<HashMap><database>MetabolomicsWorkbench</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Other>http://www.metabolomicsworkbench.org/rest/study/study_id/ST001316/mwtab</Other></files><type>primary</type></body><statusCodeValue>200</statusCodeValue><statusCode>OK</statusCode></file_versions><scores/><additional><omics_type>Metabolomics</omics_type><technology_type>EI</technology_type><technology_type>Mass Spectrometry</technology_type><species>Nannochloropsis Gaditana</species><full_dataset_link>http://www.metabolomicsworkbench.org/data/DRCCMetadata.php?Mode=Study&amp;StudyID=ST001316</full_dataset_link><study_factor>Condition:Control</study_factor><study_factor>Condition:Treatment</study_factor><tissue>Algae</tissue><submitter_affiliation>International Centre for Genetic Engineering and Biotechnology</submitter_affiliation><sample_protocol>GC POSITIVE ION MODE.</sample_protocol><repository>MetabolomicsWorkbench</repository><metabolite_name>Sorbitol</metabolite_name><metabolite_name>Benzoic acid</metabolite_name><metabolite_name>D-Glucose</metabolite_name><metabolite_name>D-Fructose</metabolite_name><metabolite_name>Sucrose</metabolite_name><metabolite_name>Glyceryl glucoside</metabolite_name><metabolite_name>Arachidic acid</metabolite_name><metabolite_name>Ergostene</metabolite_name><metabolite_name>Hydroxybutyric acid</metabolite_name><metabolite_name>Palmitic acid</metabolite_name><metabolite_name>Glycine</metabolite_name><metabolite_name>D-Mannose</metabolite_name><metabolite_name>Docosanoic acid</metabolite_name><metabolite_name>L-Threonine</metabolite_name><metabolite_name>L-Alanine</metabolite_name><metabolite_name>Thiourea</metabolite_name><metabolite_name>Prenol phosphate</metabolite_name><metabolite_name>Stearic acid</metabolite_name><metabolite_name>Alpha-tocopherol</metabolite_name><metabolite_name>Dibenzoxepine</metabolite_name><metabolite_name>D-Galactose</metabolite_name><metabolite_name>L-Leucine</metabolite_name><metabolite_name>Dihydroquinazoline</metabolite_name><metabolite_name>Ethanolamine</metabolite_name><metabolite_name>Hexadecanedioic acid</metabolite_name><metabolite_name>Myo-inositol</metabolite_name><metabolite_name>Phytol</metabolite_name><metabolite_name>Propionic acid</metabolite_name><metabolite_name>Succinate</metabolite_name><metabolite_name>Glycerol</metabolite_name><metabolite_name>Maltose</metabolite_name><metabolite_name>Acetate</metabolite_name><metabolite_name>Linoleic acid</metabolite_name><metabolite_name>L-Proline</metabolite_name><metabolite_name>Oxalic acid</metabolite_name><metabolite_name>D-Trehalose</metabolite_name><metabolite_name>ALA</metabolite_name><metabolite_name>GABA</metabolite_name><metabolite_name>D-Lactic acid</metabolite_name><metabolite_name>L-Valine</metabolite_name><data_protocol></data_protocol><name_synonyms>Longterm Effect, Cell., Long-Term Effect, Experiment, Long-Term, Effect, Effects, Longterm, Long-Term Effects, Long Term, Longterm Effects, Long Term Effects</name_synonyms><sample_synonyms>iones., Ionen, ion, Ion, ions</sample_synonyms></additional><is_claimable>false</is_claimable><name>Time-course experiment of Microchloropsis gaditana cells supplemented with CO2</name><description/><dates><publication></publication></dates><accession>ST001316</accession><cross_references><TAXONOMY>72520</TAXONOMY></cross_references></HashMap>