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Reduction spheroids preserve a uranium isotope record of the ancient deep continental biosphere

机译:还原球体保留了古代深部大陆生物圈的铀同位素记录

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摘要

Life on Earth extends to several kilometres below the land surface and seafloor. This deep biosphere is second only to plants in its total biomass, is metabolically active and diverse, and is likely to have played critical roles over geological time in the evolution of microbial diversity, diagenetic processes and biogeochemical cycles. However, these roles are obscured by a paucity of fossil and geochemical evidence. Here we apply the recently developed uranium-isotope proxy for biological uranium reduction to reduction spheroids in continental rocks (red beds). Although these common palaeo-redox features have previously been suggested to reflect deep bacterial activity, unequivocal evidence for biogenicity has been lacking. Our analyses reveal that the uranium present in reduction spheroids is isotopically heavy, which is most parsimoniously explained as a signal of ancient bacterial uranium reduction, revealing a compelling record of Earth’s deep biosphere.
机译:地球上的生命延伸到陆地表面和海底以下几公里。这个深层的生物圈在其总生物量中仅次于植物,具有代谢活性和多样性,并可能在地质时期内在微生物多样性,成岩过程和生物地球化学循环的演变中发挥了关键作用。但是,由于缺乏化石和地球化学证据,这些作用被掩盖了。在这里,我们将最近开发的用于生物铀还原的铀同位素替代品用于还原大陆岩石(红色层)中的球体。尽管以前已提出这些常见的古氧化还原特征反映了深层细菌活性,但仍缺乏明确的生物成因证据。我们的分析表明,还原类球体中存在的铀同位素很重,而最简洁地解释为古代细菌减少铀的信号,从而揭示了地球深层生物圈的引人注目的记录。

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