Arid
DOI10.1111/gbi.12296
Unusual microbial mat-related structural diversity 2.1 billion years ago and implications for the Francevillian biota
Aubineau, Jeremie1; El Albani, Abderrazak1; Fru, Ernest Chi2; Gingras, Murray3; Batonneau, Yann1; Buatois, Luis A.4; Geffroy, Claude1; Labanowski, Jerome1; Laforest, Claude1; Lemee, Laurent1; Mangano, Maria G.4; Meunier, Alain1; Pierson-Wickmann, Anne-Catherine5; Recourt, Philippe6; Riboulleau, Armelle6; Trentesaux, Alain6; Konhauser, Kurt O.3
通讯作者El Albani, Abderrazak
来源期刊GEOBIOLOGY
ISSN1472-4677
EISSN1472-4669
出版年2018
卷号16期号:5页码:476-497
英文摘要

The 2.1-billion-year-old (Ga) Francevillian series in Gabon hosts some of the oldest reported macroscopic fossils of various sizes and shapes, stimulating new debates on the origin, evolution and organization of early complex life. Here, we document ten representative types of exceptionally well-preserved mat-related structures, comprising elephant-skin textures, putative macro-tufted microbial mats, domal buildups, flat pyritized structures, discoidal microbial colonies, horizontal mat growth patterns, wrinkle structures, kinneyia structures, linear patterns and nodule-like structures. A combination of petrographic analyses, scanning electron microscopy, Raman spectroscopy and organic elemental analyses of carbon-rich laminae and microtexture, indicate a biological origin for these structures. The observed microtextures encompass oriented grains, floating silt-sized quartz grains, concentrated heavy minerals, randomly oriented clays, wavy-crinkly laminae and pyritized structures. Based on comparisons with modern analogues, as well as an average C-13 organic matter (C-org) composition of -32.94 +/- 1.17 parts per thousand (1 standard deviation, SD) with an outlier of -41.26 parts per thousand, we argue that the mat-related structures contain relicts of multiple carbon pathways including heterotrophic recycling of photosynthetically derived C-org. Moreover, the relatively close association of the macroscopic fossil assemblages to the microbial mats may imply that microbial communities acted as potential benthic O-2 oases linked to oxyphototrophic cyanobacterial mats and grazing grounds. In addition, the mat’s presence likely improved the preservation of the oldest large colonial organisms, as they are known to strongly biostabilize sediments. Our findings highlight the oldest community assemblage of microscopic and macroscopic biota in the aftermath of the Great Oxidation Event, widening our understanding of biological organization during Earth’s middle age.


英文关键词bacterial mats Gabon geochemistry geomicrobiology palaeoenvironment palaeoproterozoic
类型Article
语种英语
国家France ; Wales ; Canada
收录类别SCI-E
WOS记录号WOS:000441436700002
WOS关键词INDUCED SEDIMENTARY STRUCTURES ; NUCLEAR-FISSION REACTORS ; WRINKLE STRUCTURES ; GREAT OXIDATION ; SILICICLASTIC SEDIMENTS ; ISOTOPE DISCRIMINATION ; CARBON ISOTOPES ; ORGANIC-MATTER ; TRACE-FOSSIL ; OXYGEN
WOS类目Biology ; Environmental Sciences ; Geosciences, Multidisciplinary
WOS研究方向Life Sciences & Biomedicine - Other Topics ; Environmental Sciences & Ecology ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/209539
作者单位1.Univ Poitiers, UMR CNRS IC2MP 7285, F-86073 Poitiers, France;
2.Cardiff Univ, Sch Earth & Ocean Sci, Cardiff, S Glam, Wales;
3.Univ Alberta, Dept Earth & Atmospher Sci, Edmonton, AB, Canada;
4.Univ Saskatchewan, Dept Geol Sci, Saskatoon, SK, Canada;
5.Univ Rennes 1, Dept Geosci, UMR 6118, Rennes, France;
6.Univ Lille, UMR LOG CNRS 8187, ULCO, Villeneuve Dascq, France
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GB/T 7714
Aubineau, Jeremie,El Albani, Abderrazak,Fru, Ernest Chi,et al. Unusual microbial mat-related structural diversity 2.1 billion years ago and implications for the Francevillian biota[J],2018,16(5):476-497.
APA Aubineau, Jeremie.,El Albani, Abderrazak.,Fru, Ernest Chi.,Gingras, Murray.,Batonneau, Yann.,...&Konhauser, Kurt O..(2018).Unusual microbial mat-related structural diversity 2.1 billion years ago and implications for the Francevillian biota.GEOBIOLOGY,16(5),476-497.
MLA Aubineau, Jeremie,et al."Unusual microbial mat-related structural diversity 2.1 billion years ago and implications for the Francevillian biota".GEOBIOLOGY 16.5(2018):476-497.
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