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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 · Vol. 109(16) · pp. 6241–6246
Conrad L. SchochKeith A. SeifertSabine M. HuhndorfVincent RobertJohn L. SpougeC. André LévesqueWen ChenElena BolchacovaKerstin VoigtP.W. CrousAndrew N. MillerMichael J. WingfieldM. Catherine AimeKwang-Deuk AnFeng‐Yan BaiRobert W. BarretoDominik BegerowMarie‐Josée BergeronMeredith BlackwellTeun BoekhoutMesfin BogaleNattawut BoonyuenAna Rosa BurgazBart BuyckLei CaiQing CaiGianluigi CardinaliPriscila ChaverríB. J. CoppinsAna CrespoPilar CubasCraig CummingsUlrike DammZ. Wilhelm de BeerSybren de HoogRuth Del‐PradoBryn T. M. DentingerJavier Diéguez‐UribeondoPradeep K. DivakarBrian DouglasMargarita DueñasTuan A. DuongUrsula EberhardtJoan E. EdwardsMostafa S. ElshahedK. FliegerováManohar R. FurtadoMiguel A. Garcı́aZai-Wei GeGareth GriffithKate GriffithsJ.Z. GroenewaldMarizeth GroenewaldMartín GrubeMarieka GryzenhoutLiang‐Dong GuoFerry HagenSarah HambletonRichard C. HamelinKaren HansenPaul HarroldGregory HellerCesar S. HerreraKazuyuki HirayamaYuuri HirookaHsiao-Man HoKerstin HoffmannValérie HofstetterFilip HögnabbaPeter M. HollingsworthSeung‐Beom HongKentaro HosakaJos HoubrakenKaren W. HughesSeppo HuhtinenKevin D. HydeTimothy Y. JamesEric M. JohnsonJoan E. JohnsonPeter R. JohnstonE. B. Gareth JonesLaura J. KellyPaul M. KirkDániel G. KnappUrmas KõljalgGábor M. KovácsCletus P. KurtzmanSara LandvikSteven D. LeavittAudra S. LiggenstofferKare LiimatainenLorenzo LombardJanet Jennifer Luangsa-ardH. Thorsten LumbschHarinad B. MagantiSajeewa S. N. MaharachchikumburaMaría P. MartínTom W. MayAlistair R. McTaggartAndrew S. MethvenWieland MeyerJean‐Marc MoncalvoSuchada MongkolsamritLászló G. NagyR. Henrik NilssonTuula NiskanenIldikó NyilasiGen OkadaIzumi OkaneIbai OlariagaJürgen OtteTamás PappDuckchul ParkTamás PetkovitsRaquel Pino‐BodasWilliam QuaedvliegHuzefa A. RajaDirk RedeckerTara L. RintoulConstantino RuibalJullie M. Sarmiento-RamírezImke SchmittArthur SchüßlerCarol A. ShearerKozue SotomeFranck StefaniSoili StenroosJ. Benjamin StielowHerbert StockingerSatinee SuetrongSung‐Oui SuhGi‐Ho SungMotofumi SuzukiKazuaki TanakaLeho TedersooM. Teresa TelleríaEric D. TretterWendy A. UntereinerHéctor UrbinaCsaba VágvölgyiAgathe VialleThuy Duong VuGrit WaltherQiming WangYan WangBevan WeirMichael WeißMerlin M. WhiteJianping XuRebecca YahrZhu L. YangAndrey YurkovJuan Carlos ZamoraNing ZhangWen-Ying ZhuangDavid E. Schindel

Abstract

Six DNA regions were evaluated as potential DNA barcodes for Fungi, the second largest kingdom of eukaryotic life, by a multinational, multilaboratory consortium. The region of the mitochondrial cytochrome c oxidase subunit 1 used as the animal barcode was excluded as a potential marker, because it is difficult to amplify in fungi, often includes large introns, and can be insufficiently variable. Three subunits from the nuclear ribosomal RNA cistron were compared together with regions of three representative protein-coding genes (largest subunit of RNA polymerase II, second largest subunit of RNA polymerase II, and minichromosome maintenance protein). Although the protein-coding gene regions often had a higher percent of correct identification compared with ribosomal markers, low PCR amplification and sequencing success eliminated them as candidates for a universal fungal barcode. Among the regions of the ribosomal cistron, the internal transcribed spacer (ITS) region has the highest probability of successful identification for the broadest range of fungi, with the most clearly defined barcode gap between inter- and intraspecific variation. The nuclear ribosomal large subunit, a popular phylogenetic marker in certain groups, had superior species resolution in some taxonomic groups, such as the early diverging lineages and the ascomycete yeasts, but was otherwise slightly inferior to the ITS. The nuclear ribosomal small subunit has poor species-level resolution in fungi. ITS will be formally proposed for adoption as the primary fungal barcode marker to the Consortium for the Barcode of Life, with the possibility that supplementary barcodes may be developed for particular narrowly circumscribed taxonomic groups.

Plant Pathogens and Fungal DiseasesYeasts and Rust Fungi StudiesMycorrhizal Fungi and Plant InteractionsInternal transcribed spacerBiologyCistronRibosomal RNAGeneticsRibosomal DNABarcodeDNA barcodingRibosomal proteinGene

MeSH terms

Cell NucleusDNA, FungalFungiPhylogenySpecies SpecificityReproducibility of ResultsPolymerase Chain ReactionDNA, Ribosomal SpacerDNA Barcoding, Taxonomic

Funding

  • Alfred P. Sloan Foundation
  • Life Technologies Corporation
  • Genome Canada
  • Ontario Genomics
  • Ontario Genomics Institute
  • National Institutes of Health
  • Biotechnology and Biological Sciences Research Council
  • U.S. National Library of Medicine
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References
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PLoS Biology · 2011 · 2,949 citations
Probable Inference, the Law of Succession, and Statistical Inference
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Barcoding animal life: cytochrome <i>c</i> oxidase subunit 1 divergences among closely related species
Proceedings of the Royal Society B Biological Sciences · 2003 · 4,420 citations
Biological identifications through DNA barcodes
Proceedings of the Royal Society B Biological Sciences · 2003 · 13,103 citations
The Fungi: 1, 2, 3 … 5.1 million species?
American Journal of Botany · 2011 · 1,276 citations
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Nuclear ribosomal internal transcribed spacer (ITS) region as a universal DNA barcode marker for <i>Fungi</i> · Scinovex