<HashMap><database>ENA</database><scores/><additional><omics_type>Genomics</omics_type><center_name>Center for Sustainable Resource Science, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences</center_name><full_dataset_link>https://www.ebi.ac.uk/ena/browser/view/PRJNA807524</full_dataset_link><scientific_name>Arabidopsis thaliana</scientific_name><long_description>To understand the role of SMAX1 and SMXL2 in water stress response, we have carried out comparative expression analysis of the smax1 smxl2 mutant and WT plants under dehydration and well-watered (control) conditions. Aligent's whole Arabidopsis Gene Expression Microarray (G2519F-021169, V4, 4x44K) was used. Overall design: Two-week-old WT and smax1 smxl2 mutant plants were transferred from GM plates to soil and grown for 10 additional day. The aerial parts of 24-d-old plants were detached and exposed to dehydration on KimTowel papers for 0 (well-watered, control), 2 and 4 h. All rosette leaves of independent 24-d-old plants were collected. Total RNA was prepared and used for the microarray hybridization. Three independent biological replicates were used for each plant sample.</long_description><tag>xref:PubMed:35681253</tag><repository>ENA</repository></additional><is_claimable>false</is_claimable><name>Comparative expression analysis of the Arabidopsis smax1 smxl2 under dehydration conditions</name><description>Comparative expression analysis of the Arabidopsis smax1 smxl2 under dehydration conditions</description><dates><last_updated>2025-09-24</last_updated><first_public>2022-10-07</first_public></dates><accession>PRJNA807524</accession><cross_references><GEO>GSE196838</GEO><taxon>3702</taxon><PubMed>35681253</PubMed></cross_references></HashMap>