Understanding the formation of biogenic molecules in abiotic conditions is a prerequisite in the origin-of-life studies. Determining the conditions allowing an efficient one-pot synthesis of the largest possible panel of biogenic compounds may shed light on the plausible scenario in which the processes that kick-started life might have occurred. We report a set of experiments describing the syntheses taking place from formamide (NH2CHO) and thermal water in the presence of meteorites, in the hydrothermal physical-chemical environment of the Phlegrean Fields. The results show that meteorites catalyse the synthesis of a large panel of organic compounds of biological relevance, including carboxylic acids, nucleobases, amino acids and sugars. The simplicity of the system (a one-carbon molecule as starting compound, a volcanic hydrothermal environment, meteorites as catalysts) hints to a possible extension of the results to similar environments present in other planetary bodies and space objects.

Formamide-based prebiotic chemistry in the Phlegrean Fields

CobucciPonzano B;Iacono R;Moracci M
2018

Abstract

Understanding the formation of biogenic molecules in abiotic conditions is a prerequisite in the origin-of-life studies. Determining the conditions allowing an efficient one-pot synthesis of the largest possible panel of biogenic compounds may shed light on the plausible scenario in which the processes that kick-started life might have occurred. We report a set of experiments describing the syntheses taking place from formamide (NH2CHO) and thermal water in the presence of meteorites, in the hydrothermal physical-chemical environment of the Phlegrean Fields. The results show that meteorites catalyse the synthesis of a large panel of organic compounds of biological relevance, including carboxylic acids, nucleobases, amino acids and sugars. The simplicity of the system (a one-carbon molecule as starting compound, a volcanic hydrothermal environment, meteorites as catalysts) hints to a possible extension of the results to similar environments present in other planetary bodies and space objects.
2018
Istituto di Bioscienze e Biorisorse
Inglese
62
8
2372
2379
http://www.scopus.com/record/display.url?eid=2-s2.0-85026664210&origin=inward
Sì, ma tipo non specificato
Origin of life
Phlegrean Fields
Sugars
Carboxylic acids
Formamide
Geothermal fields
Nucleic bases
3
info:eu-repo/semantics/article
262
Botta L.; Saladino R.; Bizzarri B.M.; CobucciPonzano B.; Iacono R.; Avino R.; Caliro S.; Carandente A.; Lorenzini F.; Tortora A.; Di Mauro E.; Moracci...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/339830
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