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Abstract
Sporocarp production is essential for ectomycorrhizal fungal recombination and dispersal, which influences fungal community dynamics. Increasing atmospheric carbon dioxide (CO
2) and ozone (O
3) affect host plant carbon gain and allocation, which may in turn influence ectomycorrhizal sporocarp production if the carbon available to the ectomycorrhizal fungus is dependant upon the quantity of carbon assimilated by the host. We measured sporocarp production of ectomycorrhizal fungi over 4 years at the Aspen FACE (free air CO
2 enrichment) site, which corresponded to stand ages seven to 10 years. Total mean sporocarp biomass was greatest under elevated CO
2, regardless of O
3 concentration, while it was generally lowest under elevated O
3 with ambient CO
2. Community composition differed significantly among the treatments, with less difference in the final year of the study. Whether this convergence was due to succession or environmental factors is uncertain. CO
2 and O
3 affect ectomycorrhizal sporocarp productivity and community composition, with likely effects on dispersal, colonization and sporocarp-dependent food webs.
Citation
Andrew, Carrie; Lilleskov, Erik A. 2009. Productivity and community structure of ectomycorrhizal fungal sporocarps under increased atmospheric CO
2 and O
3. Ecology Letters. 12: 813-822.