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Assembly processes of trophic guilds in the root mycobiome of temperate forests

Kristina Schröter; Bernd Wemheuer; Rodica Pena; Ingo Schöning; Martin Ehbrecht; Peter Schall; Christian Ammer; Rolf Daniel; Andrea Polle
Molecular Ecology · Vol. 28, Issue 2 · pp. 348-364 · 2019

Abstract

Root‐associated mycobiomes ( RAM s) link plant and soil ecological processes, thereby supporting ecosystem functions. Understanding the forces that govern the assembly of RAM s is key to sustainable ecosystem management. Here, we dissected RAM s according to functional guilds and combined phylogenetic and multivariate analyses to distinguish and quantify the forces driving RAM assembly processes. Across large biogeographic scales (>1,000 km) in temperate forests (>100 plots), RAM s were taxonomically highly distinct but composed of a stable trophic structure encompassing symbiotrophic, ectomycorrhizal (55%), saprotrophic (7%), endotrophic (3%) and pathotrophic fungi ( RAM s is explained by abiotic factors, forest management intensity, dominant tree family ( Fagaceae , Pinaceae ) and root resource traits. Local RAM assemblies are phylogenetically clustered, indicating stronger habitat filtering on roots in dry, acid soils and in conifer stands than in other forest types. The local assembly of ectomycorrhizal communities is driven by forest management intensity. At larger scales, root resource traits and soil p H shift the assembly process of ectomycorrhizal fungi from deterministic to neutral. Neutral or weak deterministic assembly processes are prevalent in saprotrophic and endophytic guilds. The remarkable consistency of the trophic composition of the RAM s suggests that temperate forests attract fungal assemblages that afford functional resilience under the current range of climatic and edaphic conditions. At local scales, the filtering processes that structure symbiotrophic assemblies can be influenced by forest management and tree selection, but at larger scales, environmental cues and host resource traits are the most prevalent forces.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2019-01-01
Publication Year2019
Volume28
Issue2
Pages348-364
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.14887
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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