Positive selection on the killer whale mitogenome

Andrew David Foote, Phillip A. Morin, John W. Durban, Robert L. Pitman, Paul Wade, Eske Willerslev, Tom Gilbert, Rute Andreia Rodrigues da Fonseca

    79 Citationer (Scopus)

    Abstract

    Mitochondria produce up to 95 per cent of the eukaryotic cell's energy. The coding genes of the mitochondrial DNA may therefore evolve under selection owing to metabolic requirements. The killer whale, Orcinus orca, is polymorphic, has a global distribution and occupies a range of ecological niches. It is therefore a suitable organism for testing this hypothesis. We compared a global dataset of the complete mitochondrial genomes of 139 individuals for amino acid changes that were associated with radical physico-chemical property changes and were influenced by positive selection. Two such selected non-synonymous amino acid changes were found; one in each of two ecotypes that inhabit the Antarctic pack ice. Both substitutions were associated with changes in local polarity, increased steric constraints and a-helical tendencies that could influence overall metabolic performance, suggesting a functional change. This journal is

    OriginalsprogEngelsk
    TidsskriftBiology Letters
    Vol/bind7
    Udgave nummer1
    Sider (fra-til)116-118
    Antal sider3
    ISSN1744-9561
    DOI
    StatusUdgivet - 23 feb. 2011

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