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December 18, 2017Proceedings of the National Academy of Sciences202 citationsOpen Access

SIMS analyses of the oldest known assemblage of microfossils document their taxon-correlated carbon isotope compositions

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JSJ. William SchopfKKKouki KitajimaMSMichael J. Spicuzza

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Abstract

Significance Although the existence of the Archaea (one of three all-encompassing domains of life) in the Archean Eon (4,000 to 2,500 million years ago) has been inferred from carbon isotopes in bulk samples of ancient rocks, their cellular fossils have been unknown. We here present carbon isotope analyses of 11 microbial fossils from the ∼3,465-million-year-old Western Australian Apex chert from which we infer that two of the five species studied were primitive photosynthesizers, one was an Archaeal methane producer, and two others were methane consumers. This discovery of Archaea in the Archean is consistent with the rRNA “tree of life,” confirms the earlier disputed biogenicity of the Apex fossils, and suggests that methane-cycling methanogen−methanotroph communities were a significant component of Earth’s early biosphere.

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Schopf et al. (2017) studied this question.

synapsesocial.com/papers/6a21263e1311b8b97096992fhttps://doi.org/10.1073/pnas.1718063115
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