Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic habitats that are strongly oxidizing. The pH extremes of these habitats, however, often exceed the acid tolerance of type species and strains. Here, adaptive laboratory evolution was used over a 3-year period to test whether such organisms harbor additional thermoacidophilic capacity. Three distinct cell lines derived from a single type species were subjected to high-temperature serial passage while culture acidity was gradually increased. A 178-fold increase in thermoacidophily was achieved after 29 increments of shifted culture pH resulting in growth at pH 0.8 and 80°C. These strains were named super-acid-resistant Crenarchaeota (SARC). Ma...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, live in hot, to...
Acidophiles are organisms that have evolved to grow optimally at high concentrations of protons. Mem...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, can live in hot...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
A novel thermoacidophilic archaeal strain has been isolated from three geothermal acidic hot springs...
peer-reviewedThermal niches although widespread are not uniform as they vary in pH, salinity, temper...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, live in hot, to...
Acidophiles are organisms that have evolved to grow optimally at high concentrations of protons. Mem...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, can live in hot...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Extremely thermoacidophilic Crenarchaeota belonging to the order Sulfolobales flourish in hot acidic...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as su...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
Adaptive laboratory evolution (ALE) is a method used to select for microbes with increased fitness d...
A novel thermoacidophilic archaeal strain has been isolated from three geothermal acidic hot springs...
peer-reviewedThermal niches although widespread are not uniform as they vary in pH, salinity, temper...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, live in hot, to...
Acidophiles are organisms that have evolved to grow optimally at high concentrations of protons. Mem...
Some microbial eukaryotes, such as the extremophilic red alga Galdieria sulphuraria, can live in hot...