Abstract Background Changes in aboveground plant species diversity as well as variations of environmental conditions such as exposure of ecosystems to elevated concentrations of atmospheric carbon dioxide may lead to changes in metabolic activity, composition and diversity of belowground microbial communities, both bacterial and fungal. Results We examined soil samples taken from a biodiversity × CO2 grassland experiment where replicate plots harboring 5, 12, or 31 different plant species had been exposed to ambient or elevated (600 ppm) levels of carbon dioxide for 5 years. Analysis of soil bacterial communities in these plots by temporal temperature gradient gel electrophoresis (TTGE) showed that dominant soil bacterial populations varied...
The effects of elevated atmospheric carbon dioxide [CO2] on microbial communities in arid rhizospher...
We determined soil microbial community composition and function in a field experiment in which plant...
Pyrosequencing analysis of 16S rRNA genes was used to examine impacts of elevated CO2 (eCO2) on soil...
BACKGROUND: Changes in aboveground plant species diversity as well as variations of environmental co...
One of the major factors associated with global change is the ever-increasing concentration of atmos...
Pyrosequencing analysis of 16S rRNA genes was used to examine impacts of elevated CO2 (eCO2) on soil...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
The effects of elevated atmospheric CO 2 (560 p.p.m.) and subsequent plant responses on the soil mic...
Gaseous conditions at natural CO2 springs (mofettes) affect many processes in these unique ecosystem...
The increase in atmospheric CO2 content alters C3 plant photosynthetic rate, leading to changes in r...
The global atmospheric concentration of CO2 has increased by more than 30percent since the industria...
Although elevated CO2 (eCO2) significantly affects the α-diversity, composition, function, interacti...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
Soil microbial community responses to elevated atmospheric CO2 concentrations (eCO2) occur mainly in...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
The effects of elevated atmospheric carbon dioxide [CO2] on microbial communities in arid rhizospher...
We determined soil microbial community composition and function in a field experiment in which plant...
Pyrosequencing analysis of 16S rRNA genes was used to examine impacts of elevated CO2 (eCO2) on soil...
BACKGROUND: Changes in aboveground plant species diversity as well as variations of environmental co...
One of the major factors associated with global change is the ever-increasing concentration of atmos...
Pyrosequencing analysis of 16S rRNA genes was used to examine impacts of elevated CO2 (eCO2) on soil...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
The effects of elevated atmospheric CO 2 (560 p.p.m.) and subsequent plant responses on the soil mic...
Gaseous conditions at natural CO2 springs (mofettes) affect many processes in these unique ecosystem...
The increase in atmospheric CO2 content alters C3 plant photosynthetic rate, leading to changes in r...
The global atmospheric concentration of CO2 has increased by more than 30percent since the industria...
Although elevated CO2 (eCO2) significantly affects the α-diversity, composition, function, interacti...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
Soil microbial community responses to elevated atmospheric CO2 concentrations (eCO2) occur mainly in...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
The effects of elevated atmospheric carbon dioxide [CO2] on microbial communities in arid rhizospher...
We determined soil microbial community composition and function in a field experiment in which plant...
Pyrosequencing analysis of 16S rRNA genes was used to examine impacts of elevated CO2 (eCO2) on soil...