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Orig Life Evol Biosph ; 44(3): 231-7, 2014 Sep.
Article in English | MEDLINE | ID: mdl-25573749

ABSTRACT

In this work we investigated the ability of four extremophilic bacteria from Archaea and Bacteria domains to resist to space environment by exposing them to extreme conditions of temperature, UV radiation, desiccation coupled to low pressure generated in a Mars' conditions simulator. All the investigated extremophilic strains (namely Sulfolobus solfataricus, Haloterrigena hispanica, Thermotoga neapolitana and Geobacillus thermantarcticus) showed a good resistance to the simulation of the temperature variation in the space; on the other hand irradiation with UV at 254 nm affected only slightly the growth of H. hispanica, G. thermantarcticus and S. solfataricus; finally exposition to Mars simulated condition showed that H. hispanica and G. thermantarcticus were resistant to desiccation and low pressure.


Subject(s)
Euryarchaeota/radiation effects , Geobacillus/radiation effects , Space Simulation , Sulfolobus solfataricus/radiation effects , Thermotoga neapolitana/radiation effects , Cold Temperature , Desiccation , Euryarchaeota/growth & development , Exobiology , Extraterrestrial Environment , Geobacillus/growth & development , Hot Temperature , Mars , Microbial Viability/radiation effects , Sulfolobus solfataricus/growth & development , Thermotoga neapolitana/growth & development , Ultraviolet Rays , Vacuum
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