4.7 Article

The evolutionary history of cockatoos (Aves: Psittaciformes: Cacatuidae)

期刊

MOLECULAR PHYLOGENETICS AND EVOLUTION
卷 59, 期 3, 页码 615-622

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ympev.2011.03.011

关键词

Parrot; Phylogeny; Molecular dating; Mitochondrial genome; Avian evolution; Phenotypic plasticity

资金

  1. Robert Hammond Research Studentship
  2. Murdoch University
  3. Western Australian Department of Environment and Conservation
  4. Australian federal Department of Environment, Water, Heritage and the Arts, and Birds Australia
  5. ARC [FT0991741]
  6. Danish Council for Independent Research-Natural Sciences [272-07-0279]

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Cockatoos are the distinctive family Cacatuidae, a major lineage of the order of parrots (Psittaciformes) and distributed throughout the Australasian region of the world. However, the evolutionary history of cockatoos is not well understood. We investigated the phylogeny of cockatoos based on three mitochondrial and three nuclear DNA genes obtained from 16 of 21 species of Cacatuidae. In addition, five novel mitochondrial genomes were used to estimate time of divergence and our estimates indicate Cacatuidae diverged from Psittacidae approximately 40.7 million years ago (95% CI 51.6-30.3 Ma) during the Eocene. Our data shows Cacatuidae began to diversify approximately 27.9 Ma (95% CI 38.1-18.3 Ma) during the Oligocene. The early to middle Miocene (20-10 Ma) was a significant period in the evolution of modern Australian environments and vegetation, in which a transformation from mainly mesic to xeric habitats (e.g., fire-adapted sclerophyll vegetation and grasslands) occurred. We hypothesize that this environmental transformation was a driving force behind the diversification of cockatoos. A detailed multi-locus molecular phylogeny enabled us to resolve the phylogenetic placements of the Palm Cockatoo (Probosciger aterrimus), Galah (Eolophus roseicapillus), Gang-gang Cockatoo (Callocephalon fimbriatum) and Cockatiel (Nymphicus hollandicus), which have historically been difficult to place within Cacatuidae. When the molecular evidence is analysed in concert with morphology, it is clear that many of the cockatoo species' diagnostic phenotypic traits such as plumage colour, body size, wing shape and bill morphology have evolved in parallel or convergently across lineages. (C) 2011 Elsevier Inc. All rights reserved.

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