Analysis of complete mitochondrial genomes from extinct and extant rhinoceroses reveals lack of phylogenetic resolution
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Willerslev, Eske
Gilbert, M Thomas
Binladen, Jonas
Ho, Simon
Campos, Paula F
Ratan, Aakrosh
Tomsho, Lynn P
da Fonseca, Rute R
Sher, Andrei
Kuznetsova, Tatanya V
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BioMed Central
Abstract
BACKGROUND: The scientific literature contains many examples where DNA sequence analyses
have been used to provide definitive answers to phylogenetic problems that traditional (non-DNA
based) approaches alone have failed to resolve. One notable example concerns the rhinoceroses, a
group for which several contradictory phylogenies were proposed on the basis of morphology,
then apparently resolved using mitochondrial DNA fragments.
RESULTS: In this study we report the first complete mitochondrial genome sequences of the
extinct ice-age woolly rhinoceros (Coelodonta antiquitatis), and the threatened Javan (Rhinoceros
sondaicus), Sumatran (Dicerorhinus sumatrensis), and black (Diceros bicornis) rhinoceroses. In
combination with the previously published mitochondrial genomes of the white (Ceratotherium
simum) and Indian (Rhinoceros unicornis) rhinoceroses, this data set putatively enables reconstruction
of the rhinoceros phylogeny. While the six species cluster into three strongly supported
sister-pairings: (i) The black/white, (ii) the woolly/Sumatran, and (iii) the Javan/Indian, resolution of
the higher-level relationships has no statistical support. The phylogenetic signal from individual
genes is highly diffuse, with mixed topological support from different genes. Furthermore, the
choice of outgroup (horse vs tapir) has considerable effect on reconstruction of the phylogeny. The
lack of resolution is suggestive of a hard polytomy at the base of crown-group Rhinocerotidae, and
this is supported by an investigation of the relative branch lengths.
CONCLUSION: Satisfactory resolution of the rhinoceros phylogeny may not be achievable without
additional analyses of substantial amounts of nuclear DNA. This study provides a compelling demonstration that, in spite of substantial sequence length, there are significant limitations with
single-locus phylogenetics. We expect further examples of this to appear as next-generation, largescale
sequencing of complete mitochondrial genomes becomes commonplace in evolutionary
studies.
"The human factor in classification is nowhere more evident than in dealing with this superfamily
(Rhinocerotoidea)." G. G. Simpson (1945)
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BMC Evolutionary Biology 9.95 (2009)
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BMC Evolutionary Biology
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