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  5. Open-source data reveal how collections-based fungal diversity is sensitive to global change

Open-source data reveal how collections-based fungal diversity is sensitive to global change

Resource type
Journal article
Creator (person)
Andrew, C
Büntgen, U
Egli, S
Senn-Irlet, B
Grytnes, J
Heilmann-Clausen, J
Boddy, L
Bässler, C
Gange, A
Heegaard, E
Høiland, K
Kirk, P
Krisai-Greilhüber, I
Kuyper, T
Kauserud, H
Date published
2019
Abstract
Premise of the Study: Fungal diversity (richness) trends at large scales are in urgent need of investigation, especially through novel situations that combine long-term observational with environmental and remotely sensed open-source data. Methods: We modeled fungal richness, with collections-based records of saprotrophic (decaying) and ectomycorrhizal (plant mutualistic) fungi, using an array of environmental variables across geographical gradients from northern to central Europe. Temporal differences in covariables granted insight into the impacts of the shorter- versus longer-term environment on fungal richness. Results: Fungal richness varied significantly across different land-use types, with highest richness in forests and lowest in urban areas. Latitudinal trends supported a unimodal pattern in diversity across Europe. Temperature, both annual mean and range, was positively correlated with richness, indicating the importance of seasonality in increasing richness amounts. Precipitation seasonality notably affected saprotrophic fungal diversity (a unimodal relationship), as did daily precipitation of the collection day (negatively correlated). Ectomycorrhizal fungal richness differed from that of saprotrophs by being positively associated with tree species richness. Discussion: Our results demonstrate that fungal richness is strongly correlated with land use and climate conditions, especially concerning seasonality, and that ongoing global change processes will affect fungal richness patterns at large scales. © 2019 Andrew et al. Applications in Plant Sciences is published by Wiley Periodicals, Inc. on behalf of the Botanical Society of America
Journal title
Applications in Plant Sciences
Volume
7
Issue
3
Article number
e01227
ISSN
2168-0450
Official URL
https://bsapubs.onlinelibrary.wiley.com/doi/full/10.1002/aps3.1227
Rights statement
In Copyright
DOI
10.1002/aps3.1227
Managed by the British Library and supported by the AHRC

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