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Fast and accurate long-read alignment with Burrows–Wheeler transform

Bioinformatics · 2010 · Vol. 26(5) · pp. 589–595
Heng LiRichard Durbin

Abstract

Abstract Motivation: Many programs for aligning short sequencing reads to a reference genome have been developed in the last 2 years. Most of them are very efficient for short reads but inefficient or not applicable for reads >200 bp because the algorithms are heavily and specifically tuned for short queries with low sequencing error rate. However, some sequencing platforms already produce longer reads and others are expected to become available soon. For longer reads, hashing-based software such as BLAT and SSAHA2 remain the only choices. Nonetheless, these methods are substantially slower than short-read aligners in terms of aligned bases per unit time. Results: We designed and implemented a new algorithm, Burrows-Wheeler Aligner's Smith-Waterman Alignment (BWA-SW), to align long sequences up to 1 Mb against a large sequence database (e.g. the human genome) with a few gigabytes of memory. The algorithm is as accurate as SSAHA2, more accurate than BLAT, and is several to tens of times faster than both. Availability: http://bio-bwa.sourceforge.net Contact: [email protected]

Genomics and Phylogenetic StudiesAlgorithms and Data CompressionRNA and protein synthesis mechanismsComputer scienceSoftwareHash functionSanger sequencingHash tableSequence (biology)Reference genomeDNA sequencingOperating systemBiology

Funding

  • Wellcome Trust
Citations
12,695
FWCI
83.31
field-weighted impact
References
23
Percentile
100%
vs. same field & year
Citations per year
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PLoS Computational Biology · 2009 · 587 citations
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