Reconstructing the Evolutionary History of Polyploids from Multilabeled Trees
Open Access
- 23 June 2006
- journal article
- research article
- Published by Oxford University Press (OUP) in Molecular Biology and Evolution
- Vol. 23 (9) , 1784-1791
- https://doi.org/10.1093/molbev/msl045
Abstract
In recent studies, phylogenetic networks have been derived from so-called multilabeled trees in order to understand the origins of certain polyploids. Although the trees used in these studies were constructed using sophisticated techniques in phylogenetic analysis, the presented networks were inferred using ad hoc arguments that cannot be easily extended to larger, more complicated examples. In this paper, we present a general method for constructing such networks, which takes as input a multilabeled phylogenetic tree and outputs a phylogenetic network with certain desirable properties. To illustrate the applicability of our method, we discuss its use in reconstructing the evolutionary history of plant allopolyploids. We conclude with a discussion concerning possible future directions. The network construction method has been implemented and is freely available for use from http://www.uea.ac.uk/∼a043878/padre.html.Keywords
This publication has 27 references indexed in Scilit:
- Phylogenetic networks from multi-labelled treesJournal of Mathematical Biology, 2006
- Application of Phylogenetic Networks in Evolutionary StudiesMolecular Biology and Evolution, 2005
- Novel patterns of gene expression in polyploid plantsTrends in Genetics, 2005
- Networks in phylogenetic analysis: new tools for population biologyInternational Journal for Parasitology, 2005
- Reconstructing patterns of reticulate evolution in plantsAmerican Journal of Botany, 2004
- Evolution of the perennial soybean polyploid complex (Glycine subgenus Glycine): a study of contrastsBiological Journal of the Linnean Society, 2004
- Ribosomal ITS sequences and plant phylogenetic inferenceMolecular Phylogenetics and Evolution, 2003
- Rapid diversification of the cotton genus (Gossypium: Malvaceae) revealed by analysis of sixteen nuclear and chloroplast genesAmerican Journal of Botany, 2002
- Efficient algorithms for lateral gene transfer problemsPublished by Association for Computing Machinery (ACM) ,2001
- Mosaic bacterial chromosomes: a challenge en route to a tree of genomesBioEssays, 1999