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September 19, 2012BMC Bioinformatics1,364 citationsOpen Access

Mapping single molecule sequencing reads using basic local alignment with successive refinement (BLASR): application and theory

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Mark Chaisson
Mark ChaissonUniversity of Southern California
GTGlenn TeslerUniversity of California, San Diego

Key Points

  • The aim is to develop a method for accurate mapping of long single molecule sequencing reads, addressing challenges in existing alignment methods.
  • Developed Basic Local Alignment with Successive Refinement (BLASR) for mapping SMS reads.
  • Benchmarking performed using simulated reads and a bacterial sequencing project.
  • Introduced a combinatorial model to explain the effectiveness of the alignment approach.
  • BLASR achieved high accuracy and speed in mapping SMS reads.
  • Mapping accuracy on simulated reads validated the model of sequencing error.
  • Inferences on mapability aligned with observed mapping performance.

Abstract

BACKGROUND: Recent methods have been developed to perform high-throughput sequencing of DNA by Single Molecule Sequencing (SMS). While Next-Generation sequencing methods may produce reads up to several hundred bases long, SMS sequencing produces reads up to tens of kilobases long. Existing alignment methods are either too inefficient for high-throughput datasets, or not sensitive enough to align SMS reads, which have a higher error rate than Next-Generation sequencing. RESULTS: We describe the method BLASR (Basic Local Alignment with Successive Refinement) for mapping Single Molecule Sequencing (SMS) reads that are thousands of bases long, with divergence between the read and genome dominated by insertion and deletion error. The method is benchmarked using both simulated reads and reads from a bacterial sequencing project. We also present a combinatorial model of sequencing error that motivates why our approach is effective. CONCLUSIONS: The results indicate that it is possible to map SMS reads with high accuracy and speed. Furthermore, the inferences made on the mapability of SMS reads using our combinatorial model of sequencing error are in agreement with the mapping accuracy demonstrated on simulated reads.

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Cite This Study

Chaisson et al. (2012) studied this question.

synapsesocial.com/papers/6a01cd1b4e84148937d8b226https://doi.org/10.1186/1471-2105-13-238
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