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首页> 外文期刊>FEMS Microbiology Ecology >Interaction between ferruginous clay sediment and an iron-reducing hyperthermophilic Pyrobaculum sp. in a terrestrial hot spring
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Interaction between ferruginous clay sediment and an iron-reducing hyperthermophilic Pyrobaculum sp. in a terrestrial hot spring

机译:铁菌粘土沉积物与铁还原超嗜热纤维虫SP之间的相互作用。 在一个陆地温泉

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摘要

Green-coloured sediments in low-temperature geothermal surface features are typically indicative of photosynthetic activity. A near-boiling (89-93 degrees C), alkali-chloride spring in the Taupo Volcanic Zone, New Zealand, was observed to have dark green sediments despite being too hot to support any known photosynthetic organisms. Analysis of aqueous and sediment microbial communities via 16S rRNA amplicon sequencing revealed them to be dominated by Aquifex spp., a genus of known hyperthermophilic hydrogen-oxidisers (69%-91% of operational taxonomic units (OTUs)), followed by groups within the Crenarchaeota (3%-20%), including the known iron-reducing genus Pyrobaculum. Cultivation experiments suggest that the green colouration of clay sediments in this spring may be due in part to ferruginous clays and associated compounds serving as substrates for the iron-reducing activity of low-abundance Pyrobaculum spp. These findings demonstrate the dynamic nature of microbe-mineral interactions in geothermal environments, and the potential ability of the rarer biosphere (1%-2% of observed sequences, cell densities of 450-33 000 g(-1) sediment) to influence mineral formation at a macro-scale.
机译:低温地热表面特征的绿色沉积物通常表示光合活性。近沸腾(89-93摄氏度),新西兰陶摩火山区的碱氯化物弹簧,尽管太热,但仍有深绿色的沉积物,不能支持任何已知的光合生物。通过16S rRNA扩增子测序分析水和泥沙微生物群体的分析显示,它们以Aquifex SPP为主。,已知的高热氢氧化合物属(69%-91%的运营分类单位(OTUS)),其次是内部的组CrenarchaeoTa(3%-20%),包括已知的畏缩纤维虫。培养实验表明,该弹簧中粘土沉积物的绿色印象可以部分地归因于铁素粘土和用作低丰度芘SPP的铁还原活性的相关化合物。这些发现表明了地热环境中微生物矿物相互作用的动态性质,以及雷达生物圈的潜在能力(观察到序列的1%-2%,细胞密度为450-33 000g(-1)沉积物)以影响矿物质形成在宏观级别。

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