Li Min, Meng Zhaoyun, Li Jinyan, Zhang Xuan, Wang Yonglong, Li Xinyu, Yang Yuze, Li Yue, Yang Xunjue, Chen Xiuli, Fan Yongjun
College of Life Science and Technology, Inner Mongolia Normal University, Huhhot, China.
Key Laboratory of Biodiversity Conservation and Sustainable Utilization for College and University of Inner Mongolia Autonomous Region, Hohhot, China.
PeerJ. 2025 May 19;13:e19364. doi: 10.7717/peerj.19364. eCollection 2025.
The maintenance and driving mechanisms of microbial community structure have become important research focuses in microbial ecology. Therefore, clarifying the assembly of ectomycorrhizal (EM) fungal communities can provide a relevant basis for studying forest diversity, ecological diversity, and ecological evolution. is a typical EM dependent tree species with characteristics such as renewal ability and strong competitive adaptability, and it plays a crucial ecological function in Inner Mongolia. However, the research on EM fungi's diversity and community assembly is very limited. We investigated EM fungal communities associated with from 15 rhizosphere soil samples across five sites in Inner Mongolia. The fungal rDNA ITS2 region was sequenced using Illumina Miseq sequencing. A total of 295 EM fungal OTUs belonging to two phyla, three classes, nine orders, 20 families, and 31 genera were identified, of which , , and were the most dominant taxa. Significant differences existed in the composition of dominant genera of EM fungi across the five sites, and the relative abundances of dominant genera also showed significant differences among the sites. The β NTI and NCM fitting analyses suggest that stochastic processes mainly determine the EM fungal community assembly. Our study indicates that harbors a high EM fungal diversity and highlights the important role of the stochastic process in driving community assembly of mutualistic fungi associated with in north China.
微生物群落结构的维持和驱动机制已成为微生物生态学的重要研究重点。因此,阐明外生菌根(EM)真菌群落的组装可为研究森林多样性、生态多样性和生态演化提供相关依据。 是一种典型的依赖外生菌根的树种,具有更新能力强、竞争适应性强等特点,在内蒙古发挥着关键的生态功能。然而,关于外生菌根真菌的多样性和群落组装的研究非常有限。我们调查了内蒙古五个地点15个根际土壤样本中与 相关的外生菌根真菌群落。使用Illumina Miseq测序对真菌rDNA ITS2区域进行测序。共鉴定出295个属于两个门、三个纲、九个目、二十个科和三十一个属的外生菌根真菌OTU,其中 、 和 是最主要的分类群。五个地点外生菌根真菌优势属的组成存在显著差异,优势属的相对丰度在各地点之间也存在显著差异。β NTI和NCM拟合分析表明,随机过程主要决定外生菌根真菌群落的组装。我们的研究表明, 拥有高度的外生菌根真菌多样性,并突出了随机过程在中国北方驱动与 相关的共生真菌群落组装中的重要作用。