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Software for Computing and Annotating Genomic Ranges

PLoS Computational Biology · 2013 · Vol. 9(8) · pp. e1003118–e1003118
Michael LawrenceWolfgang HuberHervé PagèsPatrick AboyounMarc CarlsonRobert GentlemanMartin MorganVincent J. Carey

Abstract

We describe Bioconductor infrastructure for representing and computing on annotated genomic ranges and integrating genomic data with the statistical computing features of R and its extensions. At the core of the infrastructure are three packages: IRanges, GenomicRanges, and GenomicFeatures. These packages provide scalable data structures for representing annotated ranges on the genome, with special support for transcript structures, read alignments and coverage vectors. Computational facilities include efficient algorithms for overlap and nearest neighbor detection, coverage calculation and other range operations. This infrastructure directly supports more than 80 other Bioconductor packages, including those for sequence analysis, differential expression analysis and visualization.

Genomics and Phylogenetic StudiesGene expression and cancer classificationGenomics and Chromatin DynamicsBioconductorComputer scienceScalabilitySoftwareVisualizationComputational statisticsSequence alignmentData miningGenomeComputational genomics

MeSH terms

AlgorithmsAnimalsHumansSoftwareSequence AlignmentSequence Analysis, DNAGenomicsDatabases, GeneticMice

Funding

  • National Institutes of Health
Citations
4,854
FWCI
44.25
field-weighted impact
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11
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100%
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