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Is It Better to Add Taxa or Characters to a Difficult Phylogenetic Problem?

Systematic Biology · 1998 · Vol. 47(1) · pp. 9–17
Anna Graybeal

Abstract

The effects on phylogenetic accuracy of adding characters and/or taxa were explored using data generated by computer simulation. The conditions of this study were constrained but allowed for systematic investigation of certain parameters. The starting point for the study was a four-taxon tree in the "Felsenstein zone," representing a difficult phylogenetic problem with an extreme situation of long branch attraction. Taxa were added sequentially to this tree in a manner specifically designed to break up the long branches, and for each tree data matrices of different sizes were simulated. Phylogenetic trees were reconstructed from these data using the criteria of parsimony and maximum likelihood. Phylogenetic accuracy was measured in three ways: (1) proportion of trees that are completely correct, (2) proportion of correctly reconstructed branches in all trees, and (3) proportion of trees in which the original four-taxon statement is correctly reconstructed. Accuracy improved dramatically with the addition of taxa and much more slowly with the addition of characters. If taxa can be added to break up long branches, it is much more preferable to add taxa than characters.

Evolution and Paleontology StudiesGenomics and Phylogenetic StudiesGenetic diversity and population structurePhylogenetic treeTaxonBiologyTree (set theory)Phylogenetic networkMaximum parsimonyPhylogenetic comparative methodsEvolutionary biologyPhylogeneticsStatement (logic)

MeSH terms

ClassificationComputer SimulationPhylogenyReproducibility of Results
Citations
747
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75.94
field-weighted impact
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18
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References
Success of Phylogenetic Methods in the Four-Taxon Case
Systematic Biology · 1993 · 754 citations
Recovering evolutionary trees under a more realistic model of sequence evolution.
Molecular Biology and Evolution · 1994 · 982 citations
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