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Site‐Specific Nutrient Data Reveal the Importance of Soils in Driving the Mycorrhizal Make‐Up of Woody Vegetation Worldwide

Xiaobin Hua; Christopher H. Lusk; Ian A. Dickie; Stephen Adu‐Bredu; Kathryn J. Allen; Viviana Araus; Laurent Augusto; Pavel Barsukov; David Bauman; Félix Brédoire; David F. R. P. Burslem; James W. Dalling; Leen Depauw; Kyle G. Dexter; Thomas Drouet; John L. Godlee; Roberto Godoy; Rodrigo A. Gutiérrez; Jonathan Ilunga Muledi; Arnaud Jacobs; Robert Kooyman; Claudio Latorre; Jesús López Angulo; Sébastien Macé; Sybryn L. Maes; Francisco Maiato Pedro Gonçalves; Ben Hur Marimon Junior; Manuel Nicolas; Reuben Nilus; Michael O'Brien; Imma Oliveras Menor; Frida I. Piper; Jennifer Read; Glen Reynolds; Alfredo Saldaña; Beatriz Schwantes Marimon; Kris Verheyen; Mark Westoby; Benjamin Wigley; Ian J. Wright
Global Ecology and Biogeography · Vol. 34, Issue 1 · 2025

Abstract

Aim Arbuscular mycorrhizas (AM) and ectomycorrhizas (ECM) have different impacts on nutrient cycling, carbon storage, community dynamics and enhancement of photosynthesis by rising CO 2 . Recent global analyses have concluded that patterns of AM/ECM dominance in forests worldwide are shaped by climate, with soil nutrients contributing negligible additional explanatory power. However, their reliance on nutrient data from GIS surfaces masks important local influences of parent material, topography and soil age on soil nutrient status. We asked if use of site‐specific nutrient data reveals a more important role for nutrients. Time Period Present day. Location Global dataset comprising 703 sites, encompassing forests, savanna/woodlands, shrublands and deserts on all continents except Antarctica. Taxa Studied Arborescent plants, including angiosperms, gymnosperms and tree ferns. Methods Generalised Additive Models for Location, Scale and Shape (GAMLSS) to determine the effects of climate variables, soil nitrogen and soil phosphorus on the proportional representation of ECM and of non‐mycorrhizal species (NM) in woody vegetation. Results GAMLSS showed a strong negative relationship of ECM representation with mean annual temperature (MAT), and a strong negative relationship with soil total nitrogen. NM representation was highest on dry sites and phosphorus‐poor sites. Reanalysis showed that GIS‐derived soil nutrient data had less explanatory power than site‐specific nutrient data, and resulted in poorer model fits. Conclusions Our results support the long‐held belief that soil nutrients as well as climate influence the relative fitness of different mycorrhizal syndromes worldwide, and demonstrate the value of using site‐specific nutrient data. Soil nutrients should be considered when predicting the impact of climate change on the mycorrhizal composition of vegetation and resulting shifts in ecosystem processes.

Bibliographic Information

JournalGlobal Ecology and Biogeography
PublisherWiley
Publication Date2025-01-01
Publication Year2025
Volume34
Issue1
Document TypeJournal Article
Print ISSN1466-822X
eISSN1466-8238
DOI10.1111/geb.13936
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1998-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14668238
Publisher PageOpen Publisher Page
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