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Research Article

Early Archean serpentine mud volcanoes at Isua, Greenland, as a niche for early life

Marie-Laure Pons, Ghylaine Quitté, Toshiyuki Fujii, Minik T. Rosing, Bruno Reynard, Frederic Moynier, Chantal Douchet, and Francis Albarède
PNAS October 25, 2011 108 (43) 17639-17643; https://doi.org/10.1073/pnas.1108061108
Marie-Laure Pons
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Ghylaine Quitté
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Toshiyuki Fujii
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Minik T. Rosing
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Bruno Reynard
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Frederic Moynier
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Chantal Douchet
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Francis Albarède
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  • For correspondence: albarede@ens-lyon.fr
  1. Edited* by Mark H. Thiemens, University of California San Diego, La Jolla, CA, and approved September 15, 2011 (received for review May 20, 2011)

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Abstract

The Isua Supracrustal Belt, Greenland, of Early Archean age (3.81–3.70 Ga) represents the oldest crustal segment on Earth. Its complex lithology comprises an ophiolite-like unit and volcanic rocks reminiscent of boninites, which tie Isua supracrustals to an island arc environment. We here present zinc (Zn) isotope compositions measured on serpentinites and other rocks from the Isua supracrustal sequence and on serpentinites from modern ophiolites, midocean ridges, and the Mariana forearc. In stark contrast to modern midocean ridge and ophiolite serpentinites, Zn in Isua and Mariana serpentinites is markedly depleted in heavy isotopes with respect to the igneous average. Based on recent results of Zn isotope fractionation between coexisting species in solution, the Isua serpentinites were permeated by carbonate-rich, high-pH hydrothermal solutions at medium temperature (100–300 °C). Zinc isotopes therefore stand out as a pH meter for fossil hydrothermal solutions. The geochemical features of the Isua fluids resemble the interstitial fluids sampled in the mud volcano serpentinites of the Mariana forearc. The reduced character and the high pH inferred for these fluids make Archean serpentine mud volcanoes a particularly favorable setting for the early stabilization of amino acids.

  • hydrothermal fluids
  • serpentinization
  • origin of life
  • subduction zone

Footnotes

  • ↵1Present address: Géosciences Montpellier, 34095 Montpellier, France.

  • ↵2To whom correspondence should be addressed. E-mail: albarede{at}ens-lyon.fr.
  • Author contributions: M.T.R. and F.A. designed research; M.-L.P., T.F., M.T.R., B.R., F.M., C.D., and F.A. performed research; B.R. contributed new reagents/analytic tools; M.-L.P., G.Q., T.F., M.T.R., F.M., and F.A. analyzed data; and M.-L.P. and G.Q. wrote the paper.

  • The authors declare no conflict of interest.

  • *This Direct Submission article had a prearranged editor.

  • This article contains supporting information online at www.pnas.org/lookup/suppl/doi:10.1073/pnas.1108061108/-/DCSupplemental.

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Early Archean serpentine mud volcanoes at Isua, Greenland, as a niche for early life
Marie-Laure Pons, Ghylaine Quitté, Toshiyuki Fujii, Minik T. Rosing, Bruno Reynard, Frederic Moynier, Chantal Douchet, Francis Albarède
Proceedings of the National Academy of Sciences Oct 2011, 108 (43) 17639-17643; DOI: 10.1073/pnas.1108061108

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Early Archean serpentine mud volcanoes at Isua, Greenland, as a niche for early life
Marie-Laure Pons, Ghylaine Quitté, Toshiyuki Fujii, Minik T. Rosing, Bruno Reynard, Frederic Moynier, Chantal Douchet, Francis Albarède
Proceedings of the National Academy of Sciences Oct 2011, 108 (43) 17639-17643; DOI: 10.1073/pnas.1108061108
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