Scinovex
articleTop 10% cited

Cases in which Parsimony or Compatibility Methods will be Positively Misleading

Systematic Biology · 1978 · Vol. 27(4) · pp. 401–410
Joe Felsenstein

Abstract

For some simple three- and four-species cases involving a character with two states, it is determined under what conditions several methods of phylogenetic inference will fail to converge to the true phylogeny as more and more data are accumulated. The methods are the Camin-Sokal parsimony method, the compatibility method, and Farris's unrooted Wagner tree parsimony method. In all cases the conditions for this failure (which is the failure to be statistically consistent) are essentially that parallel changes exceed informative, nonparallel changes. It is possible for these methods to be inconsistent even when change is improbable a priori, provided that evolutionary rates in different lineages are sufficiently unequal. It is by extension of this approach that we may provide a sound methodology for evaluating methods of phylogenetic inference.

Stochastic processes and statistical mechanicsBayesian Methods and Mixture ModelsGenetic diversity and population structurePhylogenetic treeInferenceMaximum parsimonyBiologyA priori and a posterioriPhylogeneticsCharacter evolutionCompatibility (geochemistry)TaxonStatistics

Funding

  • U.S. Department of Energy
Citations
2,934
FWCI
4.98
field-weighted impact
References
23
Percentile
96%
vs. same field & year
Citations per year
References
Estimating Phylogenetic Trees from Distance Matrices
The American Naturalist · 1972 · 1,504 citations
Methods for Computing Wagner Trees
Systematic Biology · 1970 · 1,231 citations
Quantitative Phyletics and the Evolution of Anurans
Systematic Biology · 1969 · 2,858 citations
An introduction to probability theory and its applications
Journal of the Franklin Institute · 1958 · 29,713 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.