Microbial communities associated with a plant host, constituting a holobiont, affect the physiology and growth of the plant via metabolites that are mainly derived from their photosynthates. The structure and function of active microbial communities that assimilate root exudates can be tracked by using stable isotope probing (SIP) approaches. This article reviews results from ongoing SIP research in plant microbe interactions, with a specific focus on investigating the fate of fresh and recalcitrant carbon in the rhizosphere with C-13 enriched-root exudates, in addition to identifying key players in carbon cycling. Finally, we discuss new SIP applications that have the potential to identify novel enzymes implicated in rhizoremediation or pl...
Numerous 13CO2 labeling studies have traced the flow of carbon from fresh plant exudates into rhizos...
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 ...
Microbial communities associated with a plant host, constituting a holobiont, affect the physiology ...
International audienceStable isotope probing of microbial nucleic acids applied in the rhizosphere e...
Stable isotope probing (SIP) enables tracking the nutrient flows from isotopically labeled substrate...
Recently developed 13CO2 pulse labelling and stable isotope probing (SIP) methods offer the potentia...
International audienceThe use of stable-isotope probing (SIP) allows tracing specific labeled substr...
International audienceThe use of stable-isotope probing (SIP) allows tracing specific labeled substr...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Rhizosphere microorganisms play an important role in soil carbon flow, through turnover of root exud...
International audiencePlant strategies for soil nutrient uptake have the potential to strongly influ...
Numerous 13CO2 labeling studies have traced the flow of carbon from fresh plant exudates into rhizos...
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 ...
Microbial communities associated with a plant host, constituting a holobiont, affect the physiology ...
International audienceStable isotope probing of microbial nucleic acids applied in the rhizosphere e...
Stable isotope probing (SIP) enables tracking the nutrient flows from isotopically labeled substrate...
Recently developed 13CO2 pulse labelling and stable isotope probing (SIP) methods offer the potentia...
International audienceThe use of stable-isotope probing (SIP) allows tracing specific labeled substr...
International audienceThe use of stable-isotope probing (SIP) allows tracing specific labeled substr...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Rhizosphere microorganisms play an important role in soil carbon flow, through turnover of root exud...
International audiencePlant strategies for soil nutrient uptake have the potential to strongly influ...
Numerous 13CO2 labeling studies have traced the flow of carbon from fresh plant exudates into rhizos...
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 ...