Kuhn, Jens H.Andersen, Kristian GBào, YīmíngBavari, SinaBecker, StephanBennett, Richard S.Bergman, Nicholas H.Blinkova, OlgaBradfute, StevenBrister, J. RodneyBukreyev, AlexanderChandran, KartikChepurnov, Alexander A.Davey, Robert A.Dietzgen, Ralf G.Doggett, Norman A.Dolnik, OlgaDye, John M.Enterlein, SvenFenimore, Paul W.Formenty, PierreFreiberg, Alexander N.Garry, Robert F.Garza, Nicole L.Gire, Stephen K.Gonzalez, Jean-PaulGriffiths, AnthonyHappi, Christian T.Hensley, Lisa E.Herbert, Andrew S.Hevey, Michael C.Hoenen, ThomasHonko, Anna N.Ignatyev, Georgy M.Jahrling, Peter B.Johnson, Joshua C.Johnson, Karl M.Kindrachuk, JasonKlenk, Hans-DieterKobinger, GaryKochel, Tadeusz J.Lackemeyer, Matthew G.Lackner, Daniel F.Leroy, Eric M.Lever, Mark S.Mühlberger, ElkeNetesov, Sergey V.Olinger, Gene G.Omilabu, Sunday A.Palacios, GustavoPanchal, Rekha G.Park, Daniel J.Patterson, Jean L.Paweska, Janusz T.Peters, Clarence J.Pettitt, JamesPitt, LouiseRadoshitzky, Sheli R.Ryabchikova, Elena I.Saphire, Erica OllmannSabeti, PardisSealfon, RachelShestopalov, Aleksandr M.Smither, Sophie J.Sullivan, Nancy J.Swanepoel, RobertTakada, AyatoTowner, Jonathan S.van der Groen, GuidoVolchkov, Viktor E.Volchkova, Valentina A.Wahl-Jensen, VictoriaWarren, Travis K.Warfield, Kelly L.Weidmann, ManfredNichol, Stuart T.2014-11-032014Kuhn, J. H., K. G. Andersen, Y. Bào, S. Bavari, S. Becker, R. S. Bennett, N. H. Bergman, et al. 2014. “Filovirus RefSeq Entries: Evaluation and Selection of Filovirus Type Variants, Type Sequences, and Names.” Viruses 6 (9): 3663-3682. doi:10.3390/v6093663. http://dx.doi.org/10.3390/v6093663.1999-4915http://nrs.harvard.edu/urn-3:HUL.InstRepos:13347410Sequence determination of complete or coding-complete genomes of viruses is becoming common practice for supporting the work of epidemiologists, ecologists, virologists, and taxonomists. Sequencing duration and costs are rapidly decreasing, sequencing hardware is under modification for use by non-experts, and software is constantly being improved to simplify sequence data management and analysis. Thus, analysis of virus disease outbreaks on the molecular level is now feasible, including characterization of the evolution of individual virus populations in single patients over time. The increasing accumulation of sequencing data creates a management problem for the curators of commonly used sequence databases and an entry retrieval problem for end users. Therefore, utilizing the data to their fullest potential will require setting nomenclature and annotation standards for virus isolates and associated genomic sequences. The National Center for Biotechnology Information’s (NCBI’s) RefSeq is a non-redundant, curated database for reference (or type) nucleotide sequence records that supplies source data to numerous other databases. Building on recently proposed templates for filovirus variant naming [<virus name> (<strain>)/<isolation host-suffix>/<country of sampling>/<year of sampling>/<genetic variant designation>-<isolate designation>], we report consensus decisions from a majority of past and currently active filovirus experts on the eight filovirus type variants and isolates to be represented in RefSeq, their final designations, and their associated sequences.en-USBundibugyo viruscDNA clonecuevavirusEbolaEbola virusebolavirusfiloviridfilovirusgenome annotationICTVInternational Committee on Taxonomy of VirusesLloviu virusMarburg virusmarburgvirusmononegaviradmononegavirusRavn virusRefSeqReston virusreverse geneticsSudan virusTaï Forest virusvirus classificationvirus isolatevirus nomenclaturevirus strainvirus taxonomyvirus variantFilovirus RefSeq Entries: Evaluation and Selection of Filovirus Type Variants, Type Sequences, and NamesJournal Article2014-11-0310.3390/v6093663