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Haplotype-aware diplotyping from noisy long reads.

Jana EblerMarina HauknessTrevor PesoutTobias MarschallBenedict Paten
Published in: Genome biology (2019)
Current genotyping approaches for single-nucleotide variations rely on short, accurate reads from second-generation sequencing devices. Presently, third-generation sequencing platforms are rapidly becoming more widespread, yet approaches for leveraging their long but error-prone reads for genotyping are lacking. Here, we introduce a novel statistical framework for the joint inference of haplotypes and genotypes from noisy long reads, which we term diplotyping. Our technique takes full advantage of linkage information provided by long reads. We validate hundreds of thousands of candidate variants that have not yet been included in the high-confidence reference set of the Genome-in-a-Bottle effort.
Keyphrases
  • genome wide
  • single cell
  • high throughput
  • dna methylation
  • preterm infants
  • high resolution
  • copy number
  • health information
  • social media
  • hepatitis c virus