Plant roots harbor a large diversity of microorganisms that have an essential role in ecosystem functioning. To better understand the level of intimacy of root-inhabiting microbes such as arbuscular mycorrhizal fungi and bacteria, we provided 13CO2 to plants at atmospheric concentration during a 5-h pulse. We expected microbes dependent on a carbon flux from their host plant to become rapidly labeled. We showed that a wide variety of microbes occurred in roots, mostly previously unknown. Strikingly, the greatest part of this unsuspected diversity corresponded to active primary consumers. We found 17 bacterial phylotypes co-occurring within roots of a single plant, including five potentially new phylotypes. Fourteen phylotypes were heavily l...
A primary factor regulating the composition of the microbial community in the rhizosphere is carbon ...
Background and aims: Forest ecosystems may act as sinks for or source of atmospheric CO2. While inor...
BackgroundThe transformation of plant photosynthate into soil organic carbon and its recycling to CO...
Plant roots harbor a large diversity of microorganisms that have an essential role in ecosystem func...
International audiencePlant roots harbor a large diversity of microorganisms that have an essential ...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
Despite the advantages of the next generation sequencing (NGS) techniques, one of their caveats is t...
Rising atmospheric CO2 levels are predicted to have major consequences on carbon cycling and the fun...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
Microorganisms associated with the roots of plants have an important function in plant growth and in...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Several eukaryotic symbioses have shown to host a rich diversity of prokaryotes that interact with t...
A primary factor regulating the composition of the microbial community in the rhizosphere is carbon ...
Background and aims: Forest ecosystems may act as sinks for or source of atmospheric CO2. While inor...
BackgroundThe transformation of plant photosynthate into soil organic carbon and its recycling to CO...
Plant roots harbor a large diversity of microorganisms that have an essential role in ecosystem func...
International audiencePlant roots harbor a large diversity of microorganisms that have an essential ...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
Despite the advantages of the next generation sequencing (NGS) techniques, one of their caveats is t...
Rising atmospheric CO2 levels are predicted to have major consequences on carbon cycling and the fun...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
Microorganisms associated with the roots of plants have an important function in plant growth and in...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Several eukaryotic symbioses have shown to host a rich diversity of prokaryotes that interact with t...
A primary factor regulating the composition of the microbial community in the rhizosphere is carbon ...
Background and aims: Forest ecosystems may act as sinks for or source of atmospheric CO2. While inor...
BackgroundThe transformation of plant photosynthate into soil organic carbon and its recycling to CO...