首页> 外文期刊>Frontiers in Microbiology >The Dark Side of the Mushroom Spring Microbial Mat: Life in the Shadow of Chlorophototrophs. I. Microbial Diversity Based on 16S rRNA Gene Amplicons and Metagenomic Sequencing
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The Dark Side of the Mushroom Spring Microbial Mat: Life in the Shadow of Chlorophototrophs. I. Microbial Diversity Based on 16S rRNA Gene Amplicons and Metagenomic Sequencing

机译:蘑菇弹簧微生物垫的阴暗面:生活在绿化菌的阴影下。 I.基于16S rRNA基因扩增子和元基因组测序的微生物多样性

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Microbial-mat communities in the effluent channels of Octopus and Mushroom Springs within the Lower Geyser Basin at Yellowstone National Park have been studied for nearly 50 years. The emphasis has mostly focused on the chlorophototrophic bacterial organisms of the phyla Cyanobacteria and Chloroflexi . In contrast, the diversity and metabolic functions of the heterotrophic community in the microoxic/anoxic region of the mat are not well understood. In this study we analyzed the orange-colored undermat of the microbial community of Mushroom Spring using metagenomic and rRNA-amplicon (iTag) analyses. Our analyses disclosed a highly diverse community exhibiting a high degree of unevenness, strongly dominated by a single taxon, the filamentous anoxygenic phototroph, Roseiflexus spp. The second most abundant organisms belonged to the Thermotogae , which have been hypothesized to be a major source of H_(2)from fermentation that could enable photomixotrophic metabolism by Chloroflexus and Roseiflexus spp. Other abundant organisms include two members of the Armatimonadetes (OP10); Thermocrinis sp.; and phototrophic and heterotrophic members of the Chloroflexi . Further, an Atribacteria (OP9/JS1) member; a sulfate-reducing Thermodesulfovibrio sp.; a Planctomycetes member; a member of the EM3 group tentatively affiliated with the Thermotogae , as well as a putative member of the Arminicenantes (OP8) represented ≥1% of the reads. Archaea were not abundant in the iTag analysis, and no metagenomic bin representing an archaeon was identified. A high microdiversity of 16S rRNA gene sequences was identified for the dominant taxon, Roseiflexus spp. Previous studies demonstrated that highly similar Synechococcus variants in the upper layer of the mats represent ecological species populations with specific ecological adaptations. This study suggests that similar putative ecotypes specifically adapted to different niches occur within the undermat community, particularly for Roseiflexus spp.
机译:对黄石国家公园下间歇泉盆地八达通和蘑菇泉废水通道中的微生物-菌群落进行了近50年的研究。重点主要集中在蓝藻和弯形细菌的绿养光细菌。相反,在垫子的微氧/缺氧区域中的异养群落的多样性和代谢功能尚未得到很好的理解。在这项研究中,我们使用宏基因组学和rRNA扩增子(iTag)分析来分析蘑菇泉微生物群落的橙色底垫。我们的分析揭示了高度多样化的群落,表现出高度的不均匀性,主要由单一分类单元(丝状产氧光养菌Roseiflexus spp)主导。第二个最丰富的生物属于嗜热菌,据推测是发酵产生的H_(2)的主要来源,它可以使绿屈挠和Roseiflexus spp产生光合营养代谢。其他丰富的生物包括Armatimonadetes(OP10)的两个成员; Thermocrinis sp .;和光营养和异营养成员的叶绿素。进一步,是土壤杆菌属(OP9 / JS1)成员。还原硫酸盐的Thermodesulfovibrio sp .;葡萄球菌成员;暂定与嗜热菌属相关的EM3组成员,以及假定的Arminicenantes(OP8)成员占读取的≥1%。在iTag分析中,古细菌并不丰富,也没有发现代表古细菌的宏基因组区域。确定了优势分类群Roseiflexus spp的16S rRNA基因序列的高度多样性。先前的研究表明,垫子上层中高度相似的Synechococcus变异体代表具有特定生态适应性的生态物种种群。这项研究表明,特别适合于不同生态位的类似推定生态型发生在垫垫群落内,特别是对于玫瑰蔷薇科。

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