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Late Archean rise of aerobic microbial ecosystems

机译:太古代晚期有氧微生物生态系统的兴起

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We report the C-13 content of preserved organic carbon for a 150 million-year section of late Archean shallow and deepwater sediments of the Hamersley Province in Western Australia. We find a C-13 enrichment of approximate to 10 parts per thousand in organic carbon of post-2.7-billion-year-old shallow-water carbonate rocks relative to deepwater sediments. The shallow-water organic-carbon C-13 content has a 29 parts per thousand range in values (-57 to -28 parts per thousand), and it contrasts with the less variable but strongly C-13-depleted (-40 to -45 parts per thousand) organic carbon in deepwater sediments. The C-13 enrichment likely represents microbial habitats not as strongly influenced by assimilation of methane or other C-13-depleted substrates. We propose that continued oxidation of shallow settings favored the expansion of aerobic ecosystems and respiring organisms, and, as a result, isotopic signatures of preserved organic carbon in shallow settings approached that of photosynthetic biomass. Facies analysis of published carbon-isotopic records indicates that the Hamersley shallow-water signal may be representative of a late Archean global signature and that it preceded a similar, but delayed, C-13 enrichment of deepwater deposits. The data suggest that a global-scale expansion of oxygenated habitats accompanied the progression away from anaerobic ecosystems toward respiring microbial communities fueled by oxygenic photosynthesis before the oxygenation of the atmosphere after 2.45 billion years ago.
机译:我们报告了西澳大利亚哈默斯利省太古代晚期浅水和深水沉积物1.5亿年剖面中保存的有机碳的C-13含量。我们发现,相对于深水沉积物,在27亿年前的浅水碳酸盐岩中,有机碳的C-13富集度约为千分之十。浅水有机碳C-13含量的值在29千分之几(-57至-28千分之几)之间,与变化不大但C-13消耗强烈的碳分(-40至-深水沉积物中有机碳的含量为千分之四十五。 C-13富集可能代表不受甲烷或其他C-13贫乏底物同化强烈影响的微生物栖息地。我们提出,浅层环境的持续氧化有利于有氧生态系统和呼吸生物的扩展,因此,浅层环境中保存的有机碳的同位素特征接近光合生物量。已发表的碳同位素记录的相分析表明,Hamersley浅水信号可能代表了太古宙晚期全球特征,并且它早于相似但延迟的C-13富集。数据表明,氧化生境的全球扩张伴随着从厌氧生态系统向由氧气光合作用推动的呼吸微生物群落的发展,在24.5亿年前被大气氧化之前。

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