{"@type": "dcat:Dataset", "accessLevel": "public", "accrualPeriodicity": "irregular", "bureauCode": ["026:00"], "contactPoint": {"@type": "vcard:Contact", "fn": "GeneLab Outreach", "hasEmail": "mailto:genelab-outreach@lists.nasa.gov"}, "description": "Anoxia induces several heat shock proteins and a heat pre-treatment can acclimatize Arabidopsis seedlings to a subsequent anoxic treatment. In this work we analyzed the response of Arabidopsis seedlings to anoxia heat and a combined heat+anoxia stress. A significant overlapping between the anoxic and heat shock responses has been observed by whole-genome microarray analysis. Overall design: We treated Arabidopsis seedling 4-days old dark germinated with: Control (23C dark liquid Murashige-Skoog medium containing 30mM sucrose). Heat-treated (38C for 90 minutes dark liquid Murashige-Skoog medium containing 30mM sucrose). Anoxia-treated (23C under anoxia for 6h dark liquid Murashige-Skoog medium containing 30mM sucrose). Combined heat+Anoxia-treatment (23C treated at 38C for 90 min and thereafter under anoxia for 6h dark liquid Murashige-Skoog medium containing 30mM sucrose). Two biological replicates for each condition.", "distribution": [{"@type": "dcat:Distribution", "description": "GeneLab Study Page", "downloadURL": "https://genelab-data.ndc.nasa.gov/genelab/accession/GLDS-282", "format": "HTML", "mediaType": "text/html", "title": "The Heat-Inducible Transcription Factor HsfA2 Enhances Anoxia Tolerance in Arabidopsis"}], "identifier": "nasa_genelab_GLDS-282_2uuk-psk4", "issued": "2021-05-21", "keyword": ["data-collection", "growth-protocol", "labeling", "normalization-data-transformation", "nucleic-acid-hybridization", "rna-extraction", "treatment", "treatment-protocol"], "landingPage": "https://data.nasa.gov/dataset/the-heat-inducible-transcription-factor-hsfa2-enhances-anoxia-tolerance-in-arabidopsis", "license": "http://www.usa.gov/publicdomain/label/1.0/", "modified": "2025-04-23", "programCode": ["026:005"], "publisher": {"@type": "org:Organization", "name": "National Aeronautics and Space Administration"}, "theme": ["Earth Science"], "title": "The Heat-Inducible Transcription Factor HsfA2 Enhances Anoxia Tolerance in Arabidopsis"}