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Towards synthetic biological approaches to resource utilization on space missions.
Menezes, Amor A; Cumbers, John; Hogan, John A; Arkin, Adam P.
Afiliação
  • Menezes AA; California Institute for Quantitative Biosciences, University of California, 2151 Berkeley Way, Berkeley, CA 94704-5230, USA amenezes@berkeley.edu.
  • Cumbers J; NASA Ames Space Portal, NASA Ames Research Center, MS 555-2, Moffett Field, CA 94035, USA.
  • Hogan JA; Bioengineering Branch, NASA Ames Research Center, MS 239-15, Moffett Field, CA 94035, USA.
  • Arkin AP; E.O. Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS 955-512L, Berkeley, CA 94720, USA Department of Bioengineering, University of California, Berkeley, CA 94720, USA.
J R Soc Interface ; 12(102): 20140715, 2015 Jan 06.
Article em En | MEDLINE | ID: mdl-25376875
ABSTRACT
This paper demonstrates the significant utility of deploying non-traditional biological techniques to harness available volatiles and waste resources on manned missions to explore the Moon and Mars. Compared with anticipated non-biological approaches, it is determined that for 916 day Martian missions 205 days of high-quality methane and oxygen Mars bioproduction with Methanobacterium thermoautotrophicum can reduce the mass of a Martian fuel-manufacture plant by 56%; 496 days of biomass generation with Arthrospira platensis and Arthrospira maxima on Mars can decrease the shipped wet-food mixed-menu mass for a Mars stay and a one-way voyage by 38%; 202 days of Mars polyhydroxybutyrate synthesis with Cupriavidus necator can lower the shipped mass to three-dimensional print a 120 m(3) six-person habitat by 85% and a few days of acetaminophen production with engineered Synechocystis sp. PCC 6803 can completely replenish expired or irradiated stocks of the pharmaceutical, thereby providing independence from unmanned resupply spacecraft that take up to 210 days to arrive. Analogous outcomes are included for lunar missions. Because of the benign assumptions involved, the results provide a glimpse of the intriguing potential of 'space synthetic biology', and help focus related efforts for immediate, near-term impact.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Voo Espacial / Methanobacterium / Astronave / Biologia Sintética Limite: Humans Idioma: En Revista: J R Soc Interface Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Voo Espacial / Methanobacterium / Astronave / Biologia Sintética Limite: Humans Idioma: En Revista: J R Soc Interface Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Estados Unidos