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UMI-tools: modeling sequencing errors in Unique Molecular Identifiers to improve quantification accuracy

Genome Research · 2017 · Vol. 27(3) · pp. 491–499
Tom SmithAndreas HegerIan Sudbery

Abstract

Unique Molecular Identifiers (UMIs) are random oligonucleotide barcodes that are increasingly used in high-throughput sequencing experiments. Through a UMI, identical copies arising from distinct molecules can be distinguished from those arising through PCR amplification of the same molecule. However, bioinformatic methods to leverage the information from UMIs have yet to be formalized. In particular, sequencing errors in the UMI sequence are often ignored or else resolved in an ad hoc manner. We show that errors in the UMI sequence are common and introduce network-based methods to account for these errors when identifying PCR duplicates. Using these methods, we demonstrate improved quantification accuracy both under simulated conditions and real iCLIP and single-cell RNA-seq data sets. Reproducibility between iCLIP replicates and single-cell RNA-seq clustering are both improved using our proposed network-based method, demonstrating the value of properly accounting for errors in UMIs. These methods are implemented in the open source UMI-tools software package.

Single-cell and spatial transcriptomicsCancer Genomics and DiagnosticsGenomics and Phylogenetic StudiesIdentifierBiologyLeverage (statistics)Computational biologySoftwareComputer scienceData miningBioinformaticsArtificial intelligence

MeSH terms

HumansSoftwareSequence Analysis, DNA

Funding

  • Medical Research Council
Citations
2,284
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