Hydrocarbon-degrading bacteria in SRE4 experiment by most probable number count
Progress Code: completedMost probable number counts of bacteria in sediment samples from the Sediment Recruitment Experiment 4. Samples were taken immediately after the collection of sediment, after the addition of the oils to the sediment and after five
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Beyond surface scraping to understand fluvial biofilms: an electron microscopy analysis of the rock-biofilm interface in Antarctic meltwater streams. [PDF]
Arias-Real R, de Los Ríos A.
europepmc +1 more source
Progress Code: completedStatement: Data quality information for each feature is included in the attributes table. The dates provided in temporal coverage are approximate only.This record describes GIS polygon data (a shapefile) representing the ...
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Antarctic Circumpolar Current creates a boundary limiting the meridional dispersal of bacteria in the Southern Ocean. [PDF]
Lin S +12 more
europepmc +1 more source
Psychrophilic Bacteria and Enzyme Activity in Antarctic Ice Environments. [PDF]
Devecioglu D +4 more
europepmc +1 more source
Production and Biotechnological Potential of Extracellular Polymeric Substances from Sponge-Associated Antarctic Bacteria. [PDF]
Caruso C +9 more
europepmc +1 more source
Australian Antarctic Gazetteer
Progress Code: onGoingStatement: The gazetteer is being regularly updated, as more source information becomes available. Gazetteer data have been collated from various sources to provide information, descriptions and images of locations and features in ...
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Deep Sea hydrothermal vent habitats support gravid Antarctic krill. [PDF]
Bernard KS +10 more
europepmc +1 more source
Environmental filtering shapes biosynthetic potential and resistome of antarctic microbiomes. [PDF]
Medeiros WB +3 more
europepmc +1 more source
International Programme for Antarctic Buoys (IPAB)
Progress Code: completedStatement: Fairly complete coverage of the study area - south of 55 degrees South latitude, and includes that region of the Southern Ocean and Antarctic marginal seas within the maximum seasonal sea-ice extent.
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