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Distinctive feature of microbial communities and bacterial functional profiles in Tricholoma matsutake dominant soil

机译:松茸优势土微生物群落特征及细菌功能谱。

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摘要

Tricholoma matsutake, the pine mushroom, is a valuable forest product with high economic value in Asia, and plays an important ecological role as an ectomycorrhizal fungus. Around the host tree, T. matsutake hyphae generate a distinctive soil aggregating environment called a fairy ring, where fruiting bodies form. Because T. matsutake hyphae dominate the soil near the fairy ring, this species has the potential to influence the microbial community. To explore the influence of T. matsutake on the microbial communities, we compared the microbial community and predicted bacterial function between two different soil types—T. matsutake dominant and T. matsutake minor. DNA sequence analyses showed that fungal and bacterial diversity were lower in the T. matsutake dominant soil compared to T. matsu- take minor soil. Some microbial taxa were significantly more common in the T. matsutake dominant soil across geographic locations, many of which were previously identified as mycophillic or mycorrhiza helper bacteria. Between the two soil types, the predicted bacte- rial functional profiles (using PICRUSt) had significantly distinct KEGG modules. Modules for amino acid uptake, carbohydrate metabolism, and the type III secretion system were higher in the T. matsutake dominant soil than in the T. matsutake minor soil. Overall, similar microbial diversity, community structure, and bacterial functional profiles of the T. matsutake dominant soil across geographic locations suggest that T. matsutake may generate a domi- nance effect.
机译:松茸松茸是在亚洲具有很高经济价值的有价值的林产品,并且作为外生菌根真菌具有重要的生态作用。松树T. matsutake菌丝围绕寄主树产生独特的土壤聚集环境,称为仙女环,在那里形成子实体。由于松茸菌丝在仙女环附近的土壤中占主导地位,因此该物种具有影响微生物群落的潜力。为了探讨松茸对微生物群落的影响,我们比较了微生物群落并预测了两种不同土壤类型(T)之间的细菌功能。松茸占主导地位,松茸T.未成年人。 DNA序列分析表明,与松果土相比,松果优势土壤的真菌和细菌多样性要低。某些微生物分类群在跨地理位置的松茸占优势的土壤中更为常见,其中许多先前被鉴定为嗜温菌或菌根辅助细菌。在两种土壤类型之间,预测的细菌功能特征(使用PICRUSt)具有明显不同的KEGG模块。松毛占主导地位的土壤中氨基酸吸收,碳水化合物代谢和III型分泌系统的模块要高于松毛次要土壤。总体而言,在不同地理位置,松茸优势土壤的相似微生物多样性,群落结构和细菌功能特征表明,松茸可能产生优势效应。

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