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A new window into Early Archean life: Microbial mats in Earth's oldest siliciclastic tidal deposits (3.2 Ga Moodies Group, South Africa)

机译:进入太古宙早期生活的新窗口:地球上最古老的硅质潮汐沉积物中的微生物垫(南非,3.2 Ga Moodies Group)

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摘要

Newly discovered sedimentary structures produced by ancient microbial mats in Early Archean sandstones of the 3.2 Ga Moodies Group, South Africa, differ fundamentally in appearance and genesis from Early Archean stromatolites and bacterial cell fossils preserved in chert. Wrinkle structures, desiccation cracks, and roll-up structures record the previous existence of microbial mats that effectively stabilized sediment on the earliest known siliciclastic tidal flats. In thin-section, the sedimentary structures reveal carpet-like, laminated fabrics characteristic of microbial mats. Negative 13C isotope ratios of –20.1 to –21.5 ± 0.2 are consistent with a biological origin for the carbon preserved in laminae. The biogenicity of the sedimentary structures in the Moodies Group is substantiated by comparative studies on identical mat-related features from similar tidal habitats throughout Earth history, including the present day. This study suggests that siliciclastic tidal-flat settings have been the habitat of thriving microbial ecosystems for at least 3.2 billion years. Independently of controversial silicified microfossils and stromatolites, the newly detected microbially induced sedimentary structures in sandstone support the presence of bacterial life in the Early Archean.
机译:南非3.2 Ga Moodies 组早期太古宙砂岩中古代 微生物垫产生的新发现的沉积结构,在外观和 成因上有根本不同早古宙斯叠层石和保存在石中的细菌细胞 化石。皱纹结构,干燥 裂纹和卷起结构记录了微生物垫以前存在的 ,该微生物垫有效地稳定了 已知的最早的硅质碎屑滩涂上的沉积物。 。在薄截面中, 沉积结构显示出地毯状的层压织物 微生物垫的特性。负的 13 C同位素比 为–20.1至–21.5±0.2,与 的生物起源是一致的。 Moodies组 中沉积结构的 生物原性通过对整个地球历史上类似潮汐生境中与垫相关的相同特征的比较研究得到证实, 包括当前日期。这项研究表明,至少在32亿年前,硅质碎屑潮汐环境一直是繁荣的微生物生态系统的栖息地。 砂岩中新发现的 砂岩独立于有争议的硅化微化石和叠层石,支持了 砂岩中细菌生命的存在。 Archean。

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    《Geology》 |2006年第4期|253-256|共4页
  • 作者单位

    Department of Ocean, Earth and Atmospheric Sciences, Old Dominion University, 4600 Elkhorn Avenue, Norfolk, Virginia 23529, USA;

    Department of Geosciences, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA;

    Carnegie Institution, Geophysical Laboratory, 5251 Broad Branch Road NW, Washington, DC 20015, USA;

    Department of Physical Sciences, University of Pennsylvania, Kutztown, Pennsylvania 19530, USA;

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