Mini-Review: Probing the limits of extremophilic life in extraterrestrial environment-simulated experiments

Astrobiology is a relatively recent scientific field that seeks to understand the origin and dynamics of life in the Universe. Several hypotheses have been proposed to explain life in the cosmic context throughout human history, but only now, technology has allowed many of them to be tested. Laborat...

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Autor principal: Lage, C.A.S
Otros Autores: Dalmaso, G.Z.L, Teixeira, L.C.R.S, Bendia, A.G, Paulino-Lima, I.G, Galante, D., Janot-Pacheco, E., Abrevaya, X.C, Azúa-Bustos, A., Pelizzari, V.H, Rosado, A.S
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2012
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Acceso en línea:Registro en Scopus
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100 1 |a Lage, C.A.S. 
245 1 0 |a Mini-Review: Probing the limits of extremophilic life in extraterrestrial environment-simulated experiments 
260 |c 2012 
270 1 0 |m Lage, C.A.S.; Laboratório de Radiações em Biologia, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal Do Rio de JaneiroBrazil; email: lage@biof.ufrj.br 
506 |2 openaire  |e Política editorial 
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520 3 |a Astrobiology is a relatively recent scientific field that seeks to understand the origin and dynamics of life in the Universe. Several hypotheses have been proposed to explain life in the cosmic context throughout human history, but only now, technology has allowed many of them to be tested. Laboratory experiments have been able to show how chemical elements essential to life, such as carbon, nitrogen, oxygen and hydrogen combine in biologically important compounds. Interestingly, these compounds are ubiquitous. How these compounds were combined to the point of originating cells and complex organisms is still to be unveiled by science. However, our 4.5 billion years old Solar system appeared in a 10 billion years old Universe. Thus, simple cells such as micro-organisms may have had time to form in planets older than ours or in other suitable places in the Universe. One hypothesis related to the appearance of life on Earth is called panspermia, which predicts that microbial life could have been formed in the Universe billions of years ago, travelling between planets, and inseminating units of life that could have become more complex in habitable planets such as Earth. A project designed to test the viability of extremophile micro-organisms exposed to simulated extraterrestrial environments is in progress at the Carlos Chagas Filho Institute of Biophysics (UFRJ, Brazil) to test whether microbial life could withstand inhospitable environments. Radiation-resistant (known or novel ones) micro-organisms collected from extreme terrestrial environments have been exposed (at synchrotron accelerators) to intense radiation sources simulating Solar radiation, capable of emitting radiation in a few hours equivalent to many years of accumulated doses. The results obtained in these experiments reveal an interesting possibility of the existence of microbial life beyond Earth. Copyright © Cambridge University Press 2012.  |l eng 
593 |a Laboratório de Radiações em Biologia, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal Do Rio de Janeiro, Brazil 
593 |a NASA-Ames Research Center, United States 
593 |a Instituto de Astronomia, Geofísica e Ciências Atmosféricas, Universidade de São Paulo, Brazil 
593 |a Instituto de Astronomía y Física Del Espacio, Universidad de Buenos Aires - CONICET, Argentina 
593 |a Pontificia Universidad Catolica de Chile, Chile 
593 |a Instituto Oceanográfico, Universidade de São Paulo, Brazil 
593 |a Instituto de Microbiologia Prof Paulo Góes, Universidade Federal Do Rio de Janeiro, Brazil 
690 1 0 |a ASTROBIOLOGY 
690 1 0 |a COSMIC DUST 
690 1 0 |a EXTREMOPHILES 
690 1 0 |a PANSPERMIA 
690 1 0 |a ULTRAVIOLET 
690 1 0 |a EXPERIMENTAL STUDY 
690 1 0 |a EXTREMOPHILE 
690 1 0 |a HYDROGEN 
690 1 0 |a LABORATORY METHOD 
690 1 0 |a MICROORGANISM 
690 1 0 |a NITROGEN 
690 1 0 |a OXYGEN 
690 1 0 |a SOLAR RADIATION 
690 1 0 |a TERRESTRIAL ENVIRONMENT 
650 1 7 |2 spines  |a CARBON 
700 1 |a Dalmaso, G.Z.L. 
700 1 |a Teixeira, L.C.R.S. 
700 1 |a Bendia, A.G. 
700 1 |a Paulino-Lima, I.G. 
700 1 |a Galante, D. 
700 1 |a Janot-Pacheco, E. 
700 1 |a Abrevaya, X.C. 
700 1 |a Azúa-Bustos, A. 
700 1 |a Pelizzari, V.H. 
700 1 |a Rosado, A.S. 
773 0 |d 2012  |g v. 11  |h pp. 251-256  |k n. 4  |p Int. J. Astrobiology  |x 14735504  |t International Journal of Astrobiology 
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