Bacterial response to cold shock and cold adaptation is not fully understood. While several cold inducible genes have been identified in mesophilic orangisms, the roles they play in cold acclimation remain unclear. Few studies emphasize cold acclimation of psychrotrophic or psychrophilic bacteria. Available cold acclimation studies look at a limited number of genes involved in cold stress, and fewer studies compare genes involved in cold shock and cold adaptation. As “omics” technologies become more readily available, looking at whole cell response to cold stress is more achievable. This study uses genomic and transcriptomic approaches to advance the understanding of cold shock and cold adaptation in Pseudomonas fluorescens HK44. Genomic mi...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Free-living bacteria such as Pseudomonas putida are frequently exposed to temperature shifts and non...
Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobi...
BACKGROUND: Although cold shock responses and the roles of cold shock proteins in microorganisms con...
<div><p>Background</p><p>Although cold shock responses and the roles of cold shock proteins in micro...
The psychrotroph Pseudomonas fragi D12, which grew strongly under low temperatures, was screened fro...
Background: Although cold shock responses and the roles of cold shock proteins in microorganisms con...
The ability of psychrophiles to survive and proliferate at low temperatures implies that they have o...
Glaciozyma antarctica PI12, a psychrophilic yeast from Antarctica, grows well at low temperatures. H...
Microorganisms have acquired both common and unique abilities to withstand cold stress on Earth. Man...
It is well known that cold environments are predominant over the Earth and there are a great number ...
Not AvailableLow temperature proteomic response of psychrotrophic bacterium Pseudomonas lurida NPRp1...
Permafrost subzero environments harbor diverse, active communities of microorganisms. However, our u...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
When subjected to rapid drops of temperature (cold shock), Neurospora responds with a temporary shif...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Free-living bacteria such as Pseudomonas putida are frequently exposed to temperature shifts and non...
Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobi...
BACKGROUND: Although cold shock responses and the roles of cold shock proteins in microorganisms con...
<div><p>Background</p><p>Although cold shock responses and the roles of cold shock proteins in micro...
The psychrotroph Pseudomonas fragi D12, which grew strongly under low temperatures, was screened fro...
Background: Although cold shock responses and the roles of cold shock proteins in microorganisms con...
The ability of psychrophiles to survive and proliferate at low temperatures implies that they have o...
Glaciozyma antarctica PI12, a psychrophilic yeast from Antarctica, grows well at low temperatures. H...
Microorganisms have acquired both common and unique abilities to withstand cold stress on Earth. Man...
It is well known that cold environments are predominant over the Earth and there are a great number ...
Not AvailableLow temperature proteomic response of psychrotrophic bacterium Pseudomonas lurida NPRp1...
Permafrost subzero environments harbor diverse, active communities of microorganisms. However, our u...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
When subjected to rapid drops of temperature (cold shock), Neurospora responds with a temporary shif...
Cold environments dominate Earth's biosphere, hosting complex microbial communities with the ability...
Free-living bacteria such as Pseudomonas putida are frequently exposed to temperature shifts and non...
Background Arctic Mesorhizobium strain N33 was isolated from nodules of the legume Oxytropis arctobi...