4.8 Article

Early trace of life from 3.95 Ga sedimentary rocks in Labrador, Canada

Journal

NATURE
Volume 549, Issue 7673, Pages 516-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nature24019

Keywords

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Funding

  1. Ministry of Education, Culture, Sports, Science and Technology, Japan [23253007, 26220713, 24221002]
  2. Mitsubishi Foundation
  3. Grants-in-Aid for Scientific Research [26106005, 23253007, 16J07403, 15J40157, 26220713] Funding Source: KAKEN

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The vestiges of life in Eoarchean rocks have the potential to elucidate the origin of life. However, gathering evidence from many terrains is not always possible(1-3), and biogenic graphite has thus far been found only in the 3.7-3.8 Ga (gigayears ago) Isua supracrustal belt(4-7). Here we present the total organic carbon contents and carbon isotope values of graphite (d13Corg) and carbonate (delta(13)Ccarb) in the oldest metasedimentary rocks from northern Labrador(8,9). Some pelitic rocks have low delta(13)Corg values of -28.2, comparable to the lowest value in younger rocks. The consistency between crystallization temperatures of the graphite and metamorphic temperature of the host rocks establishes that the graphite does not originate from later contamination. A clear correlation between the delta(13)Corg values and metamorphic grade indicates that variations in the delta(13)Corg values are due to metamorphism, and that the pre-metamorphic value was lower than the minimum value. We concluded that the large fractionation between the delta(13)Ccarb and delta(13)Corg values, up to 25%, indicates the oldest evidence of organisms greater than 3.95 Ga. The discovery of the biogenic graphite enables geochemical study of the biogenic materials themselves, and will provide insight into early life not only on Earth but also on other planets.

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