FOSSILS: RECORD OF LIFE IN THE PLANET EARTH

Authors

DOI:

https://doi.org/10.36790/epistemus.v14i28.124

Keywords:

fossils, time, geology, Mexico

Abstract

Through the study of fossils, it's possible to know the history of life in the geological past of planet Earth. The knowledge of the fossils has derived lines of investigation that help to understand the geological history of the planet. Thus, it is known that the geological time is divided based on the forms of life that inhabited the planet. Life likely originated in the early Precambrian, more than 3800 million years ago, however, the oldest fossil remains of lithified bacterial communities, known as stromatolites, date to approximately 3550 million years ago. During the Paleozoic, most of the groups of plants, invertebrates and vertebrates that are known today appeared. Among all the organisms that appear at that time, brachiopods, trilobites, and graptolites are the dominant forms. In the Mesozoic, large reptiles, such as the dinosaurs, dominated, however, the most notable index invertebrates of this time correspond to ammonites and belemnites.

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References

E. Chacón Baca, M. P. Velasco de León, C. Castañeda Posadas, F. J. Cuen Romero y D. E. Lozano Carmona, «La Sociedad Mexicana de Paleontología: Una retrospectiva pertinente,» Paleontología Mexicana, vol. 9, nº 1, pp. 41-51, 2020.

M. J. Russell, D. E. Daia y A. J. Hall, «The emergence of life from FeS bubbles at alkaline hot springs in an acid ocean,» de Thermophiles: The keys to molecular evolution and the origin of life, J. Wiegel y M. W. W. Adams, Edits., Washington, Taylor & Francisc, 1998, pp. 77-126.

M. J. Russell y A. J. Hall, «The onset and early evolution of life,» de Evolution of early earth's atmosphere, hydrosphere, and biosphere -constraints from ore deposits, vol. 198, S. E. Kesler y H. Ohmoto, Edits., Geological Society of America, 2006, pp. 1-32.

J. P. Rafferty, Ed., Geochronology, Dating, and Precambrian Time: The Beginning of the World as We Know it, Britannica Educational Publishing., 2010, p. 245.

J. P. Rafferty, Ed., The Paleozoic Era: Diversification of Plant and Animal Life, Britannica Educational Publishing., 2010, p. 339.

J. P. Rafferty, Ed., The Mesozoic Era: Age of Dinosaurs, Britannica Educational Publishing, 2010, p. 285.

J. P. Rafferty, Ed., The Cenozoic Era: Age of Mammals, Britannica Educational Publishing, 2010, p. 241.

J. Bell, The Earth Book: From the Beginning to the End of Our Planet, 250 Milestone on the History of Earth Science, New York: Sterling Publishing Co., Inc., 2019, p. 793.

E. Chacón-Baca, C. Camargo y A. Negrón-Mendoza, «La evolución química como antecedente al origen de la vida,» CIENCIA UANL -20, vol. 85, nº julio-septiembre, 2017.

K. Zahnle, L. Schaefer y B. Fegley, «Earth's earliest atmospheres,» Cold Spring Harb Perspect Biol., vol. 2, nº 10, 2010.

W. K. Hartmann, C. Quantin y N. Mangold, «Possible long-term decline in impact rates: 2. Lunar impact-melt data regarding impact history,» Icarus, vol. 186, nº 1, pp. 11-23, 2007.

P. J. Thomas, R. D. Hicks, C. F. Chyba y C. P. McKay, Edits., Comets and the Origin and Evolution of Life, Springer Science & Business Media., 2006.

D. Christian, Big history: The big bang, life on earth, and the rise of humanity., Virginia: The Teaching Company, 2008, p. 280.

S.J. Mojzsis, G. Arrhenius, K. D. McKeegan, T. M. Harrison, A. P. Nutman y C. R. L. Friend, «Evidence for life on Earth before 3,800 million years ago,» Nature, vol. 384, nº 6604, pp. 55-59, 1996.

A. H. Knoll, K. D. Bergmann y J. V. Strauss, «Life: The first two billion years,» Philosophical Transactions of the Royal Society B: Biological Sciences, vol. 371, nº 1707, p. 20150493, 2016.

H. J. Hofmann, K. Grey, A. H. Hickman y R. I. Thorpe, «Origin of 3.45 Ga coniform stromatolites in Warrawoona Group, Western Australia,» GSA Bulletin, vol. 111, nº 8, pp. 1256-1262, 1999.

R. Riding, «The term stromatolite: Towards an essential definition,» Lethaia, vol. 32, pp. 321-330, 1999.

M. J. Van Kranendonk, G. E. Webb y B. S. Kamber, «Geological and trace element evidence for a marine sedimentary environment of deposition andbiogenicity of 3.45 Ga stromatolitic carbonates in the Pilbara Craton, and support for a reducing Archaean ocean,» Geobiology, vol. 1, nº 2, pp. 91-108, 2003.

T. R. Bontognali, A. L. Sessions, A. C. Allwood, W. W. Fischer, J. P. Grotzinger, R. E. Summons y J. M. Eiler, «Sulfur isotopes of organic matter preserved in 3.45-billion-year-old stromatolites reveal microbial metabolism,» Proceedings of the National Academy of Sciences, vol. 109, nº 38, pp. 15146-15151, 2012.

E. Chacón-Baca, «Microbial signatures from the Precambrian Files,» de Astrobiology, Emergence, Search and Detection of Life, V. Basiuk, Ed., Valencia, CA: American Scientific Publishers, 2010, pp. 315-340.

E. L. Taylor, T. N. Taylor y M. Krings, Paleobotany: the biology and evolution of fossil plants, Academic Press, 2009, p. 1222.

D. Fliegel, J. Kosler, N. McLoughlin, A. Simonetti, M. J. de Wit, R. Wirth y H. Furnes, «In-situ dating of the Earth's oldest trace fossils at 3.34 Ga,» de Earth Planetary Science Letters, vol. 299, pp. 290-298.

N. J. Butterfield, A. H. Knoll y K. Swett, «A bangiophyte red alga from the Proterozoic of arctic Canada,» Science, vol. 250, nº 4977, pp. 104-107, 1990.

M. A. McMenamin, «Ediacaran biota from Sonora, Mexico,» Proceedings of the National Academy of Sciences, vol. 93, nº 10, pp. 4990-4993, 1996.

F. J. Cuen-Romero, J. E. Valdez-Holguín, A. Montijo-González y R. Monreal-Saavedra, «Invertebrados Fósilesdel Paleozoico de Sonora, México,» Epistemus, vol. 10, nº 21, pp. 75-83, 2016.

T. P. Fletcher, G. Theokritoff, G. S. Lord y G. Zeoli, «The early paradoxidid harlani trilobite fauna of Massachusetts and its correlatives in Newfoundland, Morocco, and Spain,» Journal of Paleontology, vol. 79, nº 2, pp. 312-336, 2005.

R. Riding, «Calcified algae and bacteria,» de The Ecology of the Cambrian Radiation, A. Y. Zhuravlev y R. Riding, Edits., New York, Columbia University Press, pp. 445-473.

K. J. Niklas, «Predicting the Height of Fossil Plant Remains: An Allometric Approach to an Old Problem,» American Journal of Botany, vol. 81, nº 10, pp. 1235-1242, 1994.

J. L. Ramírez y S. R. S. Cevallos-Ferriz, «A diverse assemblage of Anacardiaceae from Oligocene sediments, Tepexi de Rodríguez, Puebla, Mexico,» American Journal of Botany, vol. 89, nº 3, pp. 535-545, 2002.

M. P. Velasco-de León, R. A. Spicer y D. C. Steart, «Climatic reconstruction of two Pliocene floras from Mexico,» Palaeobiodiversity and Palaeoenvironments, vol. 90, nº 2, pp. 99-110, 2010.

Published

2021-05-25

How to Cite

Cuen Romero, F. J., Chacón-Baca, E., Moreno-Bedmar, J., & Velasco-de León, M. P. (2021). FOSSILS: RECORD OF LIFE IN THE PLANET EARTH. EPISTEMUS, 14(28), 51–62. https://doi.org/10.36790/epistemus.v14i28.124

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