Introducing the Consolidated Species Concept to resolve species in the Teratosphaeriaceae

W. Quaedvlieg, M. Binder, J.Z. Groenewald, B.A. Summerell, A.J. Carnegie, T.I. Burgess, P.W. Crous

Research output: Contribution to journalArticleAcademicpeer-review

148 Citations (Scopus)

Abstract

The Teratosphaeriaceae represents a recently established family that includes numerous saprobic, extremophilic, human opportunistic, and plant pathogenic fungi. Partial DNA sequence data of the 28S rRNA and RPB2 genes strongly support a separation of the Mycosphaerellaceae from the Teratosphaeriaceae, and also provide support for the Extremaceae and Neodevriesiaceae, two novel families including many extremophilic fungi that occur on a diversity of substrates. In addition, a multi-locus DNA sequence dataset was generated (ITS, LSU, Btub, Act, RPB2, EF-1a and Cal) to distinguish taxa in Mycosphaerella and Teratosphaeria associated with leaf disease of Eucalyptus, leading to the introduction of 23 novel genera, five species and 48 new combinations. Species are distinguished based on a polyphasic approach, combining morphological, ecological and phylogenetic species concepts, named here as the Consolidated Species Concept (CSC). From the DNA sequence data generated, we show that each one of the five coding genes tested, reliably identify most of the species present in this dataset (except species of Pseudocercospora). The ITS gene serves as a primary barcode locus as it is easily generated and has the most extensive dataset available, while either Btub, EF-1a or RPB2 provide a useful secondary barcode locus.
Original languageEnglish
Pages (from-to)1-40
JournalPersoonia
Volume33
DOIs
Publication statusPublished - 2014

Keywords

  • internal transcribed spacer
  • mycosphaerella-spp.
  • sp-nov
  • eucalyptus leaves
  • gene genealogies
  • south-africa
  • leaf spots
  • phylogenetic reassessment
  • reproductive isolation
  • multigene phylogeny

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