Home LiteratureArticle Details
PMID: 10486007 Published · ppublish English Journal Article

The root of the tree of life in the light of the covarion model.

Journal of molecular evolution ·Vol. 49 ·No. 4 ·1999-10-00 ·Pages 496-508

Lopez P, Forterre P, Philippe H

Abstract

A few duplicated genes have been found useful to root the universal tree of life. Despite controversial results, the consensus led to locate the root in the eubacterial branch. However, we demonstrated (Philippe and Forterre 1999) that all these markers were in fact unsuitable for any firm conclusion, mainly because of their high level of mutational saturation, which masks a major part of the phylogenetic signal. But then, the very persistence of signal for events as early as the separation of the three domains becomes puzzling. This paradox was studied here for translation elongation factor proteins, EF-1alpha and EF-2, which appeared to be one of the least confusing markers. We showed that these proteins do not conform to a classical rate-across-sites pattern, as those modeled by a gamma law, but rather to a covarion-based model, because the evolutionary rate of a given position often changes between taxonomic groups. Conservation of the very ancient signal can thus be better explained by the covarion model: a substitution can occur in deep branches, and the position remains constant afterward, as "fossilized" by a change of covation. As no reconstruction method has up to now taken into account this complex model, we devised a simple method for extracting the phylogenetic signal, by considering the variability of sequence positions within predefined phylogenetic groups. We showed that noise quantitatively prevailed upon signal. Parsimony will produce erroneous topologies, because it has to minimize primarily the number of steps of the noise. In contrast, our method effectively concentrated the signal and was more suitable for inferring ancient events. We consequently found the eubacterial rooting to be presumably due to a long branch attraction artifact, because of the higher evolutionary rate of Eubacteria for these proteins. Among the two other rooting possibilities, the eukaryotic rooting appeared to be more supported, although not enough to be conclusive.

MeSH Terms
Algorithms Amino Acid Sequence Amino Acids/analysis Animals Archaea/genetics Databases, Factual Eubacterium/genetics Evolution, Molecular Gene Duplication Humans Models, Genetic Molecular Sequence Data Peptide Elongation Factor 1/chemistry Peptide Elongation Factor G/chemistry Peptide Elongation Factor Tu/chemistry Phylogeny Sequence Homology, Amino Acid
Chemicals
Amino Acids Peptide Elongation Factor 1 Peptide Elongation Factor G Peptide Elongation Factor Tu
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lopez P
Phylogénie et Evolution Moléculaires (UPRESA Q8080), Bâtiment 444, Université Paris-Sud, 91405 Orsay-Cedex, France.
Forterre P
Philippe H
Article Info
Journal
Journal of molecular evolution
Abbr.
J Mol Evol
ISSN
0022-2844
Published
1999-10-00
Pages
496-508
Language
English
Region
Germany
NLM ID
0360051
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com