Rice Galaxy: an open resource for plant science

dc.contributor.authorJuanillas, Venice
dc.contributor.authorDereeper, Alexis
dc.contributor.authorBeaume, Nicolas
dc.contributor.authorDroc, Gaetan
dc.contributor.authorDizon, Joshua
dc.contributor.authorMendoza, John Robert
dc.contributor.authorPerdon, Jon Peter
dc.contributor.authorMansueto, Locedie
dc.contributor.authorTriplett, Lindsay
dc.contributor.authorLang, Jillian
dc.contributor.authorZhou, Gabriel
dc.contributor.authorRatharanjan, Kunalan
dc.contributor.authorPlale, Beth A.
dc.contributor.authorHaga, Jason
dc.contributor.authorLeach, Jan
dc.contributor.authorRuiz, Manuel
dc.contributor.authorThomson, Michael
dc.contributor.authorAlexandrov, Nickolai
dc.contributor.authorLarmande, Pierre
dc.contributor.authorKretzchmar, Tobias
dc.contributor.authorMauleon, Ramil
dc.date.accessioned2025-02-20T16:40:55Z
dc.date.available2025-02-20T16:40:55Z
dc.date.issued2019-05-18
dc.description.abstractBackground: Rice molecular genetics, breeding, genetic diversity, and allied research (such as rice-pathogen interaction) have adopted sequencing technologies and high-density genotyping platforms for genome variation analysis and gene discovery. Germplasm collections representing rice diversity, improved varieties, and elite breeding materials are accessible through rice gene banks for use in research and breeding, with many having genome sequences and high-density genotype data available. Combining phenotypic and genotypic information on these accessions enables genome-wide association analysis, which is driving quantitative trait loci discovery and molecular marker development. Comparative sequence analyses across quantitative trait loci regions facilitate the discovery of novel alleles. Analyses involving DNA sequences and large genotyping matrices for thousands of samples, however, pose a challenge to non−computer savvy rice researchers. Findings: The Rice Galaxy resource has shared datasets that include high-density genotypes from the 3,000 Rice Genomes project and sequences with corresponding annotations from 9 published rice genomes. The Rice Galaxy web server and deployment installer includes tools for designing single-nucleotide polymorphism assays, analyzing genome-wide association studies, population diversity, rice−bacterial pathogen diagnostics, and a suite of published genomic prediction methods. A prototype Rice Galaxy compliant to Open Access, Open Data, and Findable, Accessible, Interoperable, and Reproducible principles is also presented. Conclusions: Rice Galaxy is a freely available resource that empowers the plant research community to perform state-of-the-art analyses and utilize publicly available big datasets for both fundamental and applied science.
dc.identifier.citationJuanillas, Venice, et al. "Rice Galaxy: an open resource for plant science." GigaScience, vol. 8, no. 12, 2019-05-18, https://doi.org/10.1093/gigascience/giz028.
dc.identifier.issn2047-217X
dc.identifier.otherBRITE 6501
dc.identifier.urihttps://hdl.handle.net/2022/31946
dc.language.isoen
dc.relation.isversionofhttps://doi.org/10.1093/gigascience/giz028
dc.relation.isversionofhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC6527052
dc.relation.isversionofhttps://www.biorxiv.org/content/10.1101/358754v1
dc.relation.journalGigaScience
dc.rightsThis work may be protected by copyright unless otherwise stated.
dc.titleRice Galaxy: an open resource for plant science

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