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Crosby, Madeline

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Crosby

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Madeline

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Crosby, Madeline

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Now showing 1 - 5 of 5
  • Publication

    Gene Model Annotations for Drosophila melanogaster: Impact of High-Throughput Data

    (Genetics Society of America, 2015) Matthews, Beverley; dos Santos, Gilberto; Crosby, Madeline; Emmert, David; St. Pierre, Susan E.; Gramates, L. Sian; Zhou, Pinglei; Schroeder, Andrew; Falls, Kathleen; Strelets, Victor; Russo, Susan M.; Gelbart, William M.

    We report the current status of the FlyBase annotated gene set for Drosophila melanogaster and highlight improvements based on high-throughput data. The FlyBase annotated gene set consists entirely of manually annotated gene models, with the exception of some classes of small non-coding RNAs. All gene models have been reviewed using evidence from high-throughput datasets, primarily from the modENCODE project. These datasets include RNA-Seq coverage data, RNA-Seq junction data, transcription start site profiles, and translation stop-codon read-through predictions. New annotation guidelines were developed to take into account the use of the high-throughput data. We describe how this flood of new data was incorporated into thousands of new and revised annotations. FlyBase has adopted a philosophy of excluding low-confidence and low-frequency data from gene model annotations; we also do not attempt to represent all possible permutations for complex and modularly organized genes. This has allowed us to produce a high-confidence, manageable gene annotation dataset that is available at FlyBase (http://flybase.org). Interesting aspects of new annotations include new genes (coding, non-coding, and antisense), many genes with alternative transcripts with very long 3′ UTRs (up to 15–18 kb), and a stunning mismatch in the number of male-specific genes (approximately 13% of all annotated gene models) vs. female-specific genes (less than 1%). The number of identified pseudogenes and mutations in the sequenced strain also increased significantly. We discuss remaining challenges, for instance, identification of functional small polypeptides and detection of alternative translation starts.

  • Publication

    Gene Model Annotations for Drosophila melanogaster: The Rule-Benders

    (Genetics Society of America, 2015) Crosby, Madeline; Gramates, L. Sian; dos Santos, Gilberto; Matthews, Beverley; St. Pierre, Susan E.; Zhou, Pinglei; Schroeder, Andrew; Falls, Kathleen; Emmert, David; Russo, Susan M.; Gelbart, William M.

    In the context of the FlyBase annotated gene models in Drosophila melanogaster, we describe the many exceptional cases we have curated from the literature or identified in the course of FlyBase analysis. These range from atypical but common examples such as dicistronic and polycistronic transcripts, noncanonical splices, trans-spliced transcripts, noncanonical translation starts, and stop-codon readthroughs, to single exceptional cases such as ribosomal frameshifting and HAC1-type intron processing. In FlyBase, exceptional genes and transcripts are flagged with Sequence Ontology terms and/or standardized comments. Because some of the rule-benders create problems for handlers of high-throughput data, we discuss plans for flagging these cases in bulk data downloads.

  • Publication

    Apollo: A Sequence Annotation Editor

    (BioMed Central, 2002) Lewis, SE; Searle, SMJ; Iyer, V; Wiel, C; Bayraktaroglu, L; Birney, E; Kaminker, JS; Prochnik, SE; Smith, CD; Tupy, JL; Rubin, GM; Mungall, CJ; Clamp, ME; Harris, N; Gibson, M; Richter, J; Crosby, Madeline; Matthews, Beverley; Misra, S

    The well-established inaccuracy of purely computational methods for annotating genome sequences necessitates an interactive tool to allow biological experts to refine these approximations by viewing and independently evaluating the data supporting each annotation. Apollo was developed to meet this need, enabling curators to inspect genome annotations closely and edit them. FlyBase biologists successfully used Apollo to annotate the Drosophila melanogaster genome and it is increasingly being used as a starting point for the development of customized annotation editing tools for other genome projects.

  • Publication

    Annotation of the Drosophila Melanogaster Euchromatic Genome: A Systematic Review

    (BioMed Central, 2002) Misra, Sima; Mungall, Christopher J; Campbell, Kathryn S; Hradecky, Pavel; Huang, Yanmei; Kaminker, Joshua S; Millburn, Gillian H; Prochnik, Simon E; Tupy, Jonathan L; Whitfield, Eleanor J; Bayraktaroglu, Leyla; Bettencourt, Brian R; Celniker, Susan E; de Grey, Aubrey DNJ; Drysdale, Rachel A; Harris, Nomi L; Richter, John; Shu, ShengQiang; Stapleton, Mark; Yamada, Chihiro; Ashburner, Michael; Rubin, Gerald M; Lewis, Suzanna E; Crosby, Madeline; Matthews, Beverley; Smith, Christopher D; Berman, Benjamin P; Russo, Susan; Schroeder, Andrew; Gelbart, William Martin

    The recent completion of the Drosophila melanogaster genomic sequence to high quality, and the availability of a greatly expanded set of Drosophila cDNA sequences, afforded FlyBase the opportunity to significantly improve genomic annotations.

  • Publication

    FlyBase: genomes by the dozen

    (Oxford University Press, 2006) Crosby, Madeline; Goodman, Joshua L.; Strelets, Victor B.; Zhang, Peili; Gelbart, William Martin; The FlyBase Consortium

    FlyBase (http://flybase.org/) is the primary database of genetic and genomic data for the insect family Drosophilidae. Historically, Drosophila melanogaster has been the most extensively studied species in this family, but recent determination of the genomic sequences of an additional 11 Drosophila species opens up new avenues of research for other Drosophila species. This extensive sequence resource, encompassing species with well-defined phylogenetic relationships, provides a model system for comparative genomic analyses. FlyBase has developed tools to facilitate access to and navigation through this invaluable new data collection.