Transcriptional and metabolomic analysis of Ascophyllum nodosum mediated freezing tolerance in Arabidopsis thaliana

From National Research Council Canada

DOIResolve DOI: https://doi.org/10.1186/1471-2164-13-643
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Affiliation
  1. National Research Council of Canada. NRC Institute for Nutrisciences and Health
FormatText, Article
Subjectcarboxylic acid; fatty acid; proline; proline dehydrogenase; pyrroline 5 carboxylate reductase; sugar; sugar alcohol; Arabidopsis; Ascophyllum; ascophyllum nodosum; cytosol; down regulation; freezing; freezing tolerance; gene expression; genetic transcription; heteronuclear multiple bond correlation; heteronuclear single quantum coherence; lipid composition; lipophilicity; metabolomics; nuclear magnetic resonance spectroscopy; osmotic stress; P5CS1 gene; P5CS2 gene; plant gene; ProDH gene; proton nuclear magnetic resonance; sfr4 gene; transcriptomics; upregulation; Arabidopsis; Ascophyllum; Carbohydrate Metabolism; Freezing; Gene Expression Profiling; Hot Temperature; Hydrophobic and Hydrophilic Interactions; Metabolomics; Mutation; Proline; Solubility; Transcription, Genetic; Arabidopsis; Arabidopsis thaliana; Ascophyllum nodosum
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LanguageEnglish
Peer reviewedYes
NPARC number21269265
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Record created2013-12-12
Record modified2020-04-21
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