The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) fixation, potentially influencing the size, structure and function of micro- and mesofaunal communities inhabiting the rhizosphere. To assess the effects of increased atmospheric CO2 on bacterial, fungal and nematode communities in the rhizosphere, Carex arenaria (a nonmycorrhizal plant species) and Festuca rubra (a mycorrhizal plant species) were grown in three dune soils under controlled soil temperature and moisture conditions, while subjecting the aboveground compartment to defined atmospheric conditions differing in CO2 concentrations (350 and 700 μL L1). Real-time polymerase chain reaction (PCR) and PCR-denaturing gradient gel electropho...
Concerns over rising atmospheric CO2 concentrations have led to growing interest in the effects of g...
BACKGROUND: Archaea are important to the carbon and nitrogen cycles, but it remains uncertain how ri...
Abstract Background Changes in aboveground plant species diversity as well as variations of environm...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
Carbon (C) uptake by terrestrial ecosystems represents an important option for partially mitigating ...
Carbon (C) uptake by terrestrial ecosystems represents an important option for partially mitigating ...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Rising atmospheric CO2 levels are predicted to have major consequences on C cycling and the function...
Soil microbial community responses to elevated atmospheric CO2 concentrations (eCO2) occur mainly in...
General concern about climate change has led to growing interest in the responses of terrestrial eco...
The increase in atmospheric CO2 content alters C3 plant photosynthetic rate, leading to changes in r...
The effects of elevated atmospheric carbon dioxide [CO2] on microbial communities in arid rhizospher...
The rise in atmospheric CO levels is foreseen to enhance the growth of exotic invasive plants and po...
Concerns over rising atmospheric CO2 concentrations have led to growing interest in the effects of g...
BACKGROUND: Archaea are important to the carbon and nitrogen cycles, but it remains uncertain how ri...
Abstract Background Changes in aboveground plant species diversity as well as variations of environm...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
The increase in atmospheric carbon dioxide (CO2) levels is predicted to stimulate plant carbon (C) f...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
Carbon (C) uptake by terrestrial ecosystems represents an important option for partially mitigating ...
Carbon (C) uptake by terrestrial ecosystems represents an important option for partially mitigating ...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Rising atmospheric CO2 levels are predicted to have major consequences on C cycling and the function...
Soil microbial community responses to elevated atmospheric CO2 concentrations (eCO2) occur mainly in...
General concern about climate change has led to growing interest in the responses of terrestrial eco...
The increase in atmospheric CO2 content alters C3 plant photosynthetic rate, leading to changes in r...
The effects of elevated atmospheric carbon dioxide [CO2] on microbial communities in arid rhizospher...
The rise in atmospheric CO levels is foreseen to enhance the growth of exotic invasive plants and po...
Concerns over rising atmospheric CO2 concentrations have led to growing interest in the effects of g...
BACKGROUND: Archaea are important to the carbon and nitrogen cycles, but it remains uncertain how ri...
Abstract Background Changes in aboveground plant species diversity as well as variations of environm...