<HashMap><database>GEO</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Other>ftp://ftp.ncbi.nlm.nih.gov/geo/series/GSE331nnn/GSE331093/</Other></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Transcriptomics</omics_type><species>Cucumis sativus</species><gds_type>Expression profiling by array</gds_type><full_dataset_link>https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE331093</full_dataset_link><repository>GEO</repository><entry_type>GSE</entry_type></additional><is_claimable>false</is_claimable><name>Transcriptional insights into Azospirillum brasilense-driven iron acquisition in cucumber under contrasting Fe regimes</name><description>Azospirillum brasilense was used to enhance Fe acquisition in cucumber (Cucumis sativus) grown under Fe-sufficient and Fe-deficient conditions. Through a combined physiological and transcriptomic analysis comparing inoculated and non-inoculated plants across both Fe regimes, genes and pathways specifically modulated by bacterial interaction were identified, revealing a Fe-status-dependent reprogramming of plant metabolism and nutrient acquisition strategies.</description><dates><publication>2026/09/09</publication></dates><accession>GSE331093</accession><cross_references><GSM>GSM9738819</GSM><GSM>GSM9738818</GSM><GSM>GSM9738817</GSM><GSM>GSM9738816</GSM><GSM>GSM9738827</GSM><GSM>GSM9738826</GSM><GSM>GSM9738825</GSM><GSM>GSM9738824</GSM><GSM>GSM9738823</GSM><GSM>GSM9738822</GSM><GSM>GSM9738821</GSM><GSM>GSM9738820</GSM><GPL>36962</GPL><GSE>331093</GSE><taxon>Cucumis sativus</taxon><PMID>[42694121]</PMID></cross_references></HashMap>