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BBMerge – Accurate paired shotgun read merging via overlap

PLoS ONE · 2017 · Vol. 12(10) · pp. e0185056–e0185056
Brian BushnellJonathan RoodEsther Singer

Abstract

Merging paired-end shotgun reads generated on high-throughput sequencing platforms can substantially improve various subsequent bioinformatics processes, including genome assembly, binning, mapping, annotation, and clustering for taxonomic analysis. With the inexorable growth of sequence data volume and CPU core counts, the speed and scalability of read-processing tools becomes ever-more important. The accuracy of shotgun read merging is crucial as well, as errors introduced by incorrect merging percolate through to reduce the quality of downstream analysis. Thus, we designed a new tool to maximize accuracy and minimize processing time, allowing the use of read merging on larger datasets, and in analyses highly sensitive to errors. We present BBMerge, a new merging tool for paired-end shotgun sequence data. We benchmark BBMerge by comparison with eight other widely used merging tools, assessing speed, accuracy and scalability. Evaluations of both synthetic and real-world datasets demonstrate that BBMerge produces merged shotgun reads with greater accuracy and at higher speed than any existing merging tool examined. BBMerge also provides the ability to merge non-overlapping shotgun read pairs by using k-mer frequency information to assemble the unsequenced gap between reads, achieving a significantly higher merge rate while maintaining or increasing accuracy.

Genomics and Phylogenetic StudiesEnvironmental DNA in Biodiversity StudiesMolecular Biology Techniques and ApplicationsShotgun sequencingComputer scienceMerge (version control)ScalabilityShotgunData miningBenchmark (surveying)k-merSequence assemblyShotgun proteomics

MeSH terms

AlgorithmsComputational BiologyHigh-Throughput Nucleotide Sequencing

Funding

  • U.S. Department of Energy
  • Joint Genome Institute
  • Office of Science
Citations
1,639
FWCI
25.30
field-weighted impact
References
26
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100%
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