首页> 外文期刊>Microbes and Environments >Geochemical and Metagenomic Characterization of Jinata Onsen, a Proterozoic-Analog Hot Spring, Reveals Novel Microbial Diversity including Iron-Tolerant Phototrophs and Thermophilic Lithotrophs
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Geochemical and Metagenomic Characterization of Jinata Onsen, a Proterozoic-Analog Hot Spring, Reveals Novel Microbial Diversity including Iron-Tolerant Phototrophs and Thermophilic Lithotrophs

机译:锦田炎,一种正古代模拟温泉的地球化学和偏心组织表征,揭示了一种新的微生物多样性,包括耐氧化铁光饮料和嗜热型嗜热型肺纤维

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摘要

Hydrothermal systems, including terrestrial hot springs, contain diverse geochemical conditions that vary over short spatial scales due to progressive interactions between reducing hydrothermal fluids, the oxygenated atmosphere, and, in some cases, seawater. At Jinata Onsen on Shikinejima Island, Japan, an intertidal, anoxic, iron-rich hot spring mixes with the oxygenated atmosphere and seawater over short spatial scales, creating diverse chemical potentials and redox pairs over a distance of similar to 10 m. We characterized geochemical conditions along the outflow of Jinata Onsen as well as the microbial communities present in biofilms, mats, and mineral crusts along its traverse using 16S rRNA gene amplicon and genome-resolved shotgun metagenomic sequencing. Microbial communities significantly changed downstream as temperatures and dissolved iron concentrations decreased and dissolved oxygen increased. Biomass was more limited near the spring source than downstream, and primary productivity appeared to be fueled by the oxidation of ferrous iron and molecular hydrogen by members of Zetaproteobacteria and Aquificae. The microbial community downstream was dominated by oxygenic Cyanobacteria. Cyanobacteria are abundant and active even at ferrous iron concentrations of similar to 150 mu M, which challenges the idea that iron toxicity limited cyanobacterial expansion in Precambrian oceans. Several novel lineages of Bacteria are also present at Jinata Onsen, including previously uncharacterized members of the phyla Chloroflexi and Calditrichaeota, positioning Jinata Onsen as a valuable site for the future characterization of these clades.
机译:包括陆地温泉在内的水热系统含有不同的地球化学条件,由于减少水热流体,含氧气氛和在某些情况下,海水之​​间的渐进相互作用,因此由于渐进式相互作用而变化。在日本岛岛岛的Jinata Onsen,日本,透氧,缺氧,富含铁的热弹簧混合,含氧气氛和海水在短的空间尺度上,距离相似的化学潜力和氧化还原对等于10米。我们沿着金塔温泉流出的地球化学条件,以及使用16S rRNA基因扩增子和基因组分辨的霰弹枪代理序列测序的生物膜,垫和矿物质中存在的微生物群落中存在的微生物群落。微生物社区随着温度下游和溶解的铁浓度而显着变化,溶解氧气增加。在弹簧源附近的生物质比下游更受限,并且初级生产率似乎通过Zetaproteobacteria和Aquificae的氧化铁和分子氢氧化来燃料。下游的微生物群落由含氧蓝细菌支配。即使在类似于150 mu m的铁铁浓度下,蓝藻也具有丰富和活性,这挑战了毒性毒性有限的尖锐洲海洋的毒细菌扩张的想法。 Jinata Onsen还存在几种细菌谱系,包括以前的Phyla氯咯和Calditrichaeota的特征成员,将Jinats Onsen定位为这些曲线未来表征的有价值的部位。

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