We investigated the effects of mycorrhizal colonization and future climate on roots and soil respiration (Rsoil) in model grassland ecosystems. We exposed artificial grassland communities on pasteurized soil (no living arbuscular mycorrhizal fungi (AMF) present) and on pasteurized soil subsequently inoculated with AMF to ambient conditions and to a combination of elevated CO2 and temperature (future climate scenario). After one growing season, the inoculated soil revealed a positive climate effect on AMF root colonization and this elicited a significant AMF x climate scenario interaction on root biomass. Whereas the future climate scenario tended to increase root biomass in the noninoculated soil, the inoculated soil revealed a 30% redu...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
We investigated the effects of mycorrhizal colonization and future climate on roots and soil respira...
Due to their key position at the soil-root interface, arbuscular mycorrhizal fungi (AMF) may play an...
Aims: In view of the projected increase in global air temperature and CO 2 concentration, the effect...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Arbuscular mycorrhizal (AM) fungi have a major influence on the structure, responses and below-groun...
The relationships of mycorrhizal fungal respiration and productivity to climate and atmospheric chem...
The symbiotic associations between plant roots and mycorrhizal fungi are almost ubiquitous. These in...
Symbiotic arbuscular mycorrhizal fungi (AMF) are ubiquitous in tropical forests. AMF play a role in ...
A decisive set of steps in the terrestrial carbon (C) cycle is the fixation of atmospheric C by plan...
• The arbuscular mycorrhizal (AM) symbiosis is ubiquitous, and the fungus represents a major pathway...
A substantial portion of grassland photosynthates is allocated belowground to arbuscular mycorrhizal...
Soil respiration plays a critical role in driving soil carbon (C) cycling in terrestrial forest ecos...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
We investigated the effects of mycorrhizal colonization and future climate on roots and soil respira...
Due to their key position at the soil-root interface, arbuscular mycorrhizal fungi (AMF) may play an...
Aims: In view of the projected increase in global air temperature and CO 2 concentration, the effect...
Elevated atmospheric CO2 concentration (eCO2) effects on plants depend on several factors including ...
Arbuscular mycorrhizal (AM) fungi have a major influence on the structure, responses and below-groun...
The relationships of mycorrhizal fungal respiration and productivity to climate and atmospheric chem...
The symbiotic associations between plant roots and mycorrhizal fungi are almost ubiquitous. These in...
Symbiotic arbuscular mycorrhizal fungi (AMF) are ubiquitous in tropical forests. AMF play a role in ...
A decisive set of steps in the terrestrial carbon (C) cycle is the fixation of atmospheric C by plan...
• The arbuscular mycorrhizal (AM) symbiosis is ubiquitous, and the fungus represents a major pathway...
A substantial portion of grassland photosynthates is allocated belowground to arbuscular mycorrhizal...
Soil respiration plays a critical role in driving soil carbon (C) cycling in terrestrial forest ecos...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...
The extent to which terrestrial ecosystems can sequester carbon to mitigate climate change is a matt...