The effect of elevated CO2 on C allocation in plant and soil was assessed using soil cores planted with 1-y-old heather (Calluna vulgaris (L.) Hull). Plants were pulse-labeled with 14CO2 at ambient and elevated CO2 and two nitrogen regimes (low and high). After harvesting the plants, the soil was incubated to monitor total respiration and decomposition of 14C-labeled rhizodeposits. Total and shoot biomass increased at high N but were not affected by CO2. Root biomass was not affected by either N or CO2 treatments. Total 14C uptake and shoot-14C increased upon adding N and elevating CO2 but the N effect was strongest. Total 14C uptake per unit shoot mass decreased with N, but increased with CO2. Root-14C content was not significantly affecte...
The allocation of carbon to shoots, roots, soil and rhizosphere respiration in barrel medic (Medicag...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...
The effect of elevated CO2 on C allocation in plant and soil was assessed using soil cores planted w...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
Effects of ambient and elevated atmospheric CO2 concentrations (350 and 700 μl l-1) on net carbon in...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
The rhizosphere is one of the key fine-scale components of C cycles. This study was undertaken to im...
Our ability to predict whether elevated atmospheric CO2 will alter the cycling of C and N in terrest...
Microbial decomposer C metabolism is considered a factor controlling soil C stability, a key regulat...
Atmospheric CO2 cycles into terrestrial ecosystems via the process of photosynthesis, and upon plant...
In an attempt to investigate the cause of change in the competitive ability between monocots and dic...
Soils store more carbon (C) than vegetation and the atmosphere combined, thus small changes in the a...
The allocation of carbon to shoots, roots, soil and rhizosphere respiration in barrel medic (Medicag...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...
The effect of elevated CO2 on C allocation in plant and soil was assessed using soil cores planted w...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
Effects of ambient and elevated atmospheric CO2 concentrations (350 and 700 μl l-1) on net carbon in...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
The rhizosphere is one of the key fine-scale components of C cycles. This study was undertaken to im...
Our ability to predict whether elevated atmospheric CO2 will alter the cycling of C and N in terrest...
Microbial decomposer C metabolism is considered a factor controlling soil C stability, a key regulat...
Atmospheric CO2 cycles into terrestrial ecosystems via the process of photosynthesis, and upon plant...
In an attempt to investigate the cause of change in the competitive ability between monocots and dic...
Soils store more carbon (C) than vegetation and the atmosphere combined, thus small changes in the a...
The allocation of carbon to shoots, roots, soil and rhizosphere respiration in barrel medic (Medicag...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...
Under elevated atmospheric CO2 concentrations, soil carbon (C) inputs are typically enhanced, sugges...