Four new mitochondrial genomes and the increased stability of evolutionary trees of mammals from improved taxon sampling

被引:115
作者
Lin, YH [1 ]
McLenachan, PA [1 ]
Gore, AR [1 ]
Phillips, MJ [1 ]
Ota, R [1 ]
Hendy, MD [1 ]
Penny, D [1 ]
机构
[1] Massey Univ, Inst Mol BioSci, Allan Wilson Ctr Mol Ecol & Evolut, Palmerston North, New Zealand
关键词
bats; insectivores; mammal evolution; mitochoridrial genomes; taxon sampling; tree comparisons; triple Markov analysis;
D O I
10.1093/oxfordjournals.molbev.a004031
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have sequenced four new mitochondrial genomes to improve the stability of the tree for placental mammals; they are two insectivores (a gymnure, Echinosorex gymnurus and Formosan shrew Soriculus fumidus); a Formosan lesser horseshoe bat (Rhinolophus monoceros); and the New Zealand fur seal (Arctocephalus forsteri). A revision to the hedgehog sequence (Erinaceus europaeus) is also reported. All five are from the Laurasiatheria grouping of eutherian mammals. On this new data set there is a strong tendency for the hedgehog and its relative, the gymnure, to join with the other Laurasiatherian insectivores (mole and shrews). To quantify the stability of trees from this data we define, based on nuclear sequences, a major four-way split in Laurasiatherians. This ([Xenarthra, Afrotheria], [Laurasiatheria, Supraprimates]) split is also found from mitochondrial genomes using either protein-coding or RNA (rRNA and tRNA) data sets. The high similarity of the mitochondrial and nuclear-derived trees allows a quantitative estimate of the stability of trees from independent data sets, as detected from a triplet Markov analysis. There are significant changes in the mutational processes within placental mammals that are ignored by current tree programs. On the basis of our quantitative results, we expect the evolutionary tree for mammals to be resolved quickly, and this will allow other problems to be solved.
引用
收藏
页码:2060 / 2070
页数:11
相关论文
共 56 条
[1]  
Adachi J, 1996, MOLPHY
[2]   Evolutionary rate acceleration of cytochrome c oxidase subunit I in simian primates [J].
Andrews, TD ;
Easteal, S .
JOURNAL OF MOLECULAR EVOLUTION, 2000, 50 (06) :562-568
[3]   Mammalian mitogenomic relationships and the root of the eutherian tree [J].
Arnason, U ;
Adegoke, JA ;
Bodin, K ;
Born, EW ;
Esa, YB ;
Gullberg, A ;
Nilsson, M ;
Short, RV ;
Xu, XF ;
Janke, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (12) :8151-8156
[4]   Molecular estimates of primate divergences and new hypotheses for primate dispersal and the origin of modern humans [J].
Arnason, U ;
Gullberg, A ;
Burguete, AS ;
Janke, A .
HEREDITAS, 2000, 133 (03) :217-228
[5]   SKELETON OF THE OLDEST KNOWN PINNIPED, ENALIARCTOS-MEALSI [J].
BERTA, A ;
RAY, CE ;
WYSS, AR .
SCIENCE, 1989, 244 (4900) :60-62
[6]  
BUTLER PM, 1988, PHYLOGENY CLASSIFICA, V2, P117
[7]   Interordinal relationships and timescale of eutherian evolution as inferred from mitochondrial genome data [J].
Cao, Y ;
Fujiwara, M ;
Nikaido, M ;
Okada, N ;
Hasegawa, M .
GENE, 2000, 259 (1-2) :149-158
[8]   Inconsistency of evolutionary tree topology reconstruction methods when substitution rates vary across characters [J].
Chang, JT .
MATHEMATICAL BIOSCIENCES, 1996, 134 (02) :189-215
[9]  
CHARLESTON M, 1994, THESIS MASSEY U PALM
[10]   Mass survival of birds across the Cretaceous-Tertiary boundary: Molecular evidence [J].
Cooper, A ;
Penny, D .
SCIENCE, 1997, 275 (5303) :1109-1113