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早期成岩作用期间高盐度微生物岩中金属分布模式:对化石记录的启示

Patterns of metal distribution in hypersaline microbialites during early diagenesis: Implications for the fossil record.

作者信息

Sforna M C, Daye M, Philippot P, Somogyi A, van Zuilen M A, Medjoubi K, Gérard E, Jamme F, Dupraz C, Braissant O, Glunk C, Visscher P T

机构信息

Geobiosphère Actuelle & Primitive, Institut de Physique du Globe de Paris, Sorbonne Paris Cité, Université Paris Diderot, CNRS, Paris, France.

Dipartimento di Scienze Chimiche e Geologiche, Università di Modena e Reggio Emilia, Modena, Italy.

出版信息

Geobiology. 2017 Mar;15(2):259-279. doi: 10.1111/gbi.12218. Epub 2016 Dec 9.

Abstract

The use of metals as biosignatures in the fossil stromatolite record requires understanding of the processes controlling the initial metal(loid) incorporation and diagenetic preservation in living microbialites. Here, we report the distribution of metals and the organic fraction within the lithifying microbialite of the hypersaline Big Pond Lake (Bahamas). Using synchrotron-based X-ray microfluorescence, confocal, and biphoton microscopies at different scales (cm-μm) in combination with traditional geochemical analyses, we show that the initial cation sorption at the surface of an active microbialite is governed by passive binding to the organic matrix, resulting in a homogeneous metal distribution. During early diagenesis, the metabolic activity in deeper microbialite layers slows down and the distribution of the metals becomes progressively heterogeneous, resulting from remobilization and concentration as metal(loid)-enriched sulfides, which are aligned with the lamination of the microbialite. In addition, we were able to identify globules containing significant Mn, Cu, Zn, and As enrichments potentially produced through microbial activity. The similarity of the metal(loid) distributions observed in the Big Pond microbialite to those observed in the Archean stromatolites of Tumbiana provides the foundation for a conceptual model of the evolution of the metal distribution through initial growth, early diagenesis, and fossilization of a microbialite, with a potential application to the fossil record.

摘要

在化石叠层石记录中使用金属作为生物标志需要了解控制活微生物岩中初始金属(类金属)掺入和成岩保存的过程。在此,我们报告了高盐度大池塘湖(巴哈马群岛)正在石化的微生物岩中金属和有机组分的分布情况。我们结合传统地球化学分析,使用基于同步加速器的不同尺度(厘米至微米)的X射线微荧光、共聚焦和双光子显微镜技术,结果表明,活性微生物岩表面的初始阳离子吸附受与有机基质的被动结合控制,从而导致金属分布均匀。在早期成岩过程中,较深微生物岩层中的代谢活动减缓,金属分布逐渐变得不均匀,这是由于作为富含金属(类金属)的硫化物发生了迁移和富集,这些硫化物与微生物岩的纹层排列一致。此外,我们能够识别出含有大量富集的锰、铜、锌和砷的小球体,这些小球体可能是通过微生物活动产生的。在大池塘微生物岩中观察到的金属(类金属)分布与在图姆比亚纳太古宙叠层石中观察到的分布相似,这为微生物岩从初始生长、早期成岩到石化过程中金属分布演化的概念模型奠定了基础,并有可能应用于化石记录。

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