ASSESSING PHYLOGENETIC AFFINITIES AND SPECIES DELIMITATIONS IN KLEBSORMIDIALES (STREPTOPHYTA): NUCLEAR-ENCODED rDNA PHYLOGENIES AND ITS SECONDARY STRUCTURE MODELS IN KLEBSORMIDIUM, HORMIDIELLA, AND ENTRANSIA(1).

J Phycol

Royal Botanic Garden Edinburgh, 20A Inverleith Row, Edinburgh EH3 5LR, UKAlbrecht-von-Haller-Institut für Pflanzenwissenschaften, Abteilung Experimentelle Phykologie und Sammlung von Algenkulturen, Universität Göttingen, Untere Karspüle 2, 37073 Göttingen, Germany.

Published: February 2008

AI Article Synopsis

  • 16 strains of green algae from the genera Klebsormidium, Hormidiella, and Entransia were studied using nuclear-encoded SSU rDNA, group I intron, and ITS sequences, revealing a well-supported clade within the Streptophyta.
  • Certain previously misidentified isolates were shown to belong to the Trebouxiophyceae group, indicating a taxonomic reassessment is necessary.
  • The study’s phylogenetic analysis of ITS regions validated five morphospecies of Klebsormidium but pointed out conflicts with Lokhorst’s morphological classifications, suggesting the need for improved taxonomic methods.

Article Abstract

Nuclear-encoded SSU, group I intron, and internal transcribed spacer (ITS) rDNA sequences were obtained for 16 strains of green algae representing species of Klebsormidium, Hormidiella attenuata, and Entransia fimbriata (for taxonomic authorities, see Table S1 in the supplementary material). The SSU phylogeny resolved a well-supported clade Klebsormidiales in the Streptophyta that comprised authentic Klebsormidium isolates described recently in a monograph by G. M. Lokhorst and various strains from culture collections. The H. attenuata and En. fimbriata pair was the sister group of Klebsormidium. Certain isolates from culture collections previously identified as "Klebsormidium" emerged as Trebouxiophyceae. Strains assigned to Koliella, Gloeotila, and Stichococcus previously allied with Klebsormidium because of shared morphological and ultrastructural characteristics also belonged to Trebouxiophyceae. Group I introns inserted at Escherichia coli position 516 were found in K. nitens and SAG strain 384-1, and at position 1506 in H. attenuata and En. fimbriata. Introns were not observed in other Klebsormidiales. Unambiguous alignment of ITS regions of Klebsormidiales was only possible after thermodynamic folding had predicted eight conserved helical domains. The ITS phylogeny provided support for five of the morphospecies recognized by Lokhorst (K. flaccidum, K. elegans, K. bilatum, K. crenulatum, K. mucosum), but the sequences of K. dissectum, K. fluitans, and K. nitens formed an unresolved clade. The species with the earliest origin in the Klebsormidium phylogeny was K. flaccidum. The incongruence between Lokhorst's morphology-based cladograms and the ITS phylogenies demonstrated the need for a critical reappraisal of the taxonomy and the morphological and molecular species concept in Klebsormidium on the basis of a more extensive taxonomic and geographic sampling strategy.

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http://dx.doi.org/10.1111/j.1529-8817.2007.00442.xDOI Listing

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