article Open AccessTop 1% cited
Toward almost closed genomes with GapFiller
Genome biology · 2012 · Vol. 13(6) · pp. R56–R56
Marten Boetzer✉(Bioclear Earth (Netherlands))Walter Pirovano(Bioclear Earth (Netherlands))
Abstract
De novo assembly is a commonly used application of next-generation sequencing experiments. The ultimate goal is to puzzle millions of reads into one complete genome, although draft assemblies usually result in a number of gapped scaffold sequences. In this paper we propose an automated strategy, called GapFiller, to reliably close gaps within scaffolds using paired reads. The method shows good results on both bacterial and eukaryotic datasets, allowing only few errors. As a consequence, the amount of additional wetlab work needed to close a genome is drastically reduced. The software is available at http://www.baseclear.com/bioinformatics-tools/.
Chromosomal and Genetic VariationsGenomics and Phylogenetic StudiesCRISPR and Genetic EngineeringBiologyGenome BiologyHuman geneticsComputational genomicsGenomeEvolutionary biologyComputational biologyGeneticsGenomicsGene
MeSH terms
AlgorithmsChromosomes, Human, Pair 14Escherichia coliHumansSaccharomyces cerevisiaeSoftwareReproducibility of ResultsGenomic LibraryGenome, HumanGenome, BacterialGenome, FungalComputational BiologyInternetGenomicsINDEL Mutation
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References
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Genome Research · 2009 · 3,741 citations
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Bioinformatics · 2009 · 66,208 citations
Ultrafast and memory-efficient alignment of short DNA sequences to the human genome
Genome biology · 2009 · 22,766 citations
Velvet: Algorithms for de novo short read assembly using de Bruijn graphs
Genome Research · 2008 · 9,674 citations
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