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Towards a unified paradigm for sequence‐based identification of fungi

Molecular Ecology · 2013 · Vol. 22(21) · pp. 5271–5277
Urmas KõljalgR. Henrik NilssonKessy AbarenkovLeho TedersooAndy F. S. TaylorMohammad BahramScott T. BatesThomas D. BrunsJohan Bengtsson‐PalmeTony M. CallaghanBrian DouglasTiia DrenkhanUrsula EberhardtMargarita DueñasTine GrebencGareth GriffithMartin HartmannPaul M. KirkPetr KohoutEllen LarssonBjörn D. LindahlRobert LückingMaría P. MartínP. Brandon MathenyNhu NguyenTuula NiskanenJane OjaKabir PeayUrsula PeintnerMarko PetersonKadri PõldmaaLauri SaagIrja SaarArthur SchüßlerJames A. ScottCarolina Senés‐GuerreroMatthew E. SmithAve SuijaD. Lee TaylorM. Teresa TelleríaMichael WeißKarl‐Henrik Larsson

Abstract

The nuclear ribosomal internal transcribed spacer (ITS) region is the formal fungal barcode and in most cases the marker of choice for the exploration of fungal diversity in environmental samples. Two problems are particularly acute in the pursuit of satisfactory taxonomic assignment of newly generated ITS sequences: (i) the lack of an inclusive, reliable public reference data set and (ii) the lack of means to refer to fungal species, for which no Latin name is available in a standardized stable way. Here, we report on progress in these regards through further development of the UNITE database (http://unite.ut.ee) for molecular identification of fungi. All fungal species represented by at least two ITS sequences in the international nucleotide sequence databases are now given a unique, stable name of the accession number type (e.g. Hymenoscyphus pseudoalbidus|GU586904|SH133781.05FU), and their taxonomic and ecological annotations were corrected as far as possible through a distributed, third-party annotation effort. We introduce the term 'species hypothesis' (SH) for the taxa discovered in clustering on different similarity thresholds (97-99%). An automatically or manually designated sequence is chosen to represent each such SH. These reference sequences are released (http://unite.ut.ee/repository.php) for use by the scientific community in, for example, local sequence similarity searches and in the QIIME pipeline. The system and the data will be updated automatically as the number of public fungal ITS sequences grows. We invite everybody in the position to improve the annotation or metadata associated with their particular fungal lineages of expertise to do so through the new Web-based sequence management system in UNITE.

Plant Pathogens and Fungal DiseasesMycorrhizal Fungi and Plant InteractionsLichen and fungal ecologyBiologyAnnotationMetadataIdentification (biology)Internal transcribed spacerGenBankTaxonComputational biologyInformation retrievalPhylogenetic tree

MeSH terms

DNA, FungalFungiPhylogenyInternetDNA, Ribosomal SpacerDatabases, Nucleic AcidDNA Barcoding, Taxonomic

Funding

  • Eesti Teadusagentuur
Citations
3,596
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67.81
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32
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References
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Systematic Biology · 1964 · 1,054 citations
Nuclear ribosomal internal transcribed spacer (ITS) region as a universal DNA barcode marker for <i>Fungi</i>
Proceedings of the National Academy of Sciences · 2012 · 4,986 citations
Defining operational taxonomic units using DNA barcode data
Philosophical Transactions of the Royal Society B Biological Sciences · 2005 · 906 citations
The Fungi: 1, 2, 3 … 5.1 million species?
American Journal of Botany · 2011 · 1,276 citations
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