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Microbial life at -13 ℃ in the brine of an ice-sealed Antarctic lake

机译:冰封南极湖盐水中微生物的温度为-13℃

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摘要

The permanent ice cover of Lake Vida (Antarctica) encapsulates an extreme cryogenic brine ecosystem (-13 ℃; salinity, 200). This aphotic ecosystem is anoxic and consists of a slightly acidic (pH 6.2) sodium chloride-dominated brine. Expeditions in 2005 and 2010 were conducted to investigate the biogeochemistry of Lake Vida's brine system. A phylogenetically diverse and metabolically active Bacteria dominated microbial assemblage was observed in the brine. These bacteria live under very high levels of reduced metals, ammonia, molecular hydrogen (H_2), and dissolved organic carbon, as well as high concentrations of oxidized species of nitrogen (i.e., supersaturated nitrous oxide and ~1 mmol·L~(-1) nitrate) and sulfur (as sulfate). The existence of this system, with active biota, and a suite of reduced as well as oxidized compounds, is unusual given the millennial scale of its isolation from external sources of energy. The geochemistry of the brine suggests that abiotic brine-rock reactions may occur in this system and that the rich sources of dissolved electron acceptors prevent sulfate reduction and methanogenesis from being energetically favorable. The discovery of this ecosystem and the in situ biotic and abiotic processes occurring at low temperature provides a tractable system to study habitability of isolated terrestrial cryoenvironments (e.g., permafrost cryopegs and subglacial ecosystems), and is a potential analog for habitats on other icy worlds where water-rock reactions may cooccur with saline deposits and subsurface oceans.
机译:维达湖(南极洲)的永久性冰盖包裹了极端低温的盐水生态系统(-13℃;盐度为200)。这个无光的生态系统是缺氧的,由弱酸性(pH 6.2)氯化钠为主的盐水组成。 2005年和2010年进行了考察,以调查维达湖盐水系统的生物地球化学。在盐水中观察到系统发育多样且具有代谢活性的细菌为主的微生物组合。这些细菌生活在高水平的还原金属,氨,分子氢(H_2)和溶解的有机碳以及高浓度的氮氧化物种(即过饱和一氧化二氮和〜1mmol·L〜(-1) ),硝酸盐)和硫(硫酸盐)。鉴于该系统与外部能源的隔离已达到千禧年规模,因此存在具有活跃生物群以及一系列还原和氧化化合物的系统是不寻常的。盐水的地球化学表明,该系统中可能发生非生物盐水-岩石反应,并且溶解的电子受体的丰富来源阻止了硫酸盐的还原和甲烷生成在能量上有利。这种生态系统的发现以及在低温下发生的原地生物和非生物过程,为研究孤立的陆地低温环境(例如多年冻土低温冰层和冰下生态系统)的可居住性提供了一个易于处理的系统,并且是其他冰冷世界中栖息地的潜在类似物水-岩反应可能与盐沉积物和地下海洋同时发生。

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  • 作者单位

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Department of Earth and Environmental Sciences, University of Illinois at Chicago, Chicago, IL 60607;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Space Science Division, National Aeronautics and Space Administration Ames Research Center, Moffett Field, CA 94035;

    Institute of Arctic and Alpine Research, University of Colorado, Boulder, CO 80309,Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Department of Imaging and Applied Physics, Curtin University of Technology/ Perth, WA, 6845 Australia;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Institute of Arctic and Alpine Research, University of Colorado, Boulder, CO 80309;

    Department of Zoology, Michigan State University, East Lansing, Ml 48824-1115;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Jet Propulsion Laboratory, Pasadena, CA 91109;

    Department of Land Resources and Environmental Sciences, Montana State University, Bozeman, MT 59717;

    Department of Marine Sciences, University of Georgia, Athens, GA 30602;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Division of Earth and Ecosystem Sciences, Desert Research Institute, Reno, NV 89512;

    Jet Propulsion Laboratory, Pasadena, CA 91109;

    Department of Earth and Environmental Sciences, University of Illinois at Chicago, Chicago, IL 60607;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    astrobiology; geomicrobiology; microbial ecology; extreme environment;

    机译:天体生物学地球微生物学微生物生态学极端环境;
  • 入库时间 2022-08-18 00:40:35

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