Astrobiology · 2013 · 21 citations · 43 references
Early EarthArchaeaBiosignatureUnicellular OrganismEarly Earth EnvironmentExtremophileMicrobial EcologyInorganic IngredientsBiophysicsBiological ActivityProkaryotic SystemProtistBiochemistryBiological Life CycleBiologyNatural SciencesIntracellular FluidGeochemistryMicrobiologyChemical EvolutionMedicine
Early in its history, Earth's surface developed from an uninhabitable magma ocean to a place where life could emerge. The first organisms, lacking ion transporters, fixed the composition of their cradle environment in their intracellular fluid. Later, though life adapted and spread, it preserved some qualities of its initial environment within. Modern prokaryotes could thus provide insights into the conditions of early Earth and the requirements for the emergence of life. In this work, we constrain Earth's life-forming environment through detailed analysis of prokaryotic intracellular fluid. Rigorous assessment of the constraints placed on the early Earth environment by intracellular liquid will provide insight into the conditions of abiogenesis, with implications not only for our understanding of early Earth but also the formation of life elsewhere in the Universe.
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Evidence for life on Earth before 3,800 million years ago
S. J. Mojzsis, Gustaf Arrhenius, K. D. McKeegan et al. · Nature · 1996 · 1.3K citations
An off-axis hydrothermal vent field near the Mid-Atlantic Ridge at 30° N
Nature · 2001 · 1.1K citations
William Martin, Michael J. Russell · Philosophical Transactions of the Royal Society B Biological Sciences · 2003 · 837 citations · Full text