A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae
<p>Abstract</p> <p>Background</p> <p>The family Camelidae that evolved in North America during the Eocene survived with two distinct tribes, Camelini and Lamini. To investigate the evolutionary relationship between them and to further understand the evolutionary history...
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doaj-438aa6da5efe4bb4a2a68c90cab6af662020-11-24T21:21:11ZengBMCBMC Genomics1471-21642007-07-018124110.1186/1471-2164-8-241A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidaeMeng HeGao HongweiQi DanDing FengJi RimutuCui PengYu JunHu SongnianZhang Heping<p>Abstract</p> <p>Background</p> <p>The family Camelidae that evolved in North America during the Eocene survived with two distinct tribes, Camelini and Lamini. To investigate the evolutionary relationship between them and to further understand the evolutionary history of this family, we determined the complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>), the only wild survivor of the Old World camel.</p> <p>Results</p> <p>The mitochondrial genome sequence (16,680 bp) from <it>C. bactrianus ferus </it>contains 13 protein-coding, two rRNA, and 22 tRNA genes as well as a typical control region; this basic structure is shared by all metazoan mitochondrial genomes. Its protein-coding region exhibits codon usage common to all mammals and possesses the three cryptic stop codons shared by all vertebrates. <it>C. bactrianus ferus </it>together with the rest of mammalian species do not share a triplet nucleotide insertion (GCC) that encodes a proline residue found only in the <it>nd1 </it>gene of the New World camelid <it>Lama pacos</it>. This lineage-specific insertion in the <it>L. pacos </it>mtDNA occurred after the split between the Old and New World camelids suggests that it may have functional implication since a proline insertion in a protein backbone usually alters protein conformation significantly, and <it>nd1 </it>gene has not been seen as polymorphic as the rest of ND family genes among camelids. Our phylogenetic study based on complete mitochondrial genomes excluding the control region suggested that the divergence of the two tribes may occur in the early Miocene; it is much earlier than what was deduced from the fossil record (11 million years). An evolutionary history reconstructed for the family Camelidae based on <it>cytb </it>sequences suggested that the split of bactrian camel and dromedary may have occurred in North America before the tribe Camelini migrated from North America to Asia.</p> <p>Conclusion</p> <p>Molecular clock analysis of complete mitochondrial genomes from <it>C. bactrianus ferus </it>and <it>L. pacos </it>suggested that the two tribes diverged from their common ancestor about 25 million years ago, much earlier than what was predicted based on fossil records.</p> http://www.biomedcentral.com/1471-2164/8/241 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Meng He Gao Hongwei Qi Dan Ding Feng Ji Rimutu Cui Peng Yu Jun Hu Songnian Zhang Heping |
spellingShingle |
Meng He Gao Hongwei Qi Dan Ding Feng Ji Rimutu Cui Peng Yu Jun Hu Songnian Zhang Heping A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae BMC Genomics |
author_facet |
Meng He Gao Hongwei Qi Dan Ding Feng Ji Rimutu Cui Peng Yu Jun Hu Songnian Zhang Heping |
author_sort |
Meng He |
title |
A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae |
title_short |
A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae |
title_full |
A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae |
title_fullStr |
A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae |
title_full_unstemmed |
A complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>): an evolutionary history of camelidae |
title_sort |
complete mitochondrial genome sequence of the wild two-humped camel (<it>camelus bactrianus ferus</it>): an evolutionary history of camelidae |
publisher |
BMC |
series |
BMC Genomics |
issn |
1471-2164 |
publishDate |
2007-07-01 |
description |
<p>Abstract</p> <p>Background</p> <p>The family Camelidae that evolved in North America during the Eocene survived with two distinct tribes, Camelini and Lamini. To investigate the evolutionary relationship between them and to further understand the evolutionary history of this family, we determined the complete mitochondrial genome sequence of the wild two-humped camel (<it>Camelus bactrianus ferus</it>), the only wild survivor of the Old World camel.</p> <p>Results</p> <p>The mitochondrial genome sequence (16,680 bp) from <it>C. bactrianus ferus </it>contains 13 protein-coding, two rRNA, and 22 tRNA genes as well as a typical control region; this basic structure is shared by all metazoan mitochondrial genomes. Its protein-coding region exhibits codon usage common to all mammals and possesses the three cryptic stop codons shared by all vertebrates. <it>C. bactrianus ferus </it>together with the rest of mammalian species do not share a triplet nucleotide insertion (GCC) that encodes a proline residue found only in the <it>nd1 </it>gene of the New World camelid <it>Lama pacos</it>. This lineage-specific insertion in the <it>L. pacos </it>mtDNA occurred after the split between the Old and New World camelids suggests that it may have functional implication since a proline insertion in a protein backbone usually alters protein conformation significantly, and <it>nd1 </it>gene has not been seen as polymorphic as the rest of ND family genes among camelids. Our phylogenetic study based on complete mitochondrial genomes excluding the control region suggested that the divergence of the two tribes may occur in the early Miocene; it is much earlier than what was deduced from the fossil record (11 million years). An evolutionary history reconstructed for the family Camelidae based on <it>cytb </it>sequences suggested that the split of bactrian camel and dromedary may have occurred in North America before the tribe Camelini migrated from North America to Asia.</p> <p>Conclusion</p> <p>Molecular clock analysis of complete mitochondrial genomes from <it>C. bactrianus ferus </it>and <it>L. pacos </it>suggested that the two tribes diverged from their common ancestor about 25 million years ago, much earlier than what was predicted based on fossil records.</p> |
url |
http://www.biomedcentral.com/1471-2164/8/241 |
work_keys_str_mv |
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