microbial communities are influenced by climate change drivers such as warming and altered prec...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
Nitrogen deposition and climate warming can alter soil bacterial communities. However, the response ...
Soil microbes are directly involved in soil organic carbon (SOC) decomposition, yet the importance o...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
Purpose: Global climate change, in particular temperature variation, is likely to alter soil microbi...
Warming has been shown to cause soil carbon (C) loss in northern grasslands owing to accelerated mic...
Warming has been shown to cause soil carbon (C) loss in northern grasslands owing to accelerated mic...
Grazing intensity and global warming are expected to increase in the forthcoming decades, with uncer...
<div><p>Global surface temperature is predicted to increase by at least 1.5°C by the end of this cen...
Our understanding of the patterns and drivers of soil microbial communities at the regional scale re...
Global surface temperature is predicted to increase by at least 1.5°C by the end of this century. Ho...
Abstract Our understanding of the patterns and drivers of soil microbial communities at the regional...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...
Climate change is projected to have impacts on precipitation and temperature regimes in drylands of ...
Soil microbial communities are influenced by climate change drivers such as warming and altered prec...
The soil microbial community plays an important role in terrestrial carbon and nitrogen cycling. How...
Nitrogen deposition and climate warming can alter soil bacterial communities. However, the response ...
Soil microbes are directly involved in soil organic carbon (SOC) decomposition, yet the importance o...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
Purpose: Global climate change, in particular temperature variation, is likely to alter soil microbi...
Warming has been shown to cause soil carbon (C) loss in northern grasslands owing to accelerated mic...
Warming has been shown to cause soil carbon (C) loss in northern grasslands owing to accelerated mic...
Grazing intensity and global warming are expected to increase in the forthcoming decades, with uncer...
<div><p>Global surface temperature is predicted to increase by at least 1.5°C by the end of this cen...
Our understanding of the patterns and drivers of soil microbial communities at the regional scale re...
Global surface temperature is predicted to increase by at least 1.5°C by the end of this century. Ho...
Abstract Our understanding of the patterns and drivers of soil microbial communities at the regional...
Climate warming and shifting precipitation regimes are affecting biodiversity and ecosystem function...