    {"datasetrec":{"DasID":8116,"Acronym":null,"StandardTitle":"Supplementary information accompanying the paper \"Nematodes facilitate bacterial-mediated biogeochemical processes in marine sediments: a meta-transcriptomics approach\"","OrigTitle":null,"OrigTitleLangID":null,"OrigTitleLangCode":null,"OrigTitleLang":null,"OrigTitleLangNL":null,"VersionName":null,"ContactEmail":null,"VersionDate":null,"VersionDay":null,"VersionMonth":null,"VersionYear":null,"SizeReference":null,"EngAbstract":"This study used metatranscriptomics to investigate taxonomic and functional shifts in marine sediment bacterial communities in response to the addition of a nematode community.\r\nThe scripts and data in this repository are accompanying the paper \"Nematodes facilitate bacterial-mediated biogeochemical processes in marine sediments: a meta-transcriptomics approach\" by Rodgee Mae Guden, Annelies Haegeman, Tom Ruttink, Tom Moens and Sofie Derycke (Ghent University / ILVO, Belgium). The scripts are also available on <a href=\"https://gitlab.com/ahaegeman/Metatranscriptomics_marine_sediment\">Gitlab</a>, with an overview of the bioinformatics pipeline.","EngDescr":"Our study investigated the taxonomic and functional shifts in benthic bacterial communities in response to the addition of a nematode community using a metatranscriptomic approach. We created 10 microcosms comprising sediment and natural bacterial populations, and extracted RNA at the start of the experiment. Natural nematode communities from an intertidal mudflat were then added to five of the microcosms. After seven days of incubation, RNA was extracted from the microcosms to perform metatranscriptomics analysis to investigate the taxonomic and functional composition of the samples.","OrigAbstract":null,"OrigDescr":null,"Comments":null,"ReleaseDate":null,"ReleaseDate0":null,"OrigDescrLang":null,"EmbargoDate":null,"OrigDescrLangNL":null,"OrigLangCode":null,"OrigLangCodeExtended":null,"OrigLangID":null,"DescrCompFlag":0,"DescrTransFlag":0,"Citation":"Guden, R.M.E.; Haegeman, A.; Ruttink, T.; Moens, T.; Derycke, S.; Marine Biology Research Group - Ugent; Institute for Agricultural and Fisheries Research (ILVO): Belgium; (2022): Supplementary information accompanying the paper \"Nematodes facilitate bacterial-mediated biogeochemical processes in marine sediments: a meta-transcriptomics approach\". Marine Data Archive.","AccessConstraints":null,"UDate":"2022-09-15","CDate":"2022-09-13","CurrencyDate":null,"RevisionDate":null,"DateLastModified":{"date":"2026-04-14 01:43:53.753124","timezone_type":1,"timezone":"+02:00"},"CheckedFlag":0,"PublicFlag":1,"VlizCoreFlag":1,"MarineFlag":1,"FreshFlag":0,"BrackishFlag":0,"TerrestrialFlag":0,"StatusID":1,"DasType":"Data","DasTypeID":1,"DasOrigin":"Research","Progress":"Completed","AccessConstraint":"Attribution (CC BY)","AccConstrEN":"Attribution (CC BY)","AccConstrDisplay":"<a rel=\"license\" href=\"https://creativecommons.org/licenses/by/4.0/\" target=\"_blank\"><img alt=\"Creative Commons License\" style=\"border:0px;height:15px;width:80px;vertical-align:middle;\" src=\"https://www.marinespecies.org/aphia/images/cc/by.png\" /></a> This dataset is licensed under a <a rel=\"license\" href=\"https://creativecommons.org/licenses/by/4.0/\" target=\"_blank\">Creative Commons Attribution 4.0 International License</a>.","License":"https://creativecommons.org/licenses/by/4.0/","AccConstrDescription":"This license lets others distribute, remix, tweak, and build upon your work, even commercially, as long as they credit you for the original creation. This is the most accommodating of licenses offered. Recommended for maximum dissemination and use of licensed materials.","Lineage":null,"AccConID":21},"dois":[{"DOIID":732,"PublicationYear":2022,"DOI":"10.14284/575","Citation":"Guden, R.M.E.; Haegeman, A.; Ruttink, T.; Moens, T.; Derycke, S.; Marine Biology Research Group - Ugent; Institute for Agricultural and Fisheries Research (ILVO): Belgium; (2022): Supplementary information accompanying the paper \"Nematodes facilitate bacterial-mediated biogeochemical processes in marine sediments: a meta-transcriptomics approach\". 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