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RNAmmer: consistent and rapid annotation of ribosomal RNA genes

Nucleic Acids Research · 2007 · Vol. 35(9) · pp. 3100–3108
Karin LagesenPeter F. HallinEinar Andreas RødlandHans-Henrik StærfeldtTorbjørn RognesDavid W. Ussery

Abstract

The publication of a complete genome sequence is usually accompanied by annotations of its genes. In contrast to protein coding genes, genes for ribosomal RNA (rRNA) are often poorly or inconsistently annotated. This makes comparative studies based on rRNA genes difficult. We have therefore created computational predictors for the major rRNA species from all kingdoms of life and compiled them into a program called RNAmmer. The program uses hidden Markov models trained on data from the 5S ribosomal RNA database and the European ribosomal RNA database project. A pre-screening step makes the method fast with little loss of sensitivity, enabling the analysis of a complete bacterial genome in less than a minute. Results from running RNAmmer on a large set of genomes indicate that the location of rRNAs can be predicted with a very high level of accuracy. Novel, unannotated rRNAs are also predicted in many genomes. The software as well as the genome analysis results are available at the CBS web server.

RNA and protein synthesis mechanismsGenomics and Phylogenetic StudiesRNA modifications and cancerBiologyRibosomal RNAGenomeGeneticsGeneComputational biologyRNAGene predictionAnnotationGene Annotation

MeSH terms

Markov ChainsSoftwareGenome, BacterialComputational BiologyGenes, rRNAGenomics

Funding

  • European Commission
  • Universitetet i Oslo
  • Norges Forskningsråd
Citations
6,242
FWCI
11.93
field-weighted impact
References
30
Percentile
99%
vs. same field & year
Citations per year
References
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Bioinformatics · 1998 · 5,777 citations
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