• DocumentCode
    1809824
  • Title

    Workshop: Bioinformatics methods for reconstruction of Infectious Bronchitis Virus quasispecies from next generation sequencing data

  • Author

    O´Neill, Rachel ; Mandoiu, Ion ; Khan, Mazhar I. ; Obergfell, Craig ; Wang, Hongjun ; Bligh, Andrew ; Tork, Bassam ; Mancuso, Nicholas ; Zelikovsky, Alexander

  • Author_Institution
    Mol. & Cellular Biol. Dept., Univ. of Connecticut, Storrs, CT, USA
  • fYear
    2012
  • fDate
    23-25 Feb. 2012
  • Firstpage
    1
  • Lastpage
    1
  • Abstract
    Viral infections cause a significant burden on animal health, reducing yields and increasing production costs due to expensive control programs. Vaccination is a vital part of control programs; however, its effectiveness is reduced by the quick evolution of escape viral quasispecies in animal hosts. Existing techniques for studying quasispecies evolution and response to vaccines have severely limited sensitivity and often require prior knowledge of sequence polymorphisms. By generating millions of short reads per run, with no need for culture or cloning, next-generation sequencing (NGS) technologies enable comprehensive identification of viral quasispecies infecting an animal. However, analysis of NGS data is challenging due to the huge amount of data on one hand, and to the short read lengths and high error rates on another. As a consequence, many tools developed for Sanger reads do not work at all or have impractical runtimes when applied to NGS data. Even newly developed algorithms for de novo genome assembly from NGS data are tuned for reconstruction of haploid genomes, and work poorly when the sequenced sample contains a large number of closely related sequences, as is the case in viral quasispecies. To address these shortcomings we have developed computational methods for reconstructing quasispecies sequences and estimate their frequencies from both shotgun and amplicon NGS data. Preliminary analysis of 454 sequencing reads generated from synthetic pools of Infectious Bronchitis Virus (IBV) clones and field isolates collected at various intervals after vaccination with attenuated live IBV vaccine will be presented.
  • Keywords
    bioinformatics; cellular biophysics; diseases; microorganisms; polymorphism; bioinformatics methods; computational methods; control programs; de novo genome assembly; haploid genome reconstruction; high error rates; infectious bronchitis virus clones; infectious bronchitis virus quasispecies; next generation sequencing data; sequence polymorphisms; vaccines; viral infections; viral quasispecies; Animals; Bioinformatics; Cloning; Evolution (biology); Genomics; USA Councils; Vaccines; Infectious Bronchitis Virus; next generation sequencing; viral quasispecies reconstruction;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computational Advances in Bio and Medical Sciences (ICCABS), 2012 IEEE 2nd International Conference on
  • Conference_Location
    Las Vegas, NV
  • Print_ISBN
    978-1-4673-1320-9
  • Electronic_ISBN
    978-1-4673-1319-3
  • Type

    conf

  • DOI
    10.1109/ICCABS.2012.6182674
  • Filename
    6182674