Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobia in Canada’s eastern Arctic. This symbiotic bacterium can grow at temperatures ranging from 0 to 30 °C, fix nitrogen at 10 °C, and is one of the best known cold-adapted rhizobia. Despite the economic potential of this bacterium for northern regions, the key molecular mechanisms of its cold adaptation remain poorly understood. Results Using a microarray printed with 5760 Arctic Mesorhizobium genomic clones, we performed a partial transcriptome analysis of strain N33 grown under eight different temperature conditions, including both sustained and transient cold treatments, compared with cells grown at room temperature. Cells treated under con...
The ability of psychrophiles to survive and proliferate at low temperatures implies that they have o...
Abstract\ud \ud Background\ud \...
<p>Permafrost subzero environments harbor diverse, active communities of microorganisms. However, ou...
Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobi...
Arctic Mesorhizobium sp. N33 isolated from nodules of Oxytropis arctobia in Canada’s eastern Arctic ...
Arctic Mesorhizobium sp. N33 isolated from nodules of Oxytropis arctobia in Canada's eastern Arctic ...
La souche arctique Mesorhizobium sp. N33 est une bactérie psychrotrophe reconnue comme l'un des rhiz...
Permafrost subzero environments harbor diverse, active communities of microorganisms. However, our u...
Glaciozyma antarctica PI12, a psychrophilic yeast from Antarctica, grows well at low temperatures. H...
Bacterial response to cold shock and cold adaptation is not fully understood. While several cold ind...
Background: Many microorganisms have a wide temperature growth range and versatility to tolerate lar...
It is well known that cold environments are predominant over the Earth and there are a great number ...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Background: Cyanobacteria are major primary producers in extreme cold ecosystems. Many lineages of c...
The ability of psychrophiles to survive and proliferate at low temperatures implies that they have o...
Abstract\ud \ud Background\ud \...
<p>Permafrost subzero environments harbor diverse, active communities of microorganisms. However, ou...
Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobi...
Arctic Mesorhizobium sp. N33 isolated from nodules of Oxytropis arctobia in Canada’s eastern Arctic ...
Arctic Mesorhizobium sp. N33 isolated from nodules of Oxytropis arctobia in Canada's eastern Arctic ...
La souche arctique Mesorhizobium sp. N33 est une bactérie psychrotrophe reconnue comme l'un des rhiz...
Permafrost subzero environments harbor diverse, active communities of microorganisms. However, our u...
Glaciozyma antarctica PI12, a psychrophilic yeast from Antarctica, grows well at low temperatures. H...
Bacterial response to cold shock and cold adaptation is not fully understood. While several cold ind...
Background: Many microorganisms have a wide temperature growth range and versatility to tolerate lar...
It is well known that cold environments are predominant over the Earth and there are a great number ...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Background: Cyanobacteria are major primary producers in extreme cold ecosystems. Many lineages of c...
The ability of psychrophiles to survive and proliferate at low temperatures implies that they have o...
Abstract\ud \ud Background\ud \...
<p>Permafrost subzero environments harbor diverse, active communities of microorganisms. However, ou...