Suppr超能文献

土壤中与外生菌根真菌菌丝相关的细菌群落组成及磷循环潜力受土壤来源的强烈影响。

The Composition and Phosphorus Cycling Potential of Bacterial Communities Associated With Hyphae of in Soil Are Strongly Affected by Soil Origin.

作者信息

Hao Xiuli, Zhu Yong-Guan, Nybroe Ole, Nicolaisen Mette H

机构信息

Section for Microbial Ecology and Biotechnology, Department of Plant and Environmental Sciences, University of Copenhagen, Copenhagen, Denmark.

Key Lab of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, China.

出版信息

Front Microbiol. 2020 Jan 8;10:2951. doi: 10.3389/fmicb.2019.02951. eCollection 2019.

Abstract

Intimate fungal-bacterial interactions are widespread in nature. However the main drivers for the selection of hyphae-associated bacterial communities and their functional traits in soil systems remain elusive. In the present study, baiting microcosms were used to recover hyphae-associated bacteria from two species with different phosphorus-solubilizing capacities in five types of soils. Based on amplicon sequencing of 16S rRNA genes, the composition of bacterial communities associated with hyphae differed significantly from the soil communities, showing a lower diversity and less variation in taxonomic structure. Furthermore, soil origin had a significant effect on hyphae-associated community composition, whereas the two fungal species used in this study had no significant overall impact on bacterial community structure, despite their different capacities to solubilize phosphorus. However, discriminative taxa and specific OTUs were enriched in hyphae-associated communities of individual species indicating that each hyphosphere represented a unique niche for bacterial colonization. Additionally, an increased potential of phosphorus cycling was found in hyphae-associated communities, especially for the gene involved in phosphonate degradation. Altogether, it was established that the two hyphae represent unique niches in which microbiome assemblage and phosphorus cycling potential are mainly driven by soil origin, with less impact made by fungal identity with a divergent capacity to utilize phosphorus.

摘要

亲密的真菌 - 细菌相互作用在自然界中广泛存在。然而,在土壤系统中,选择与菌丝相关的细菌群落及其功能特性的主要驱动因素仍然难以捉摸。在本研究中,诱饵微宇宙被用于从五种土壤中两种具有不同磷溶解能力的物种中回收与菌丝相关的细菌。基于16S rRNA基因的扩增子测序,与菌丝相关的细菌群落组成与土壤群落有显著差异,显示出较低的多样性和分类结构上较小的变化。此外,土壤来源对与菌丝相关的群落组成有显著影响,而本研究中使用的两种真菌物种尽管具有不同的磷溶解能力,但对细菌群落结构没有显著的总体影响。然而,在个别物种的与菌丝相关的群落中,鉴别性分类群和特定的操作分类单元(OTU)有所富集,表明每个菌丝圈代表了细菌定殖的独特生态位。此外,在与菌丝相关的群落中发现了磷循环潜力的增加,特别是参与膦酸盐降解的基因。总之,确定了这两种菌丝代表了独特的生态位,其中微生物群落组装和磷循环潜力主要由土壤来源驱动,而真菌利用磷的能力差异对其影响较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4285/6960115/f942b4e181c4/fmicb-10-02951-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验