FLASH: fast length adjustment of short reads to improve genome assemblies
- PMID: 21903629
- PMCID: PMC3198573
- DOI: 10.1093/bioinformatics/btr507 (VSports在线直播)
FLASH: fast length adjustment of short reads to improve genome assemblies
Abstract
Motivation: Next-generation sequencing technologies generate very large numbers of short reads. Even with very deep genome coverage, short read lengths cause problems in de novo assemblies. The use of paired-end libraries with a fragment size shorter than twice the read length provides an opportunity to generate much longer reads by overlapping and merging read pairs before assembling a genome. VSports手机版.
Results: We present FLASH, a fast computational tool to extend the length of short reads by overlapping paired-end reads from fragment libraries that are sufficiently short. We tested the correctness of the tool on one million simulated read pairs, and we then applied it as a pre-processor for genome assemblies of Illumina reads from the bacterium Staphylococcus aureus and human chromosome 14. FLASH correctly extended and merged reads >99% of the time on simulated reads with an error rate of <1% V体育安卓版. With adequately set parameters, FLASH correctly merged reads over 90% of the time even when the reads contained up to 5% errors. When FLASH was used to extend reads prior to assembly, the resulting assemblies had substantially greater N50 lengths for both contigs and scaffolds. .
Availability and implementation: The FLASH system is implemented in C and is freely available as open-source code at http://www. cbcb V体育ios版. umd. edu/software/flash. .
Contact: t.magoc@qiuluzeuv.cn. VSports最新版本.
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- Gnerre S, et al. High-quality draft assemblies of mammalian genomes from massively parallel sequence data. Proc. Natl Acad. Sci. USA. 2011;108:1513–1518. - "V体育官网" PMC - PubMed
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- Langmead B, et al. Ultrafast and memory efficient alignment of short DNA sequences to the human genome. Genome Biol. 2009;10:R25. - V体育官网 - PMC - PubMed
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