Four new avian mitochondrial genomes help get to basic evolutionary questions in the late cretaceous.

Abstract:

:Good phylogenetic trees are required to test hypotheses about evolutionary processes. We report four new avian mitochondrial genomes, which together with an improved method of phylogenetic analysis for vertebrate mt genomes give results for three questions in avian evolution. The new mt genomes are: magpie goose (Anseranas semipalmata), an owl (morepork, Ninox novaeseelandiae); a basal passerine (rifleman, or New Zealand wren, Acanthisitta chloris); and a parrot (kakapo or owl-parrot, Strigops habroptilus). The magpie goose provides an important new calibration point for avian evolution because the well-studied Presbyornis fossils are on the lineage to ducks and geese, after the separation of the magpie goose. We find, as with other animal mitochondrial genomes, that RY-coding is helpful in adjusting for biases between pyrimidines and between purines. When RY-coding is used at third positions of the codon, the root occurs between paleognath and neognath birds (as expected from morphological and nuclear data). In addition, passerines form a relatively old group in Neoaves, and many modern avian lineages diverged during the Cretaceous. Although many aspects of the avian tree are stable, additional taxon sampling is required.

journal_name

Mol Biol Evol

authors

Harrison GL,McLenachan PA,Phillips MJ,Slack KE,Cooper A,Penny D

doi

10.1093/molbev/msh065

subject

Has Abstract

pub_date

2004-06-01 00:00:00

pages

974-83

issue

6

eissn

0737-4038

issn

1537-1719

pii

msh065

journal_volume

21

pub_type

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