The exudation of carbon (C) by tree roots stimulates microbial activity and the production of extracellular enzymes in the rhizosphere. Here, we investigated whether the strength of rhizosphere processes differed between temperate forest trees that vary in soil organic matter (SOM) chemistry and associate with either ectomycorrhizal (ECM) or arbuscular mycorrhizal (AM) fungi. We measured rates of root exudation, microbial and extracellular enzyme activity, and nitrogen (N) availability in samples of rhizosphere and bulk soil influenced by four temperate forest tree species (i.e., to estimate a rhizosphere effect). Although not significantly different between species, root exudation ranged from 0.36 to 1.10 g C m−2 day−1, representing a smal...
The activities of plants and soil microbes are the primary drivers of forest ecosystem processes suc...
<div><p>Evidence is increasing that soil animal food webs are fueled by root-derived carbon (C) and ...
Plant roots, their associated microbial community and free-living soil microbes interact to regulate...
While multiple experiments have demonstrated that trees exposed to elevated CO2 can stimulate microb...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Plant roots and associated mycorrhizae exert a large influence on soil carbon (C) cycling. Yet, litt...
1. Understanding the effects of tree species and their mycorrhizal association on soil processes is ...
The rhizosphere is a hot-spot for biogeochemical cycles, including production of greenhouse gases, a...
The rhizosphere is a hot-spot for biogeochemical cycles, including production of greenhouse gases, a...
Saprotrophic microbes are typically credited with producing extracellular enzymes that recycle organ...
Mycorrhizal fungi have considerable effects on soil carbon (C) storage, as they control the decompos...
Saprotrophic microbes are typically credited with producing extracellular enzymes that recycle organ...
Plant seasonal cycles alter carbon (C) and nitrogen (N) availability for soil microbes, which may af...
The activities of plants and soil microbes are the primary drivers of forest ecosystem processes suc...
<div><p>Evidence is increasing that soil animal food webs are fueled by root-derived carbon (C) and ...
Plant roots, their associated microbial community and free-living soil microbes interact to regulate...
While multiple experiments have demonstrated that trees exposed to elevated CO2 can stimulate microb...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Atmospheric nitrogen (N) deposition has enhanced soil carbon (C) stocks in temperate forests. Most r...
Plant roots and associated mycorrhizae exert a large influence on soil carbon (C) cycling. Yet, litt...
1. Understanding the effects of tree species and their mycorrhizal association on soil processes is ...
The rhizosphere is a hot-spot for biogeochemical cycles, including production of greenhouse gases, a...
The rhizosphere is a hot-spot for biogeochemical cycles, including production of greenhouse gases, a...
Saprotrophic microbes are typically credited with producing extracellular enzymes that recycle organ...
Mycorrhizal fungi have considerable effects on soil carbon (C) storage, as they control the decompos...
Saprotrophic microbes are typically credited with producing extracellular enzymes that recycle organ...
Plant seasonal cycles alter carbon (C) and nitrogen (N) availability for soil microbes, which may af...
The activities of plants and soil microbes are the primary drivers of forest ecosystem processes suc...
<div><p>Evidence is increasing that soil animal food webs are fueled by root-derived carbon (C) and ...
Plant roots, their associated microbial community and free-living soil microbes interact to regulate...