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Ecology of Subglacial Lake Vostok (Antarctica) Based on Metagenomic/Metatranscriptomic Analyses of Accretion Ice

机译:冰川下沃斯托克湖(南极洲)的生态学基于积冰的元基因组/超转录组学分析

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摘要

Lake Vostok is the largest of the nearly 400 subglacial Antarctic lakes and has been continuously buried by glacial ice for 15 million years. Extreme cold, heat (from possible hydrothermal activity), pressure (from the overriding glacier) and dissolved oxygen (delivered by melting meteoric ice), in addition to limited nutrients and complete darkness, combine to produce one of the most extreme environments on Earth. Metagenomic/metatranscriptomic analyses of ice that accreted over a shallow embayment and over the southern main lake basin indicate the presence of thousands of species of organisms (94% Bacteria, 6% Eukarya, and two Archaea). The predominant bacterial sequences were closest to those from species of Firmicutes, Proteobacteria and Actinobacteria, while the predominant eukaryotic sequences were most similar to those from species of ascomycetous and basidiomycetous Fungi. Based on the sequence data, the lake appears to contain a mixture of autotrophs and heterotrophs capable of performing nitrogen fixation, nitrogen cycling, carbon fixation and nutrient recycling. Sequences closest to those of psychrophiles and thermophiles indicate a cold lake with possible hydrothermal activity. Sequences most similar to those from marine and aquatic species suggest the presence of marine and freshwater regions.
机译:沃斯托克湖是近400个南极冰河湖泊中最大的湖泊,并被冰川冰不断掩埋了1500万年。除了有限的养分和完全黑暗之外,极冷,极热(来自可能的热液活动),压力(来自压倒的冰川)和溶解氧(通过融化的陨冰提供)共同构成了地球上最极端的环境之一。在浅水区和南部主要湖盆上积聚的冰的元基因组/超基因组学分析表明,存在成千上万种生物(94%细菌,6%Eukarya和两种古生菌)。主要的细菌序列最接近于Ficertices,Proteobacteria和Actinobacteria物种,而主要的真核生物序列与非共生和担子菌属真菌的序列最相似。根据序列数据,该湖泊似乎包含能够进行固氮,固氮循环,固碳和养分循环的自养生物和异养生物的混合物。最接近嗜冷嗜热菌和嗜热菌的序列表明一个可能具有热液活动的冷湖。与来自海洋和水生物种的序列最相似的序列表明存在海洋和淡水区域。

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