Abstract
Next-generation sequencing technologies are revolutionizing biology by allowing for genome-wide transcription factor binding-site profiling, transcriptome sequencing, and more recently, whole-genome resequencing. While it is currently not possible to generate complete de novo assemblies of higher-vertebrate genomes using next-generation sequencing, improvements in sequence read lengths and throughput, coupled with new assembly algorithms for large data sets, will soon make this a reality. These developments will in turn spawn a revolution in how genomic data are used to understand genetics and how model organisms are used for disease gene discovery. This review provides an overview of the current next-generation sequencing platforms and the newest computational tools for the analysis of next-generation sequencing data. We also describe how next-generation sequencing may be applied in the context of vertebrate model organism genetics. © 2009 Springer Science+Business Media, LLC.
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CITATION STYLE
Turner, D. J., Keane, T. M., Sudbery, I., & Adams, D. J. (2009). Next-generation sequencing of vertebrate experimental organisms. Mammalian Genome. Springer New York. https://doi.org/10.1007/s00335-009-9187-4
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