February 16, 2022
Book Chapter

Earliest Traces of Life as a Window on Life's Origins

Abstract

Life is the outcome of a complex network of chemical reactions and mo-lecular interactions that emerged on Earth once primitive chemical automata could self-assemble in such a way that enabled them to self-reproduce and evolve. Yet exactly how, where and when life first appeared on our planet remains unknown. Various lines of evidence from fossilized traces of early life preserved in the geological record provide fundamental, albeit often rudimentary, insight into early life. The oldest fossils record the nature of life more than half a billion years after it emerged on Earth and suggest that considerable metabolic diversity had already evolved by this time. Microfossils, microbial mats, stromatolites and organic and inorganic geochemical signatures have been interpreted as compelling evidence for Archean biodiversity. In spite of the chemical enigmas of the earliest life and its limited record, characterization of the various classes of biosignatures indicative of life in its geological context provides guidance as to the earliest co-evolution of the geosphere and biosphere.

Published: February 16, 2022

Citation

Cavalazzi B., K. Hickman-Lewis, A. Brack, and S.L. Cady. 2021. Earliest Traces of Life as a Window on Life's Origins. In Prebiotic Chemistry and the Origin of Life: Advances in Astrobiology and Biogeophysics, edited by A. Neubeck and S. McMahon. 277-254. Cham:Springer. PNNL-SA-160085. doi:10.1007/978-3-030-81039-9_10