An information-based sequence distance and its application to whole mitochondrial genome phylogeny
Информационно-теоретическое расстояние между последовательностями и его применение к филогении полных митохондриальных геномов
2001-02-01
SCID: 54.1/nzbs2b85
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Eutherian phylogenyKolmogorov complexityalignment-free sequence distanceunaligned sequenceswhole mitochondrial genome phylogeny
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Abstract (AI)
MOTIVATION: Traditional sequence distances require an alignment and therefore are not directly applicable to the problem of whole genome phylogeny where events such as rearrangements make full length alignments impossible. We present a sequence distance that works on unaligned sequences using the information theoretical concept of Kolmogorov complexity and a program to estimate this distance. RESULTS: We establish the mathematical foundations of our distance and illustrate its use by constructing a phylogeny of the Eutherian orders using complete unaligned mitochondrial genomes. This phylogeny is consistent with the commonly accepted one for the Eutherians. A second, larger mammalian dataset is also analyzed, yielding a phylogeny generally consistent with the commonly accepted one for the mammals. AVAILABILITY: The program to estimate our sequence distance, is available at http://www.cs.cityu.edu.hk/~cssamk/gencomp/GenCompress1.htm. The distance matrices used to generate our phylogenies are available at http://www.math.uwaterloo.ca/~mli/distance.html.
Key Findings
1
Analysis of a larger mammalian dataset generated a phylogeny generally consistent with the accepted mammalian phylogeny.
2
Applying the method to complete, unaligned mitochondrial genomes produced an Eutherian phylogeny consistent with the commonly accepted evolutionary relationships.
3
The distance is based on Kolmogorov complexity, and the authors establish its mathematical foundations and provide an estimation program.
4
The distance-estimation software and phylogenetic distance matrices are made publicly available.
5
The paper introduces an information-theoretic sequence distance for comparing unaligned sequences, avoiding the need for full-length alignments.
Research Object
complete unaligned mitochondrial genomes from Eutherian orders and mammals
Research Subject
phylogenetic relationships inferred from information-based distances between whole mitochondrial genomes, including relationships among Eutherian orders and mammals
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2001-02-01
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