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Recovering evolutionary trees under a more realistic model of sequence evolution.

Molecular Biology and Evolution · 1994 · Vol. 11(4) · pp. 605–12

Abstract

We report a new transformation, the LogDet, that is consistent for sequences with differing nucleotide composition and that have arisen under simple but asymmetric stochastic models of evolution. This transformation is required because existing methods tend to group sequences on the basis of their nucleotide composition, irrespective of their evolutionary history. This effect of differing nucleotide frequencies is illustrated by using a tree-selection criterion on a simple distance measure defined solely on the basis of base composition, independent of the actual sequences. The new LogDet transformation uses determinants of the observed divergence matrices and works because multiplication of determinants (real numbers) is commutative, whereas multiplication of matrices is not,except in special symmetric cases. The use of determinants thus allows more general models of evolution with a symmetric rates of nucleotide change. The transformation is illustrated on a theoretical data set (where existing methods select the wrong tree) and with three biological data sets: chloroplasts, birds/mammals (nuclear), and honeybees ( mitochondrial ) . The LogDet transformation reinforces the logical distinction between transformations on the data and tree-selection criteria. The overall conclusions from this study are that irregular A,C,G,T compositions are an important and possible general cause of patterns that can mislead tree-reconstruction methods, even when high bootstrap values are obtained. Consequently, many published studies may need to be reexamined.

Genomics and Phylogenetic StudiesGenetic diversity and population structurePlant and animal studiesTransformation (genetics)BiologyTree (set theory)Sequence (biology)Multiplication (music)Simple (philosophy)Basis (linear algebra)Selection (genetic algorithm)Divergence (linguistics)Phylogenetic tree

MeSH terms

AnimalsBase SequenceBeesDNA, MitochondrialHumansModels, GeneticPhylogenyRNA, Ribosomal, 18SModels, StatisticalEvolution, Molecular

Funding

  • Massey University
  • National Eye Institute
Citations
982
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12.35
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34
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99%
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References
Success of Phylogenetic Methods in the Four-Taxon Case
Systematic Biology · 1993 · 754 citations
The general stochastic model of nucleotide substitution
Journal of Theoretical Biology · 1990 · 2,359 citations
The neighbor-joining method: a new method for reconstructing phylogenetic trees.
Molecular Biology and Evolution · 1987 · 60,290 citations
A Simple Method for Estimating and Testing Minimum-Evolution Trees
Molecular Biology and Evolution · 1992 · 1,501 citations
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