One of the key processes that drives rhizosphere microbial activity is the exudation of soluble organic carbon (C) by plant roots. We describe an experiment designed to determine the impact of defoliation on the partitioning and movement of C in grass (Lolium perenne L.), soil and grass-sterile sand microcosms, using a (13)CO(2) pulse-labelling method. The pulse-derived (13)C in the shoots declined over time, but that of the roots remained stable throughout the experiment. There were peaks in the atom% (13)C of rhizosphere CO(2) in the first few hours after labelling probably due to root respiration, and again at around 100 h. The second peak was only seen in the soil microcosms and not in those with sterilised sand as the growth medium, in...
Root exudation increases the concentration of readily available carbon (C) compounds in its immediat...
The fate of C from rhizodeposits in soil is still unanswered. A broader knowledge of the contributio...
Carbon rhizodeposition and root respiration during eight development stages of Lolium perenne were s...
Carbon (C) balance, rhizodeposition and root respiration during development of Lolium perenne were s...
A greenhouse experiment was conducted by growing oats (Avenasativa L.) in a continuously 13CO2 label...
In the rhizosphere, the uptake of low-molecularweight carbon (C) and nitrogen (N) by plant roots has...
Organically managed farm areas in Denmark are expanding and typically contain clover-grass leys that...
Plant-microbial interactions alter C and N balance in the rhizosphere and affect the microbial carbo...
The input dynamics of labeled C into pools of soil organic matter and CO2 fluxes from soil were stud...
The main findings of research into carbon (C) fluxes from plants to soil micro-organisms using in si...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
Ryegrass uniformly labelled with 14C was incubated aerobically at 25°C for 62 days in two contrastin...
The influence of liming on rhizosphere microbial biomass C and incorporation of root exudates was st...
Plant-microbial interactions alter C and N balance in the rhizosphere and affect the microbial carbo...
Carbon (C) cycling in the atmosphere-plant-soil-microorganism system has been the focus of much rece...
Root exudation increases the concentration of readily available carbon (C) compounds in its immediat...
The fate of C from rhizodeposits in soil is still unanswered. A broader knowledge of the contributio...
Carbon rhizodeposition and root respiration during eight development stages of Lolium perenne were s...
Carbon (C) balance, rhizodeposition and root respiration during development of Lolium perenne were s...
A greenhouse experiment was conducted by growing oats (Avenasativa L.) in a continuously 13CO2 label...
In the rhizosphere, the uptake of low-molecularweight carbon (C) and nitrogen (N) by plant roots has...
Organically managed farm areas in Denmark are expanding and typically contain clover-grass leys that...
Plant-microbial interactions alter C and N balance in the rhizosphere and affect the microbial carbo...
The input dynamics of labeled C into pools of soil organic matter and CO2 fluxes from soil were stud...
The main findings of research into carbon (C) fluxes from plants to soil micro-organisms using in si...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
Ryegrass uniformly labelled with 14C was incubated aerobically at 25°C for 62 days in two contrastin...
The influence of liming on rhizosphere microbial biomass C and incorporation of root exudates was st...
Plant-microbial interactions alter C and N balance in the rhizosphere and affect the microbial carbo...
Carbon (C) cycling in the atmosphere-plant-soil-microorganism system has been the focus of much rece...
Root exudation increases the concentration of readily available carbon (C) compounds in its immediat...
The fate of C from rhizodeposits in soil is still unanswered. A broader knowledge of the contributio...
Carbon rhizodeposition and root respiration during eight development stages of Lolium perenne were s...