A genome phylogeny for mitochondria among α-proteobacteria and a predominantly eubacterial ancestry of yeast nuclear genes

被引:248
作者
Esser, C
Ahmadinejad, N
Wiegand, C
Rotte, C
Sebastiani, F
Gelius-Dietrich, G
Henze, K
Kretschmann, E
Richly, E
Leister, D
Bryant, D
Steel, MA
Lockhart, PJ
Penny, D
Martin, W [6 ]
机构
[1] European Bioinformat Inst, Cambridge, England
[2] Max Planck Inst Zuchtungsforsch, D-5000 Cologne, Germany
[3] McGill Ctr Bioinformat, Montreal, PQ, Canada
[4] Univ Canterbury, Dept Math & Stat, Christchurch, New Zealand
[5] Massey Univ, Allan Wilson Ctr Mol Ecol & Evolut, Palmerston North, New Zealand
[6] Univ Dusseldorf, Inst Bot 3, D-4000 Dusseldorf, Germany
关键词
endosymbiosis; genome analysis; mitochondria; origin of eukaryotes; archaebacteria; eubacteria;
D O I
10.1093/molbev/msh160
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
Analyses of 55 individual and 31 concatenated protein data sets encoded in Reclinomonas americana and Marchantia polymorpha mitochondrial genomes revealed that current methods for constructing phylogenetic trees are insufficiently sensitive (or artifact-insensitive) to ascertain the sister of mitochondria among the current sample of eight alpha-proteobacterial genomes using mitochondrially-encoded proteins. However, Rhodospirillum rubrum came as close to mitochondria as any alpha-proteobacterium investigated. This prompted a search for methods to directly compare eukaryotic genomes to their prokaryotic counterparts to investigate the origin of the mitochondrion and its host from the standpoint of nuclear genes. We examined pairwise amino acid sequence identity in comparisons of 6,214 nuclear protein-coding genes from Saccharomyces cerevisiae to 177,117 proteins encoded in sequenced genomes from 45 eubacteria and 15 archaebacteria. The results reveal that similar to75% of yeast genes having homologues among the present prokaryotic sample share greater amino acid sequence identity to eubacterial than to archaebacterial homologues. At high stringency comparisons, only the eubacterial component of the yeast genome is detectable. Our findings indicate that at the levels of overall amino acid sequence identity and gene content, yeast shares a sister-group relationship with eubacteria, not with archaebacteria, in contrast to the current phylogenetic paradigm based on ribosomal RNA. Among eubacteria and archaebacteria, proteobacterial and methanogen genomes, respectively, shared more similarity with the yeast genome than other prokaryotic genomes surveyed.
引用
收藏
页码:1643 / 1660
页数:18
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