Diversity of putative ericoid mycorrhizal fungi increases with soil age and progressive phosphorus limitation across a 4.1-million-year chronosequence

Author:

Leopold Devin R12ORCID,Peay Kabir G1,Vitousek Peter M1,Fukami Tadashi1

Affiliation:

1. Department of Biology, Stanford University, 371 Serra Mall, Stanford, CA 94305–5020, USA

2. Department of Botany and Plant Pathology, Oregon State University, 4575 SW Research Way, Corvallis, OR 97331, USA

Abstract

ABSTRACT Ericaceous plants rely on ericoid mycorrhizal fungi for nutrient acquisition. However, the factors that affect the composition and structure of fungal communities associated with the roots of ericaceous plants remain largely unknown. Here, we use a 4.1-million-year (myr) soil chronosequence in Hawaii to test the hypothesis that changes in nutrient availability with soil age determine the diversity and species composition of fungi associated with ericoid roots. We sampled roots of a native Hawaiian plant, Vaccinium calycinum, and used DNA metabarcoding to quantify changes in fungal diversity and community composition. We also used a fertilization experiment at the youngest and oldest sites to assess the importance of nutrient limitation. We found an increase in diversity and a clear pattern of species turnover across the chronosequence, driven largely by putative ericoid mycorrhizal fungi. Fertilization with nitrogen at the youngest site and phosphorus at the oldest site reduced fungal diversity, suggesting a direct role of nutrient limitation. Our results also reveal the presence of novel fungal species associated with Hawaiian Ericaceae and suggest a greater importance of phosphorus availability for communities of ericoid mycorrhizal fungi than is generally assumed.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

Reference97 articles.

1. UNITE general FASTA release for Fungi;Abarenkov,2020

2. The contribution of ericoid plants to soil nitrogen chemistry and organic matter decomposition in boreal forest soil;Adamczyk;Soil Biol Biochem,2016

3. A new method for non-parametric multivariate analysis of variance;Anderson;Austral Ecol,2001

4. First record of Rhizoscyphusericae in Southern Hemisphere's Ericaceae;Bruzone;Mycorrhiza,2017

5. Ericoid mycorrhiza: a partnership that exploits harsh edaphic conditions;Cairney;Eur J Soil Sci,2003

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