Molecular phylogenetic analyses identify Alpine differentiation and dysploid chromosome number changes as major forces for the evolution of the European endemic Phyteuma (Campanulaceae)

Mol Phylogenet Evol. 2013 Dec;69(3):634-52. doi: 10.1016/j.ympev.2013.07.015. Epub 2013 Jul 25.

Abstract

Phyteuma is a chromosomally and ecologically diverse vascular plant genus and constitutes an excellent system for studying both the role of chromosomal change for species diversification and the evolution of high-mountain biota. This kind of research is, however, hampered by the lack of a sound phylogenetic framework exacerbated by the notoriously low predictive power of traditional taxonomy with respect to phylogenetic relationships in Campanulaceae. Based on a comprehensive taxon sampling and analyses of nuclear and plastid sequence and AFLP fingerprint data, Phyteuma is confirmed as a monophyletic group sister to the monotypic Physoplexis, which is in line with their peculiar flower morphologies. Within Phyteuma two clades, largely corresponding to previously recognized sections, are consistently found. The traditional circumscription of taxonomic series is largely rejected. Whereas distinctness of the currently recognized species is mostly corroborated, some interspecific relationships remain ambiguous due to incongruences between nuclear and plastid data. Major forces for diversification and evolution of Phyteuma are descending dysploidy (i.e., a decrease in chromosome base number) as well as allopatric and ecological differentiation within the Alps, the genus' center of species diversity.

Keywords: Biogeography; Campanulaceae; Chromosome number evolution; Phylogeny; Physoplexis; Phyteuma.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amplified Fragment Length Polymorphism Analysis
  • Bayes Theorem
  • Campanulaceae / classification*
  • Campanulaceae / genetics
  • Cell Nucleus / genetics
  • Chromosomes, Plant / genetics*
  • DNA, Plant / genetics
  • Evolution, Molecular*
  • Karyotype
  • Likelihood Functions
  • Models, Genetic
  • Phylogeny*
  • Plastids / genetics
  • Sequence Analysis, DNA

Substances

  • DNA, Plant