Soil fertility relates to fungal‐mediated decomposition and organic matter turnover in a temperate mountain forest

Author:

Mayer Mathias12ORCID,Rewald Boris2ORCID,Matthews Bradley23ORCID,Sandén Hans2ORCID,Rosinger Christoph24ORCID,Katzensteiner Klaus2ORCID,Gorfer Markus5ORCID,Berger Harald6ORCID,Tallian Claudia5ORCID,Berger Torsten W.2ORCID,Godbold Douglas L.2ORCID

Affiliation:

1. Forest Soils and Biogeochemistry Swiss Federal Institute for Forest Snow and Landscape Research (WSL) Zürcherstrasse 111 Birmensdorf8903Switzerland

2. Department of Forest and Soil Sciences Institute of Forest Ecology University of Natural Resources and Life Sciences (BOKU) Peter‐Jordan Straße 82 Vienna1190Austria

3. Environment Agency Austria Spittelauer Lände 5 Vienna1090Austria

4. Terrestrial Ecology Group Institute of Zoology University of Cologne Zülpicher Straße 47b Cologne50674Germany

5. Bioresources Unit, Center for Health & Bioresources Austrian Institute of Technology GmbH (AIT) Konrad‐Lorenz‐Straße 24, Tulln3430Austria

6. Symbiocyte Vorgartenstraße 145 Vienna1020Austria

Funder

Österreichischen Akademie der Wissenschaften

Austrian Science Fund

Publisher

Wiley

Subject

Plant Science,Physiology

Reference84 articles.

1. Broad geographical and ecological diversity from similar genomic toolkits in the ascomycete genus Tetracladium;Anderson JL;bioRxiv,2020

2. Ectomycorrhizal fungi slow soil carbon cycling

3. Mycorrhiza-mediated competition between plants and decomposers drives soil carbon storage

4. Fungal laccases – occurrence and properties

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