VIRAL QUASISPECIES RECONSTRUCTION USING NEXT GENERATION SEQUENCING READS

The genomic diversity of viral quasispecies is a subject of great interest, especially for chronic infections. Characterization of viral diversity can be addressed by high-throughput sequencing technology (454 Life Sciences, Illumina, SOLiD, Ion Torrent, etc.). Standard assembly software was origina...

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Bibliographic Details
Main Author: Tork, Bassam A
Format: Others
Published: Digital Archive @ GSU 2013
Subjects:
Online Access:http://digitalarchive.gsu.edu/cs_diss/77
http://digitalarchive.gsu.edu/cgi/viewcontent.cgi?article=1078&context=cs_diss
Description
Summary:The genomic diversity of viral quasispecies is a subject of great interest, especially for chronic infections. Characterization of viral diversity can be addressed by high-throughput sequencing technology (454 Life Sciences, Illumina, SOLiD, Ion Torrent, etc.). Standard assembly software was originally designed for single genome assembly and cannot be used to assemble and estimate the frequency of closely related quasispecies sequences. This work focuses on parsimonious and maximum likelihood models for assembling viral quasispecies and estimating their frequencies from 454 sequencing data. Our methods have been applied to several RNA viruses (HCV, IBV) as well as DNA viruses (HBV), genotyped using 454 Life Sciences amplicon and shotgun methods.