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Incongruence between chloroplast and species phylogenies in Eucalyptus subgenus Monocalyptus (Myrtaceae)
Authors:Gay E. McKinnon  Dorothy A. Steane  Bradley M. Potts  Rene´ E. Vaillancourt
Affiliation:1. School of Plant Science and Cooperative Research Centre for Sustainable Production Forestry, University of Tasmania, GPO Box 252-55, Hobart, Tasmania 7001, Australia;2. School of Plant Science and Cooperative Research Centre for Sustainable Production Forestry, University of Tasmania, GPO Box 252-55, Hobart, Tasmania 7001, Australia

Author for correspondence (e-mail: R.Vaillancourt@utas.edu.au).

Abstract:Seventy-eight polymorphic cpDNA (chloroplast DNA) characters were found in 13 closely related taxa from Eucalyptus series Amygdalinae (subgenus Monocalyptus) and seven potential outgroup taxa. The strict consensus of six cladograms generated from cpDNA data confirmed monophyly of Monocalyptus. However, cpDNA phylogeny within Monocalyptus was incongruent with taxonomic classification, being more related to geography, even when accessions were from divergent series. Monocalyptus cpDNA formed two major clades. On the island of Tasmania cpDNA was restricted to a single clade, exhibited very little variation, and was phylogenetically related to cpDNA found in central and western Victoria. In contrast, cpDNA of mainland monocalypt taxa was more variable, even within the Amygdalinae. Four out of six Tasmanian Amygdalinae species were polymorphic. The difference between cpDNA of replicates was often greater than differences between species from different series. The low level of cpDNA variation and extensive morphological intergradation between the Tasmanian endemics suggest recent speciation. However, the transfer of cpDNA through hybridization between lineages is the most likely explanation for the observed sharing of cpDNA across series. This study highlights that the geographical pattern to cpDNA variation in Eucalyptus may be an important source of information on past plant distributions in Australia.
Keywords:chloroplast DNA  Eucalyptus  hybridization  Myrtaceae  reticulate evolution
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