The habitat and nature of early life
Top Cited Papers
- 1 February 2001
- journal article
- review article
- Published by Springer Nature in Nature
- Vol. 409 (6823) , 1083-1091
- https://doi.org/10.1038/35059210
Abstract
Earth is over 4,500 million years old. Massive bombardment of the planet took place for the first 500-700 million years, and the largest impacts would have been capable of sterilizing the planet. Probably until 4,000 million years ago or later, occasional impacts might have heated the ocean over 100 degrees C. Life on Earth dates from before about 3,800 million years ago, and is likely to have gone through one or more hot-ocean 'bottlenecks'. Only hyperthermophiles (organisms optimally living in water at 80-110 degrees C) would have survived. It is possible that early life diversified near hydrothermal vents, but hypotheses that life first occupied other pre-bottleneck habitats are tenable (including transfer from Mars on ejecta from impacts there). Early hyperthermophile life, probably near hydrothermal systems, may have been non-photosynthetic, and many housekeeping proteins and biochemical processes may have an original hydrothermal heritage. The development of anoxygenic and then oxygenic photosynthesis would have allowed life to escape the hydrothermal setting. By about 3,500 million years ago, most of the principal biochemical pathways that sustain the modern biosphere had evolved, and were global in scope.Keywords
This publication has 92 references indexed in Scilit:
- Carbon dioxide cycling and implications for climate on ancient EarthJournal of Geophysical Research, 2001
- Antiquity of the biological sulphur cycle: evidence from sulphur and carbon isotopes in 2700 million–year–old rocks of the Belingwe Belt, ZimbabweProceedings Of The Royal Society B-Biological Sciences, 2001
- Refugia from asteroid impacts on early Mars and the early EarthJournal of Geophysical Research, 1998
- Volcanic, sedimentary and tectonostratigraphic environments of the ∼3.46 Ga Warrawoona Megasequence: a reviewPrecambrian Research, 1993
- Environmental control on diverse stromatolite morphologies in the 3000 Myr Pongola Supergroup, South AfricaSedimentology, 1989
- Archaean stromatolites from the Steep Rock Group, northwestern Ontario, CanadaCanadian Journal of Earth Sciences, 1985
- Temperatures in a runaway greenhouse on the evolving Venus: implications for water lossEarth and Planetary Science Letters, 1984
- Early atmospheric oxygen levels: constraints from Archaean photoautotrophyJournal of the Geological Society, 1984
- No water, no granites ‐ No oceans, no continentsGeophysical Research Letters, 1983
- Molecules as documents of evolutionary historyJournal of Theoretical Biology, 1965