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All of the approximately 70 known species are restricted to cold, marine bottom waters at depths ranging from 10 metres (about 33 feet) in high latitudes to 1,300 metres (about 4,300 feet) in equatorial oceans.
Notwithstanding its low latitude and proximity to humid air masses, the coastal region of southwestern Central Africa has an abnormally long dry season with a low annual rainfall because of the presence of a cold marine current (the Benguela Current) along the coast.
Shifts in the location of warm and cold marine currents, which strengthened or dampened insolation-driven climatic changes, played an important role in vegetation development.
The closest relatives were the free-living heterotrophic bacterial genus Colwellia, which is a psychrophilic, gram-negative bacterium that can be found in continually cold marine environments including the deep sea [39] [41].
The present analyses provided the first insight into divergent genomic evolution of bacterial strains for adaptation to the specific cold marine conditions and to the degradation of the pollutant RDX.
The overall goals of the present study were to compare genomes of S. halifaxensis and S. sediminis with reference strains (listed in Fig. 2) in order to understand their genomic evolution pathways for adaptation to a UXO-contaminated cold marine sediment site as well as for in-situ degradation of explosive RDX.
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This observation suggests that S. halifaxensis and S. sediminis have a unique evolutionary history for adaptation to colder marine environments in contrast to the evolutionary history of Shewanella especially S. amazonensis and S. loihica adapted to warmer parts of marine/coastal environments.
The greenhouse gases, including those emitted from combustion and industrial processes, such as carbon dioxide, nitrogen oxide, and methane, lead significantly to global warming, shore floods, atmospheric heat waves, land droughts, and destruction of cold-marine life.
The soils developed in the material of predominantly volcanic origin under cold humid marine climate.
Facilities are used to conduct research on Atlantic salmon and other cold water marine finfish species.
The Northeastern U.S. has the ideal location and unique opportunity to be a leader in cold water marine finfish aquaculture.
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