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首页> 外文期刊>FEMS Microbiology Ecology >Mineral composition and charcoal determine the bacterial community structure in artificial soils
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Mineral composition and charcoal determine the bacterial community structure in artificial soils

机译:矿物成分和木炭决定了人工土壤中的细菌群落结构

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摘要

To study the influence of the clay minerals montmorillonite (M) and illite (I), the metal oxides ferrihydrite (F) and aluminum hydroxide (A), and charcoal (C) on soil bacterial communities, seven artificial soils with identical texture provided by quartz (Q) were mixed with sterilized manure as organic carbon source before adding a microbial inoculant derived from a Cambisol. Bacterial communities established in artificial soils after 90 days of incubation were compared by DGGE analysis of bacterial and taxon-specific 16S rRNA gene amplicons. The bacterial community structure of charcoal-containing soils highly differed from the other soils at all taxonomic levels studied. Effects of montmorillonite and illite were observed for Bacteria and Betaproteobacteria, but not for Actinobacteria or Alphaproteobacteria. A weak influence of metal oxides on Betaproteobacteria was found. Barcoded pyrosequencing of 16S rRNA gene amplicons done for QM, QI, QIF, and QMC revealed a high bacterial diversity in the artificial soils. The composition of the artificial soils was different from the inoculant, and the structure of the bacterial communities established in QMC soil was most different from the other soils, suggesting that charcoal provided distinct microenvironments and biogeochemical interfaces formed. Several populations with discriminative relative abundance between artificial soils were identified.
机译:为了研究粘土矿物蒙脱土(M)和伊利石(I),金属氧化物铁水合物(F)和氢氧化铝(A)和木炭(C)对土壤细菌群落的影响,研究人员提供了7种质地相同的人工土壤。在添加源自坎比索尔的微生物接种剂之前,将石英(Q)与作为有机碳源的无菌肥料混合。孵育90天后,通过细菌和分类群特异性16S rRNA基因扩增子的DGGE分析,比较了人工土壤中建立的细菌群落。在所研究的所有分类学水平上,含木炭土壤的细菌群落结构与其他土壤均存在很大差异。观察到蒙脱石和伊利石对细菌和β-变形杆菌的作用,但对放线菌或α-变形杆菌没有作用。发现金属氧化物对贝塔蛋白细菌的影响较弱。对QM,QI,QIF和QMC进行的16S rRNA基因扩增子的条形码焦磷酸测序揭示了人工土壤中细菌的高度多样性。人工土壤的组成与孕育剂不同,QMC土壤中建立的细菌群落结构与其他土壤最不同,这表明木炭提供了独特的微环境和形成的生物地球化学界面。确定了几个在人工土壤之间具有相对相对丰度的种群。

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