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首页> 外文期刊>Frontiers in Microbiology >Microbial Diversity in a Hypersaline Sulfate Lake: A Terrestrial Analog of Ancient Mars
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Microbial Diversity in a Hypersaline Sulfate Lake: A Terrestrial Analog of Ancient Mars

机译:高盐硫酸盐湖中的微生物多样性:古代火星的陆地类似物

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Life can persist under severe osmotic stress and low water activity in hypersaline environments. On Mars, evidence for the past presence of saline bodies of water is prevalent and resulted in the widespread deposition of sulfate and chloride salts. Here we investigate Spotted Lake (British Columbia, Canada), a hypersaline lake with extreme (>3 M) levels of sulfate salts as an exemplar of the conditions thought to be associated with ancient Mars. We provide the first characterization of microbial structure in Spotted Lake sediments through metagenomic sequencing, and report a bacteria-dominated community with abundant Proteobacteria, Firmicutes, and Bacteroidetes, as well as diverse extremophiles. Microbial abundance and functional comparisons reveal similarities to Ace Lake, a meromictic Antarctic lake with anoxic and sulfidic bottom waters. Our analysis suggests that hypersaline-associated species occupy niches characterized foremost by differential abundance of Archaea, uncharacterized Bacteria, and Cyanobacteria. Potential biosignatures in this environment are discussed, specifically the likelihood of a strong sulfur isotopic fractionation record within the sediments due to the presence of sulfate reducing bacteria. With its high sulfate levels and seasonal freeze-thaw cycles, Spotted Lake is an analog for ancient paleolakes on Mars in which sulfate salt deposits may have offered periodically habitable environments, and could have concentrated and preserved organic materials or their biomarkers over geologic time.
机译:在高盐环境下,生命可以在严重的渗透压和低水分活度下持续。在火星上,过去存在着大量盐水的证据十分普遍,并导致了硫酸盐和氯化物盐的广泛沉积。在这里,我们研究斑点湖(加拿大不列颠哥伦比亚省),这是一种盐度极高(> 3 M)的高盐湖,被认为与古代火星有关。我们通过宏基因组测序对斑点湖沉积物中的微生物结构进行了首次表征,并报告了一个细菌占主导的群落,该群落具有丰富的变形杆菌,硬毛菌和拟杆菌,以及各种极端微生物。微生物丰度和功能比较揭示了与Ace湖的相似之处,Ace湖是一个具有缺氧和硫化底水的南极湖泊。我们的分析表明,与高盐相关的物种占据着生态位,其特征是古细菌,未鉴定的细菌和蓝细菌的丰度差异。讨论了这种环境下的潜在生物特征,特别是由于存在减少硫酸盐的细菌而在沉积物中形成强大的硫同位素分馏记录的可能性。由于其高的硫酸盐含量和季节性的冻融循环,Spotted Lake是火星上古代古湖的类似物,其中的硫酸盐沉积物可能提供了周期性的可居住环境,并可能在地质时期内浓缩并保存了有机物质或其生物标记。

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