Literature DB >> 23612282

Biological carbon precursor to diagenetic siderite with spherical structures in iron formations.

Inga Köhler1, Kurt O Konhauser, Dominic Papineau, Andrey Bekker, Andreas Kappler.   

Abstract

During deposition of Precambrian iron formation, the combined sedimentation of ferrihydrite and phytoplankton biomass should have facilitated Fe(III) reduction during diagenesis. However, the only evidence for this reaction in iron formations is the iron and carbon isotope values preserved in the authigenic ferrous iron-containing minerals. Here we show experimentally that spheroidal siderite, which is preserved in many iron formation and could have been precursor to rhombohedral or massive siderite, forms by reacting ferrihydrite with glucose (a proxy for microbial biomass) at pressure and temperature conditions typical of diagenesis (170 °C and 1.2 kbar). Depending on the abundance of siderite, we found that it is also possible to draw conclusions about the Fe(III):C ratio of the initial ferrihydrite-biomass sediment. Our results suggest that spherical to rhombohedral siderite structures in deep-water, Fe-oxide iron formation can be used as a biosignature for photoferrotrophy, whereas massive siderite reflects high cyanobacterial biomass loading in highly productive shallow-waters.

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Year:  2013        PMID: 23612282     DOI: 10.1038/ncomms2770

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  11 in total

1.  Suboxic diagenesis in banded iron formations.

Authors:  J C Walker
Journal:  Nature       Date:  1984-05-24       Impact factor: 49.962

2.  Extending the upper temperature limit for life.

Authors:  Kazem Kashefi; Derek R Lovley
Journal:  Science       Date:  2003-08-15       Impact factor: 47.728

3.  Geochemistry. Biogeochemical cycling of iron isotopes.

Authors:  Clark M Johnson; Brian L Beard
Journal:  Science       Date:  2005-08-12       Impact factor: 47.728

4.  Significance of the Gunflint (Precambrian) Microflora: Photosynthetic oxygen may have had important local effects before becoming a major atmospheric gas.

Authors:  P E Cloud
Journal:  Science       Date:  1965-04-02       Impact factor: 47.728

5.  Iron isotope constraints on the Archean and Paleoproterozoic ocean redox state.

Authors:  Olivier J Rouxel; Andrey Bekker; Katrina J Edwards
Journal:  Science       Date:  2005-02-18       Impact factor: 47.728

6.  Investigation of an Iron-Oxidizing Microbial Mat Community Located near Aarhus, Denmark: Field Studies.

Authors:  D Emerson; N P Revsbech
Journal:  Appl Environ Microbiol       Date:  1994-11       Impact factor: 4.792

7.  Carbonate petrography, kerogen distribution, and carbon and oxygen isotope variations in an early Proterozoic transition from limestone to iron-formation deposition, Transvaal Supergroup, South Africa.

Authors:  N J Beukes; C Klein; A J Kaufman; J M Hayes
Journal:  Econ Geol       Date:  1990 Jun-Jul       Impact factor: 4.490

8.  Primary and diagenetic controls of isotopic compositions of iron-formation carbonates.

Authors:  A J Kaufman; J M Hayes; C Klein
Journal:  Geochim Cosmochim Acta       Date:  1990       Impact factor: 5.010

9.  Physiology of phototrophic iron(II)-oxidizing bacteria: implications for modern and ancient environments.

Authors:  Florian Hegler; Nicole R Posth; Jie Jiang; Andreas Kappler
Journal:  FEMS Microbiol Ecol       Date:  2008-09-22       Impact factor: 4.194

10.  Phototrophic Fe(II) oxidation in an atmosphere of H2: implications for Archean banded iron formations.

Authors:  L R Croal; Y Jiao; A Kappler; D K Newman
Journal:  Geobiology       Date:  2009-01       Impact factor: 4.407

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  4 in total

1.  Experimental maturation of Archaea encrusted by Fe-phosphates.

Authors:  J Miot; S Bernard; M Bourreau; F Guyot; A Kish
Journal:  Sci Rep       Date:  2017-12-05       Impact factor: 4.379

2.  Iron minerals within specific microfossil morphospecies of the 1.88 Ga Gunflint Formation.

Authors:  Kevin Lepot; Ahmed Addad; Andrew H Knoll; Jian Wang; David Troadec; Armand Béché; Emmanuelle J Javaux
Journal:  Nat Commun       Date:  2017-03-23       Impact factor: 14.919

Review 3.  Microbial processes during deposition and diagenesis of Banded Iron Formations.

Authors:  Carolin L Dreher; Manuel Schad; Leslie J Robbins; Kurt O Konhauser; Andreas Kappler; Prachi Joshi
Journal:  Palaontol Z       Date:  2021-12-08

4.  Bacterial iron reduction and biogenic mineral formation for the stabilisation of corroded iron objects.

Authors:  Wafa M Kooli; Lucrezia Comensoli; Julien Maillard; Monica Albini; Arnaud Gelb; Pilar Junier; Edith Joseph
Journal:  Sci Rep       Date:  2018-01-15       Impact factor: 4.379

  4 in total

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