Rising atmospheric CO2 levels are predicted to have major consequences on carbon cycling and the functioning of terrestrial ecosystems. Increased photosynthetic activity is expected, especially for C-3 plants, thereby influencing vegetation dynamics; however, little is known about the path of fixed carbon into soil-borne communities and resulting feedbacks on ecosystem function. Here, we examine how arbuscular mycorrhizal fungi (AMF) act as a major conduit in the transfer of carbon between plants and soil and how elevated atmospheric CO2 modulates the belowground translocation pathway of plant-fixed carbon. Shifts in active AMF species under elevated atmospheric CO2 conditions are coupled to changes within active rhizosphere bacterial and f...
Non-vascular plants associating with arbuscular mycorrhizal (AMF) and Mucoromycotina ‘fine root endo...
A substantial amount of photosynthesized plant-C is allocated belowground in grassland ecosystems wh...
Metabolites in soil play an important role in regulating plant-microbe interactions and, thereby, pl...
Rising atmospheric CO2 levels are predicted to have major consequences on carbon cycling and the fun...
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 ...
General concern about climate change has led to growing interest in the responses of terrestrial eco...
Rising atmospheric CO2 levels are predicted to have major consequences on C cycling and the function...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Arbuscular mycorrhizal (AMF) function has mostly been studied from the plant perspective, but there ...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
Elevated atmospheric carbon dioxide (eCO2) can impact soil organic matter (SOM) dynamics by changing...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
The atmospheric concentration of CO2 is predicted to reach double current levels by 2075. Detritus f...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
Non-vascular plants associating with arbuscular mycorrhizal (AMF) and Mucoromycotina ‘fine root endo...
A substantial amount of photosynthesized plant-C is allocated belowground in grassland ecosystems wh...
Metabolites in soil play an important role in regulating plant-microbe interactions and, thereby, pl...
Rising atmospheric CO2 levels are predicted to have major consequences on carbon cycling and the fun...
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 ...
General concern about climate change has led to growing interest in the responses of terrestrial eco...
Rising atmospheric CO2 levels are predicted to have major consequences on C cycling and the function...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Arbuscular mycorrhizal (AMF) function has mostly been studied from the plant perspective, but there ...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
Elevated atmospheric carbon dioxide (eCO2) can impact soil organic matter (SOM) dynamics by changing...
Soil community responses to increased atmospheric CO2 concentrations are expected to occur mostly th...
The atmospheric concentration of CO2 is predicted to reach double current levels by 2075. Detritus f...
Numerous (CO2)-C-13, labeling studies have traced the flow of carbon from fresh plant exudates into ...
Non-vascular plants associating with arbuscular mycorrhizal (AMF) and Mucoromycotina ‘fine root endo...
A substantial amount of photosynthesized plant-C is allocated belowground in grassland ecosystems wh...
Metabolites in soil play an important role in regulating plant-microbe interactions and, thereby, pl...