Niche constraints drive differences between mycorrhizal fungal guilds in future range shifts
作者:Joseph Edwards, Johan van den Hoogen, Christine Hawkes, Mark Anthony, Camille Delavaux, Justin D. Stewart, Kathleen K Treseder, Xiao Feng, Monica Papeş, Robert Muscarella, Petr Kohout, Petr Baldrian, E. Toby Kiers, T. Bruce Lauber, P. Brandon Matheny, Thomas W. Crowther, Michael van Nuland, Clara Qin, Colin Averill, Stephanie Kivlin · 发表于:bioRxiv (Cold Spring Harbor Laboratory) · 年份:2026 · DOI:10.64898/2026.05.18.725971 · 研究领域:Mycorrhizal Fungi and Plant Interactions、Forest Ecology and Biodiversity Studies、Soil Carbon and Nitrogen Dynamics
Abstract Mycorrhizal fungi are a diverse and ubiquitous group of critical plant symbionts whose distribution strongly influences ecosystem function across the globe. Yet, until now, we do not have quantitative data on the range sizes of different mycorrhizal fungal taxa, limiting our capacity to forecast future shifts in community composition and function. Here, we use 121,079 DNA sequence-derived observations to map the distribution of 621 common mycorrhizal fungal taxa and forecast future changes to their range sizes. We demonstrate that climate and soil factors, particularly mean annual temperature and soil organic carbon, exert major control over mycorrhizal fungal distributions, and the ecological niches of mycorrhizal fungi consistently differ between arbuscular and ectomycorrhizal functional guilds. Arbuscular mycorrhizal fungal taxa generally occupy a wider niche breadth than ectomycorrhizal fungi, occurring across larger ranges of climate, soil, plant cover, topography, and disturbance conditions. Our models also predict widespread decreases in the range size of mycorrhizal fungal taxa under projected future global climates, with average ranges decreasing by 12.6% or ∼7.5 million km 2 . This decrease in projected range size will be most pronounced for ectomycorrhizal fungi, strongly linked to constraints from their smaller overall niches. By generating a global atlas of common mycorrhizal fungi and their associated environmental niche, we establish a critical baselin...