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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Energy and carbon metabolisms in a deep terrestrial subsurface fluid microbial community
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Energy and carbon metabolisms in a deep terrestrial subsurface fluid microbial community

机译:深层地下液体微生物群落中的能量和碳代谢

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摘要

The terrestrial deep subsurface is a huge repository of microbial biomass, but in relation to its size and physical heterogeneity, few sites have been investigated in detail. Here, we applied a culture-independent metagenomic approach to characterize the microbial community composition in deep (1500 meters below surface) terrestrial fluids. Samples were collected from a former gold mine in Lead, South Dakota, USA, now Sanford Underground Research Facility (SURF). We reconstructed 74 genomes from metagenomes (MAGs), enabling the identification of common metabolic pathways. Sulfate and nitrate/nitrite reduction were the most common putative energy metabolisms. Complete pathways for autotrophic carbon fixation were found in more than half of the MAGs, with the reductive acetyl-CoA pathway by far the most common. Nearly 40% (29 of 74) of the recovered MAGs belong to bacterial phyla without any cultivated members-microbial dark matter. Three of our MAGs constitute two novel phyla previously only identified in 16 S rRNA gene surveys. The uniqueness of this data set -its physical depth in the terrestrial subsurface, the relative abundance and completeness of microbial dark matter genomes and the overall diversity of this physically deep, dark, community-make it an invaluable addition to our knowledge of deep subsurface microbial ecology.
机译:陆地深层地下是一种巨大的微生物生物量存储库,但与其大小和物理异质性有关,已经详细研究了很少的位点。在这里,我们应用了培养无关的偏心组织方法来表征深(表面1500米以下)陆地流体的微生物群落组合物。来自美国南达科他州的前金矿,美国的前金矿收集样品,现在桑福德地下研究设施(冲浪)。我们重建了来自Metagenomes(Mags)的74个基因组,从而能够识别常见的代谢途径。硫酸盐和硝酸盐/亚硝酸盐还原是最常见的推定能量代谢。在一半以上的MAG中发现了用于自养碳固定的完整途径,并且到目前为止还原的乙酰辅酶COA途径。近40%(共74个)的回收的杂志属于细菌植物,没有任何栽培的成员 - 微生物暗物质。我们的三种MAGS构成了以前仅在16秒的RRNA基因调查中鉴定的两种新的PHYLA。该数据的独特性 - 在地面地下的物理深度,微生物暗物质基因组的相对丰富和完整性以及这种物理深,黑暗,社区的整体多样性 - 使其成为我们对深层地下微生物的知识的宝贵补充生态。

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