Molecular Biology and Evolution, Vol 12, 823-833, Copyright © 1995 by Society for Molecular Biology and Evolution
N Takezaki, A Rzhetsky and M Nei
To estimate approximate divergence times of species or species groups with
molecular data, we have developed a method of constructing a linearized
tree under the assumption of a molecular clock. We present two tests of the
molecular clock for a given topology: two-cluster test and branch-length
test. The two-cluster test examines the hypothesis of the molecular clock
for the two lineages created by an interior node of the tree, whereas the
branch-length test examines the deviation of the branch length between the
tree root and a tip from the average length. Sequences evolving excessively
fast or slow at a high significance level may be eliminated. A linearized
tree will then be constructed for a given topology for the remaining
sequences under the assumption of rate constancy. We have used these
methods to analyze hominoid mitochondrial DNA and drosophilid Adh gene
sequences.
ORIGINAL ARTICLE
Phylogenetic test of the molecular clock and linearized trees
Institute of Molecular Evolutionary Genetics, Pennsylvania State University, University Park 16802, USA.
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A. Termonia, T. H. Hsiao, J. M. Pasteels, and M. C. Milinkovitch Feeding specialization and host-derived chemical defense in Chrysomeline leaf beetles did not lead to an evolutionary dead end PNAS, March 16, 2001; (2001) 61034598. [Abstract] [Full Text] |
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