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  5. Fine‐scale spatiotemporal dynamics of fungal fruiting: prevalence, amplitude, range and continuity.

Fine‐scale spatiotemporal dynamics of fungal fruiting: prevalence, amplitude, range and continuity.

Resource type
Journal article
Creator (person)
Heegaard, E.
Boddy, L.
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Diez, J. M.
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Halvorsen, R.
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Kauserud, H.
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Kuyper, T. W.
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Bässler, C.
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Büntgen, U.
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Gange, A. C.
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Krisai‐Greilhuber, I.
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Andrew, C. J.
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Ayer, F.
Høiland, K.
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Kirk, P. M.
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Egli, S.
Date published
August 3, 2017
Abstract
Despite the critical importance of fungi as symbionts with plants, resources for animals, and drivers of ecosystem function, the spatiotemporal distributions of fungi remain poorly understood. The belowground life cycle of fungi makes it difficult to assess spatial patterns and dynamic processes even with recent molecular techniques. Here we offer an explicit spatiotemporal Bayesian inference of the drivers behind spatial distributions from investigation of a Swiss inventory of fungal fruit bodies. The unique inventory includes three temperate forest sites in which a total of 73 952 fungal fruit bodies were recorded systematically in a spatially explicit design between 1992 and 2006. Our motivation is to understand how broad‐scale climate factors may influence spatiotemporal dynamics of fungal fruiting within forests, and if any such effects vary between two functional groups, ectomycorrhizal (ECM) and saprotrophic fungi. For both groups we asked: 1) how consistent are the locations of fruiting patches, the sizes of patches, the quantities of fruit bodies, and of prevalence (occupancy)? 2) Do the annual spatial characteristics of fungal fruiting change systematically over time? 3) Are spatial characteristics of fungal fruiting driven by climatic variation? We found high inter‐annual continuity in fruiting for both functional groups. The saprotrophic species were characterised by small patches with variable fruit body counts. In contrast, ECM species were present in larger, but more distinctly delimited patches. The spatial characteristics of the fungal community were only indirectly influenced by climate. However, climate variability influenced overall yields and prevalence, which again links to spatial structure of fruit bodies. Both yield and prevalence were correlated with the amplitudes of occurrence and of fruit body counts, but only prevalence influenced the spatial range. Summarizing, climatic variability affects forest‐stand fungal distributions via its influence on yield (amount) and prevalence (occupancy), whereas fungal life‐history strategies dictate fine‐scale spatial characteristics.
Funder
Funder nameAwards
Research Council of Norway, Norway
ClimFun project (grant 225043)
Journal title
Ecography
Volume
40
Issue
8
Publisher
Wiley
Place of publication
UK
ISSN
0906-7590
eISSN
1600-0587
Date accepted
July 18, 2016
Official URL
https://doi.org/10.1111/ecog.02256
Rights statement
In Copyright
DOI
10.1111/ecog.02256
Keywords
Temperate forests
Spatiotemporal distributions
Fungal fruit bodies
Switzerland
Fungi
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