Fungal community composition predicts forest carbon storage at a continental scale

Author:

Anthony Mark A.ORCID,Tedersoo LehoORCID,De Vos Bruno,Croisé Luc,Meesenburg HenningORCID,Wagner Markus,Andreae Henning,Jacob Frank,Lech PawełORCID,Kowalska Anna,Greve Martin,Popova Genoveva,Frey BeatORCID,Gessler ArthurORCID,Schaub MarcusORCID,Ferretti Marco,Waldner Peter,Calatayud VicentORCID,Canullo RobertoORCID,Papitto Giancarlo,Marinšek Aleksander,Ingerslev Morten,Vesterdal LarsORCID,Rautio PasiORCID,Meissner Helge,Timmermann Volkmar,Dettwiler Mike,Eickenscheidt Nadine,Schmitz AndreasORCID,Van Tiel NinaORCID,Crowther Thomas W.ORCID,Averill Colin

Abstract

AbstractForest soils harbor hyper-diverse microbial communities which fundamentally regulate carbon and nutrient cycling across the globe. Directly testing hypotheses on how microbiome diversity is linked to forest carbon storage has been difficult, due to a lack of paired data on microbiome diversity and in situ observations of forest carbon accumulation and storage. Here, we investigated the relationship between soil microbiomes and forest carbon across 238 forest inventory plots spanning 15 European countries. We show that the composition and diversity of fungal, but not bacterial, species is tightly coupled to both forest biotic conditions and a seven-fold variation in tree growth rates and biomass carbon stocks when controlling for the effects of dominant tree type, climate, and other environmental factors. This linkage is particularly strong for symbiotic endophytic and ectomycorrhizal fungi known to directly facilitate tree growth. Since tree growth rates in this system are closely and positively correlated with belowground soil carbon stocks, we conclude that fungal composition is a strong predictor of overall forest carbon storage across the European continent.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Springer Science and Business Media LLC

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