Chen Pi, Li Zhen, Cao Ning, Wu Rui-Xuan, Kuang Zhao-Ren, Yu Fei
College of Forestry, Shanxi Agricultural University, Jinzhong 030801, China.
Microorganisms. 2024 Jun 29;12(7):1329. doi: 10.3390/microorganisms12071329.
Ectomycorrhizal fungi have huge potential value, both nutritionally and economically, but most of them cannot be cultivated artificially. To better understand the influence of abiotic and biotic factors upon the growth of ectomycorrhizal fungi, mycosphere soil and bulk soil of five ectomycorrhizal fungi (, , , , and ) were used as research objects for this study. Illumina MiSeq sequencing technology was used to analyze the community structure of the mycosphere and bulk soil bacteria of the five ectomycorrhizal fungi, and a comprehensive analysis was conducted based on soil physicochemical properties. Our results show that the mycosphere soil bacteria of the five ectomycorrhizal fungi are slightly different. , , and are potential mycorrhizal-helper bacteria of distinct ectomycorrhizal fungi. Soil water content, soil pH, and available potassium are the main factors shaping the soil bacterial community of the studied ectomycorrhizal fungi. Moreover, from the KEGG functional prediction and LEfSe analysis, there are significant functional differences not only between the mycosphere soil and bulk soil. 'Biosynthesis of terpenoidsand steroids', 'alpha-Linolenic acid metabolism', 'Longevity regulating pathway-multiple species', 'D-Arginine and D-ornithine metabolism', 'Nitrotoluene degradation' and other functions were significantly different in mycosphere soil. These findings have pivotal implications for the sustainable utilization of ectomycorrhizal fungi, the expansion of edible fungus cultivation in forest environments, and the enhancement of derived economic benefits.
外生菌根真菌在营养和经济方面都具有巨大的潜在价值,但它们中的大多数无法人工培养。为了更好地了解非生物和生物因素对外生菌根真菌生长的影响,本研究以五种外生菌根真菌(、、、和)的菌根际土壤和块状土壤为研究对象。利用Illumina MiSeq测序技术分析了这五种外生菌根真菌的菌根际和块状土壤细菌的群落结构,并基于土壤理化性质进行了综合分析。我们的结果表明,这五种外生菌根真菌的菌根际土壤细菌略有不同。、和是不同外生菌根真菌的潜在菌根辅助细菌。土壤含水量、土壤pH值和有效钾是塑造所研究外生菌根真菌土壤细菌群落的主要因素。此外,从KEGG功能预测和LEfSe分析来看,不仅菌根际土壤和块状土壤之间存在显著的功能差异。“萜类和类固醇的生物合成”、“α-亚麻酸代谢”、“长寿调节途径-多种物种”、“D-精氨酸和D-鸟氨酸代谢”、“硝基甲苯降解”等功能在菌根际土壤中存在显著差异。这些发现对于外生菌根真菌的可持续利用、森林环境中食用菌栽培的扩展以及衍生经济效益的提高具有关键意义。