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Intraspecific ITS Variability in the Kingdom Fungi as Expressed in the International Sequence Databases and Its Implications for Molecular Species Identification

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Publication Date: 26 May 2008

Journal: Evolutionary Bioinformatics 2008:4 193-201

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Abstract R. Henrik Nilsson1, Erik Kristiansson2, Martin Ryberg1, Nils Hallenberg1 and Karl-Henrik Larsson1

1Department of Plant and Environmental Sciences, University of Gothenburg, Box  461, 405 30 Göteborg, Sweden. 2Mathematical Statistics, Chalmers University of Technology/Department of Zoology, University of Gothenburg, 412 96 Göteborg, Sweden.

Abstract

The internal transcribed spacer (ITS) region of the nuclear ribosomal repeat unit is the most popular locus for species identification and subgeneric phylogenetic inference in sequence-based mycological research. The region is known to show certain variability even within species, although its intraspecific variability is often held to be limited and clearly separated from interspecific variability. The existence of such a divide between intra- and interspecific variability is implicitly assumed by automated approaches to species identification, but whether intraspecific variability indeed is negligible within the fungal kingdom remains contentious. The present study estimates the intraspecific ITS variability in all fungi presently available to the mycological community through the international sequence databases. Substantial differences were found within the kingdom, and the results are not easily correlated to the taxonomic affiliation or nutritional mode of the taxa considered. No single unifying yet stringent upper limit for intraspecific variability, such as the canonical 3% threshold, appears to be applicable with the desired outcome throughout the fungi. Our results caution against simplified approaches to automated ITS-based species delimitation and reiterate the need for taxonomic expertise in the translation of sequence data into species names.


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Posted by Henrik Nilsson - 21:37,May 28, 2009

This article was cited by Garbaye and Churin. 2009. Des champignons auxiliaires du sylviculteur. Biofutur 298: 43-46 .

Posted by Henrik Nilsson - 14:18,April 15, 2009

This article was cited by Gamper et al. 2009. Diversispora celata sp. nov: molecular ecology and phylotaxonomy of an inconspicuous arbuscular mycorrhizal fungus. New Phytologist 182: 495–506.

Posted by Henrik Nilsson - 13:35,February 27, 2009

This article was cited by Selosse et al. 2009. Green plants that feed on fungi: facts and questions about mixotrophy. Trends in Plant Science 14: 64-70.

Posted by Henrik Nilsson - 13:12,February 10, 2009

This article was cited by Vincenot et al. 2008. Fungal associates of Pyrola rotundifolia, a mixotrophic Ericaceae, from two Estonian boreal forests. Mycorrhiza 19: 15-25.

Posted by Henrik Nilsson - 11:25,January 23, 2009

This article was cited by Keller et al. 2009. 5.8S-28S rRNA interaction and HMM-based ITS2 annotation. Gene 430: 50-57.

Posted by Henrik Nilsson - 10:56,January 15, 2009

This article was cited by Nilsson et al. 2009. A software pipeline for processing and identification of fungal ITS sequences. Source Code for Biology and Medicine 2009, 4:1.

Posted by Henrik Nilsson - 14:16,December 18, 2008

This article was cited by Ryberg et al. 2009. An outlook on the fungal internal transcribed spacer sequences in GenBank and the introduction of a web-based tool for the exploration of fungal diversity. New Phytologist 181: 471 - 477.

Posted by Henrik Nilsson - 14:00,October 16, 2008

In the Acknowledgments, I forgot to acknowledge Bomb Mediaproduktion for assistance with the design of Figure 1. Henrik Nilsson


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