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Ecological and genomic variation in ectomycorrhizal fungal exploration types

Mansfield_et_al-2026-NewPhy-Ecological_and_genomic_variation_in_ectomycorrhizal.pdf
Mansfield_et_al-2026-NewPhy-Ecological_and_genomic_variation_in_ectomycorrhizal.pdf - Publisher's version - 3.77 MB
How to cite: Mansfield, T.M., Zarsav, A., Cox, F., Suz, L.M., Bidartondo, M.I., van der Linde, S., Barsoum, N., Averill, C., Kuo, A., Tedersoo, L., Rautio, P., Gessler, A., De Vos, B., Croisé, L., Meesenburg, H., Wagner, M., Jacob, F., Lech, P., Kowalska, A., Greve, M., Popova, G., Frey, B., Schaub, M., Ferretti, M., Waldner, P., Calatayud, V., Canullo, R., Papitto, G., Marinšek, A., Vesterdal, L., Ingerslev, M., Meissner, H., Timmermann, V., Eickenscheidt, N., Schmitz, A., Martin, F.M., Spatafora, J., Kennedy, P.G., Kohler, A., Plett, J.M., Anderson, I.C., Branco, S., Grigoriev, I.V., Pires, C.J., Unruh, S.A., Zettler, L.W., Miettinen, O., Viner, I., May, T.W., Lebel, T., Catcheside, D.E.A., Catcheside, P.S., Vonow, H.P., Burgoyne, L.A., Haska, J. and Anthony, M.A. (2026), Ecological and genomic variation in ectomycorrhizal fungal exploration types. New Phytol. https://doi.org/10.1111/nph.71157

Tiivistelmä

Ectomycorrhizal fungi (EMF) produce mycelia with variable extension and complexity, which can be classified according to soil ‘exploration types’ (ETs). ETs have received attention as one of the few mycorrhizal trait frameworks, but without an empirical classification of ET functional diversity and environmental preferences, understanding and interpreting EMF bio-geographic patterns has been difficult. We conducted a synthesis combining: comparative EMF genomics to describe functional divergence in decomposition and nutrient cycling genes across ETs; and EMF trait distribution modeling across continental Europe, pairing soil and root EMF surveys to establish biogeo-graphic ET niche profiles. We demonstrate a signature of ETs encoded in EMF genomes, which is independent from phylogeny and linked to biomass production strategies. EMF ET relative abundances were separated by soil, root, and dominant tree leaf type habitats and exhibited unique correlations with forest biotic (e.g. plant productivity and plant pathogen densities) and abiotic (e.g. nitro-gen deposition and soil pH) conditions. These findings support a theory that EMF niche partitioning can be partially explained by extraradical mycelial traits, with underlying variation in ET biogeography likely arising from distinct decomposition and nutrient cycling potentials. We also identify important limitations to this trait framework and provide a guided outlook for future research.

ISBN

OKM-julkaisutyyppi

A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Julkaisusarja

New phytologist

Volyymi

Numero

Sivut

Sivut

16 p.

ISSN

0028-646X
1469-8137