Defining the functional potential and active community members of a sediment microbial community in a high-arctic hypersaline subzero spring

From National Research Council Canada

DOIResolve DOI: https://doi.org/10.1128/AEM.00153-13
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Affiliation
  1. National Research Council of Canada. NRC Biotechnology Research Institute
FormatText, Article
SubjectMetagenomic analysis; Microbial communities; Microbial components; Microbial populations; Oligotrophic conditions; Permafrost environment; Stress response genes; Sub-zero temperatures; Ammonia; Genes; Metabolism; Methane; Microorganisms; RNA; Sulfur; Sulfur compounds; complementary DNA; primer DNA; RNA 16S; adaptation; discharge; environmental stress; enzyme activity; fluvial deposit; genetic analysis; hypersaline environment; metabolism; microbial community; nutrient cycling; oxidation; population structure; terrestrial ecosystem; archaeon; Arctic; Bacteroidetes; cold; cyanobacterium; DNA sequence; genetics; metagenome; microbiology; molecular genetics; natural spring; nucleotide sequence; Proteobacteria; salinity; sediment; Archaea; Arctic Regions; Bacteroidetes; Base Sequence; Cold Temperature; Cyanobacteria; DNA Primers; DNA, Complementary; Geologic Sediments; Metagenome; Molecular Sequence Data; Natural Springs; Proteobacteria; RNA, Ribosomal, 16S; Salinity; Sequence Analysis, DNA; Canada
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LanguageEnglish
Peer reviewedYes
NPARC number21269891
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Record identifier10066444-a0de-4d4f-8826-203bb06c265a
Record created2013-12-13
Record modified2020-04-22
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