Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
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Conservation of biotrophy in Hygrophoraceae inferred from combined stable isotope and phylogenetic analysesThe ectomycorrhizal status ofCalostoma cinnabarinumdetermined using isotopic, molecular, and morphological methodsSolving the ecological puzzle of mycorrhizal associations using data from annotated collections and environmental samples - an example of saddle fungi.Evolution of ectomycorrhizas as a driver of diversification and biogeographic patterns in the model mycorrhizal mushroom genus LaccariaAmanita thiersii is a saprotrophic fungus expanding its range in the United States.Divergence in ectomycorrhizal communities with foreign Douglas-fir populations and implications for assisted migration.Imaia, a new truffle genus to accommodate Terfezia gigantea.First report of the ectomycorrhizal status of boletes on the Northern Yucatan Peninsula, Mexico determined using isotopic methods.Geographically structured host specificity is caused by the range expansions and host shifts of a symbiotic fungus.You are what you get from your fungi: nitrogen stable isotope patterns in Epipactis species.Mixotrophy in Pyroleae (Ericaceae) from Estonian boreal forests does not vary with light or tissue age.Carbon isotopes in terrestrial ecosystem pools and CO2 fluxes.Nitrogen isotopes link mycorrhizal fungi and plants to nitrogen dynamics.Artificial cultivation of true morels: current state, issues and perspectives.15N enrichment as an integrator of the effects of C and N on microbial metabolism and ecosystem function.The ectomycorrhizal status of a tropical black bolete, Phlebopus portentosus, assessed using mycorrhizal synthesis and isotopic analysis.Exploring the phylogenetic affiliations and the trophic mode of Sedecula pulvinata (Sedeculaceae).13C isotopic fractionation during biodegradation of agricultural wastes.Carbon and nitrogen supply to the underground orchid, Rhizanthella gardneri.Ecology of Alpine Macrofungi - Combining Historical with Recent Data.Pakaraimaea dipterocarpacea is ectomycorrhizal, indicating an ancient Gondwanaland origin for the ectomycorrhizal habit in Dipterocarpaceae.Isotopic evidence indicates saprotrophy in post-fire Morchella in Oregon and Alaska.How to know the fungi: combining field inventories and DNA-barcoding to document fungal diversity.Increased ectomycorrhizal fungal abundance after long-term fertilization and warming of two arctic tundra ecosystems.A review on research advances, issues, and perspectives of morelsEctomycorrhizal colonization slows root decomposition: the post-mortem fungal legacy
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P2860
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
description
article
@en
im Juni 2001 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в червні 2001
@uk
ലേഖനം
@ml
name
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@en
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@nl
type
label
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@en
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@nl
prefLabel
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@en
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@nl
P2093
P2860
P1433
P1476
Mycorrhizal vs saprotrophic status of fungi: the isotopic evidence
@en
P2093
Erik A. Hobbie
James M. Trappe
Nancy S. Weber
P2860
P304
P356
10.1046/J.1469-8137.2001.00134.X
P407
P577
2001-06-01T00:00:00Z