J Plant Ecol ›› Advance articles     DOI:10.1093/jpe/rtag218

• Research Article •     Next Articles

Responses of rhizosphere fungi to elevational gradients: distinct diversity and specialization of mycorrhizal and plant-pathogenic fungi in subalpine forests

Jie Song1, 2, Liang-Liang Ma2, 3, 5, Ming-Shu Zhu2, 4, Jie Liu2, Jia-Yun Zou6, Wei Zheng2, Zhong-Yu Fan7, Kun Xu7, De-Zhu Li3, Lian-Ming Gao3, 5*, Ya-Huang Luo2, 3, 5*   

  1. 1. Research Institute of Gaoligong Mountains, Baoshan University , Baoshan 678000 , China;
    2. Germplasm Bank of Wild Species & Yunnan Key Laboratory of Crop Wild Relative Omics, Kunming Institute of Botany, Chinese Academy of Sciences , Kunming 650201 , China;
    3. Center for Interdisciplinary Biodiversity Research and College of Forestry, Shandong Agricultural University , Tai'an 271018 , China;
    4. Key Laboratory for Warm Temperate Forest Ecosystem Conservation and Restoration of National Forestry and Grassland Administration, Shandong Agricultural University , Tai'an 271018, Shandong , China;
    5. University of Chinese Academy of Sciences , Beijing 100049 , China;
    6. TUD Dresden University of Technology , Forest Zoology, Tharandt 01737 , Germany;
    7. Lijiang Forest Biodiversity National Observation and Research Station, Kunming Institute of Botany, Chinese Academy of Sciences , Lijiang, 674100 , China
    *Corresponding author: E-mail: gaolm@mail.kib.ac.cn (LMG); luoyahuang@mail.kib.ac.cn(YHL)
  • Received:2026-01-03 Accepted:2026-08-24 Published:2026-09-10
  • Supported by:
    This work was supported by the National Key Research and Development Program of China (2023YFF0805800), the National Natural Science Foundation of China (32471621, 32071541), the 811 program for Shandong Agricultural University, the Yunnan Revitalization Talent Support Program ‘Young Talent’ Project (XDYC-QNRC-20220026), and the Baoshan University Doctoral Research Startup Fund Program 2025 (BSKY2563).

Abstract: Rhizosphere microbes are closely associated with forest community diversity and ecosystem functioning. Yet, how different rhizosphere fungal guilds and their interactions with host trees respond to environmental change remains poorly understood. To address this gap, we collected rhizosphere soil from 429 plant individuals representing 49 species across a 1200-m elevational gradient on Yulong Mountain in the subalpine forests of the Hengduan Mountains. By integrating host phylogeny, root traits, environmental and spatial variables, we quantified elevational patterns and drivers of putative mycorrhizal fungi (MF) and plant-pathogenic fungi (PF) diversity and composition, and compared their network structure and host specificity along the gradient. MF and PF showed distinct elevational responses at the individual, species and plot levels. MF richness peaked at mid-elevations and was mainly associated with soil temperature, and MF community composition was associated with soil C:N ratio. In contrast, PF richness declined with elevation and was mainly associated with spatial variables derived from geographic distances among plots, whereas PF community composition was associated with host root traits, especially root diameter. Network analyses further showed that specialization and host specificity in plant-MF associations displayed unimodal patterns along elevations, whereas both metrics increased with elevation in plant-PF associations. Collectively, these findings show that MF and PF are structured by distinct ecological filters along elevational gradients, resulting in guild-dependent patterns of plant-fungal network specialization in subalpine forests and providing new insights into plant–microbe dynamics under global change.

This study is based on subalpine forest communities of Yulong Mountain and compares elevational differences in diversity, community composition, and host-plant interaction networks between mycorrhizal and plant-pathogenic fungi. The results reveal that these two fungal groups are governed by distinct ecological processes and exhibit divergent diversity patterns as well as plant-fungal interaction-network attributes. This work provides new insights into plant-microbe interactions in mountain forests under global change.

Key words: elevational gradient, mycorrhizal fungi, plant-pathogenic fungi, network specialization, rhizosphere, root trait