Haploid deletion strains of Saccharomyces cerevisiae that determine survival during space flight

Autor: Timothy G. Hammond, C. A. Nickerson, Kenneth E. Muse, Rajee Ramamurthy, Patricia L. Allen, Jeffrey S. Hammond, Romer A. Gonzalez-Villalobos, Jacqueline Nesbit, Kerstin Höner zu Bentrup, Riccardo D’Elia, Kelly Johanson, Jake Freeman, Louis S. Stodieck, James W. Wilson
Rok vydání: 2007
Předmět:
Zdroj: Acta Astronautica. 60:460-471
ISSN: 0094-5765
DOI: 10.1016/j.actaastro.2006.09.011
Popis: This study identifies genes that determine survival during a space flight, using the model eukaryotic organism, Saccharomyces cerevisiae. Select strains of a haploid yeast deletion series grew during storage in distilled water in space, but not in ground based static or clinorotation controls. The survival advantages in space in distilled water include a 133-fold advantage for the deletion of PEX19, a chaperone and import receptor for newly- synthesized class I peroxisomal membrane proteins, to 77–40 fold for deletion strains lacking elements of aerobic respiration, isocitrate metabolism, and mitochondrial electron transport. Following automated addition of rich growth media, the space flight was associated with a marked survival advantage of strains with deletions in catalytically active genes including hydrolases, oxidoreductases and transferases. When compared to static controls, space flight was associated with a marked survival disadvantage of deletion strains lacking transporter, antioxidant and catalytic activity. This study identifies yeast deletion strains with a survival advantage during storage in distilled water and space flight, and amplifies our understanding of the genes critical for survival in space.
Databáze: OpenAIRE