Mumin Reyila, Wang Dan-Dan, Zhao Wen, Huang Kai-Chuan, Li Jun-Ning, Sun Yi-Fei, Cui Bao-Kai
State Key Laboratory of Efficient Production of Forest Resources, School of Ecology and Nature Conservation, Beijing Forestry University, Beijing 100083, China.
Microorganisms. 2024 May 13;12(5):977. doi: 10.3390/microorganisms12050977.
Revealing the biogeography and community assembly mechanisms of soil microorganisms is crucial in comprehending the diversity and maintenance of var. forests. Here, we used high-throughput sequencing techniques and null model analysis to explore the distribution patterns and assembly processes of abundant, rare, and total fungal communities in var. forests based on a large-scale soil survey across northern China. Compared to the abundant and total taxa, the diversity and composition of rare taxa were found to be more strongly influenced by regional changes and environmental factors. At the level of class, abundant and total taxa were dominated by Agaricomycetes and Leotiomycetes, while Agaricomycetes and Sordariomycetes were dominant in the rare taxa. In the functional guilds, symbiotrophic fungi were advantaged in the abundant and total taxa, and saprotrophic fungi were advantaged in the rare taxa. The null model revealed that the abundant, rare, and total taxa were mainly governed by stochastic processes. However, rare taxa were more influenced by deterministic processes. Precipitation and temperature were the key drivers in regulating the balance between stochastic and deterministic processes. This study provides new insights into both the biogeographical patterns and assembly processes of soil fungi in var. forests.
揭示土壤微生物的生物地理学和群落组装机制对于理解不同类型森林的多样性和维持至关重要。在此,我们基于中国北方的大规模土壤调查,运用高通量测序技术和零模型分析,探究不同类型森林中丰富、稀有和总真菌群落的分布模式及组装过程。与丰富和总分类群相比,发现稀有分类群的多样性和组成受区域变化和环境因素的影响更强。在纲的水平上,丰富和总分类群以伞菌纲和锤舌菌纲为主,而稀有分类群中伞菌纲和粪壳菌纲占主导。在功能类群中,共生营养型真菌在丰富和总分类群中占优势,腐生营养型真菌在稀有分类群中占优势。零模型表明,丰富、稀有和总分类群主要受随机过程支配。然而,稀有分类群受确定性过程的影响更大。降水和温度是调节随机和确定性过程之间平衡的关键驱动因素。本研究为不同类型森林土壤真菌的生物地理模式和组装过程提供了新的见解。