Summary *Here, species composition and biomass production of actively growing ectomycorrhizal (EM) mycelia were studied over the rotation period of managed Norway spruce (Picea abies) stands in south-western Sweden. *The EM mycelia were collected using ingrowth mesh bags incubated in the forest soil during one growing season. Fungal biomass was estimated by ergosterol analysis and the EM species were identified by 454 sequencing of internal transcribed spacer (ITS) amplicons. Nutrient availability and the fungal biomass in soil samples were also estimated. *Biomass production peaked in young stands (10-30 yr old) before the first thinning phase. Tylospora fibrillosa dominated the EM community, especially in these young stands, where it cons...
Soil fungi are vital for regulating ecosystem carbon balance and productivity, by driving processes ...
We studied the effect of apatite amendment on ectomycorrhizal (EM) mycelial biomass production and s...
ABSTRACT Plantations of Norway spruce have been established well beyond its natural range i...
Nutrient uptake by forest trees is dependent on ectomycorrhizal (EM) mycelia that grow out into the ...
A substantial portion of the carbon (C) fixed by the trees is allocated belowground to ectomycorrhiz...
Direct estimates of C:N ratios of ectomycorrhizal (EM) mycelia growing in situ in forest soils have ...
In boreal forests an important part of the photo assimilates are allocated belowground to support sy...
There is growing evidence of the importance of extramatrical mycelium (EMM) of mycorrhizal fungi in ...
Most plants live in symbiosis with mycorrhizal fungi. Mycorrhizal roots constitute the interface bet...
1. In boreal forest soils, mycelium of mycorrhizal fungi is pivotal for regulating soil carbon (C) c...
Most boreal tree species rely on root-associated ectomycorrhizal fungi for nutrient acquisition, in ...
In boreal forest soils, mycelium of mycorrhizal fungi is pivotal for regulating soil carbon (C) cycl...
Ectomycorrhizal (EM) fungi are pivotal drivers of ecosystem functioning in temperate and boreal fore...
Soil fungi are vital for regulating ecosystem carbon balance and productivity, by driving processes ...
We studied the effect of apatite amendment on ectomycorrhizal (EM) mycelial biomass production and s...
ABSTRACT Plantations of Norway spruce have been established well beyond its natural range i...
Nutrient uptake by forest trees is dependent on ectomycorrhizal (EM) mycelia that grow out into the ...
A substantial portion of the carbon (C) fixed by the trees is allocated belowground to ectomycorrhiz...
Direct estimates of C:N ratios of ectomycorrhizal (EM) mycelia growing in situ in forest soils have ...
In boreal forests an important part of the photo assimilates are allocated belowground to support sy...
There is growing evidence of the importance of extramatrical mycelium (EMM) of mycorrhizal fungi in ...
Most plants live in symbiosis with mycorrhizal fungi. Mycorrhizal roots constitute the interface bet...
1. In boreal forest soils, mycelium of mycorrhizal fungi is pivotal for regulating soil carbon (C) c...
Most boreal tree species rely on root-associated ectomycorrhizal fungi for nutrient acquisition, in ...
In boreal forest soils, mycelium of mycorrhizal fungi is pivotal for regulating soil carbon (C) cycl...
Ectomycorrhizal (EM) fungi are pivotal drivers of ecosystem functioning in temperate and boreal fore...
Soil fungi are vital for regulating ecosystem carbon balance and productivity, by driving processes ...
We studied the effect of apatite amendment on ectomycorrhizal (EM) mycelial biomass production and s...
ABSTRACT Plantations of Norway spruce have been established well beyond its natural range i...