Title
Identifiability of two-tree mixtures for group-based models.
Abstract
Phylogenetic data arising on two possibly different tree topologies might be mixed through several biological mechanisms, including incomplete lineage sorting or horizontal gene transfer in the case of different topologies, or simply different substitution processes on characters in the case of the same topology. Recent work on a 2-state symmetric model of character change showed that for 4 taxa, such a mixture model has nonidentifiable parameters, and thus, it is theoretically impossible to determine the two tree topologies from any amount of data under such circumstances. Here, the question of identifiability is investigated for two-tree mixtures of the 4-state group-based models, which are more relevant to DNA sequence data. Using algebraic techniques, we show that the tree parameters are identifiable for the JC and K2P models. We also prove that generic substitution parameters for the JC mixture models are identifiable, and for the K2P and K3P models obtain generic identifiability results for mixtures on the same tree. This indicates that the full phylogenetic signal remains in such mixtures, and the 2-state symmetric result is thus a misleading guide to the behavior of other models.
Year
DOI
Venue
2011
10.1109/TCBB.2010.79
IEEE/ACM transactions on computational biology and bioinformatics / IEEE, ACM
Keywords
Field
DocType
group-based model,evolution (biological),identifiability,trees (mathematics),dna,genetics,lineage sorting,group-based models,horizontal gene transfer,physiological models,tree topologies,topology,dna sequence,k3p,identifiability of phylogenetic models.,two-tree mixtures,phylogenetic data,bioinformatics,substitution,phylogenetic mixture,k2p
Data modeling,Coalescent theory,Phylogenetic tree,Algebraic number,Polynomial,Identifiability,Computer science,Network topology,Bioinformatics,Mixture model
Journal
Volume
Issue
ISSN
8
3
1557-9964
Citations 
PageRank 
References 
6
0.93
8
Authors
4
Name
Order
Citations
PageRank
Elizabeth S. Allman1608.93
Sonja Petrovic2196.14
John A. Rhodes3608.93
Seth Sullivant49319.17