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Nucleotide sequence analysis of beta tubulin gene in a wide range of dermatophytes

  • Ali Rezaei-Matehkolaei
  • , Hossein Mirhendi
  • , Koichi Makimura
  • , G. Sybren De Hoog
  • , Kazuo Satoh
  • , Mohammad Javad Najafzadeh
  • , Mohammad Reza Shidfar
  • Ahvaz Jundishapur University of Medical Sciences
  • Tehran University of Medical Sciences
  • Centraalbureau voor Schimmelcultures
  • Mashhad University of Medical Sciences

Research output: Contribution to journalArticlepeer-review

60 Scopus citations

Abstract

We investigated the resolving power of the beta tubulin protein-coding gene (BT2) for systematic study of dermatophyte fungi. Initially, 144 standard and clinical strains belonging to 26 species in the genera Trichophyton, Microsporum, and Epidermophyton were identified by internal transcribe spacer (ITS) sequencing. Subsequently, BT2 was partially amplified in all strains, and sequence analysis performed after construction of a BT2 database that showed length ranged from approximately 723 (T. Ajelloi) to 808 nucleotides (M. persicolor) in different species. Intraspecific sequence variation was found in some species, but T. tonsurans, T. Equinum, T. concentricum, T. verrucosum, T. rubrum, T. violaceum, T. Eriotrephon, E. Floccosum, M. canis, M. Ferrugineum, and M. Audouinii were invariant. The sequences were found to be relatively conserved among different strains of the same species. The species with the closest resemblance were Arthroderma benhamiae and T. concentricum and T. tonsurans and T. Equinum with 100% and 99.8% identity, respectively; the most distant species were M. persicolor and M. Amazonicum. The dendrogram obtained from BT2 topology was almost compatible with the species concept based on ITS sequencing, and similar clades and species were distinguished in the BT2 tree. Here, beta tubulin was characterized in a wide range of dermatophytes in order to assess intra-and interspecies variation and resolution and was found to be a taxonomically valuable gene.

Original languageEnglish
Pages (from-to)674-688
Number of pages15
JournalMedical Mycology
Volume52
Issue number7
DOIs
StatePublished - 22 Jul 2014

Keywords

  • Dermatophyte
  • beta tubulin
  • phylogeny
  • species identification

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