Zhang Chen, Shi Xiaofei, Zhang Jiexiong, Zhang Yesheng, Wang Wen
School of Ecology and Environment, Northwestern Polytechnical University, Xi'an, China.
The Germplasm Bank of Wild Species, Yunnan Key Laboratory for Fungal Diversity and Green Development, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.
Front Microbiol. 2023 Feb 22;14:979835. doi: 10.3389/fmicb.2023.979835. eCollection 2023.
Although (morel) is a well-known, edible, and medicinal fungus widely cultivated in China, the dynamics and roles of its soil microbiome during cultivation are unclear. Using rhizosphere soil samples collected throughout the cultivation life cycle, we conducted a high-throughput metagenomic sequencing analysis, with an emphasis on variations in soil microbial composition, characteristic biomarkers, and ecological functions. We found that microbial relative abundance, alpha diversity, and structure varied significantly among fungal growth stages. A total of 47 stage-associated biomarkers were identified through a linear discriminant analysis of effect size. In addition, horizontal comparison of soil microbiomes exhibiting successful and failed primordium formation further confirmed primordium-associated microbes with possible key roles in primordium formation. A microbial function analysis revealed that nutrient metabolism-related pathways were enriched during mycelium and fruiting body stages, whereas the signal transduction pathway was enriched during the primordium stage. This result indicates that diverse microbes are required at different growth stages of . Our research has revealed the dynamic scenario of the soil microbiome throughout the cultivation life cycle of . The high-resolution microbial profiles uncovered in the present study provide novel insights that should contribute to the improvement of morel cultivation using microbial inoculants.
虽然羊肚菌是一种在中国广泛种植的知名可食用且具药用价值的真菌,但其栽培过程中土壤微生物群落的动态变化及作用尚不清楚。我们采集了整个栽培生命周期的根际土壤样本,进行了高通量宏基因组测序分析,重点关注土壤微生物组成、特征生物标志物和生态功能的变化。我们发现,在真菌生长阶段,微生物相对丰度、α多样性和结构存在显著差异。通过效应大小的线性判别分析,共鉴定出47个与阶段相关的生物标志物。此外,对原基形成成功和失败的土壤微生物群落进行水平比较,进一步证实了与原基相关的微生物在原基形成中可能具有关键作用。微生物功能分析表明,营养代谢相关途径在菌丝体和子实体阶段富集,而信号转导途径在原基阶段富集。这一结果表明,羊肚菌不同生长阶段需要不同的微生物。我们的研究揭示了羊肚菌整个栽培生命周期中土壤微生物群落的动态情况。本研究中揭示的高分辨率微生物图谱提供了新的见解,应有助于利用微生物接种剂改进羊肚菌栽培。