Linking root-associated fungal and bacterial functions to root economics

Author:

Wu Ran1,Zeng Xiaoyue1,McCormack M. Luke2,Fernandez Christopher W.3,Yang Yin1,Guo Hui1,Xi Meijie1,Liu Yu1,Qi Xiangbin4,Liang Shuang1,Juenger Thomas E.5,Koide Roger T.6,Chen Weile1ORCID

Affiliation:

1. College of Life Sciences, Zhejiang University

2. Center for Tree Science, The Morton Arboretum

3. College of Arts & Sciences, Syracuse University

4. Tianmu Mountain National Nature Reserve Administration of Zhejiang

5. Department of Integrative Biology, University of Texas at Austin

6. Department of Biology, Brigham Young University

Abstract

Tree roots form symbioses with soil microbes to acquire nutrients, but the relationships between root nutrient acquisition strategies and microbial community composition remain poorly understood. Here, we measured root traits and root-associated fungal and bacterial guilds in 336 trees of 52 species from a subtropical forest. We found a fungal gradient from ectomycorrhizal to saprotrophic dominance, which corresponded with a shift from organic to mineral nutrient economics. This fungal gradient was aligned with the increase of root nitrogen concentration, suggesting a linkage from simple root trait to fungal-mediated carbon-nutrient cycling. We also found that the functional composition of fungal and bacterial communities was closely correlated with host root-zone pH, which often varied among coexisting trees. Root-zone pH was independent of the common root traits, underpinning a potential new gradient in the root trait space. Our findings integrate microbial functions into the root economics framework, thereby advancing the understanding of diversity of nutrient acquisition strategies across forest trees.

Publisher

eLife Sciences Publications, Ltd

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