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High hydrostatic pressure adaptive strategies in an obligate piezophile Pyrococcus yayanosii and piezosensible Pyrococcus furiosus
We have identified differentially expressed genes according to hydrostatic pressure growth conditions in Desulfovibrio piezophilus. The transcriptomic datasets report the molecular mechanisms which could be involved in such adaptation and give information for the piezophile sulfate-reducing bacteria...
ORGANISM(S): Pseudodesulfovibrio piezophilus C1TLV30 
2017-01-01 | GSE58269 | GEO
We have identified differentially expressed genes according to hydrostatic pressure growth conditions in Desulfovibrio hydrothermalis. The transcriptomic datasets report the molecular mechanisms which could be involved in such adaptation and give information for the piezophile sulfate-reducing bacte...
ORGANISM(S): Maridesulfovibrio hydrothermalis AM13 = DSM 14728 
2015-10-13 | GSE55745 | GEO
Pyrococcus yayanosii CH1 is the first and only obligate piezophilic hyperthermophilic microorganism discovered so far, that extends the physical and chemical limits of life on Earth and strengthens the idea of the existence of a hyperthermophilic biosphere in the depth of our planet. It was isolated...
ORGANISM(S): Pyrococcus Pyrococcus furiosus Pyrococcus yayanosii 
2015-09-09 | GSE72783 | GEO
Pyrococcus yayanosii CH1 is the first and only obligate piezophilic hyperthermophilic microorganism discovered so far, that extends the physical and chemical limits of life on Earth and strengthens the idea of the existence of a hyperthermophilic biosphere in the depth of our planet. It was isolated...
ORGANISM(S): Pyrococcus furiosus 
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