Molecular Biology and Evolution · 1999 · 350 citations · 22 references
Chaotic Dynamical SystemsDnaNew ToolComparative GenomicsGeneticsGenomicsSequence AlignmentPhylogeneticsMolecular EcologyEvolutionary DynamicDna SequencingGenome StudySequence AnalysisGenome StructureDna ReplicationGenetic VariationPopulation GeneticsBioinformaticsWhole GenomeBiologyPattern FormationChaos Game RepresentationNatural SciencesEvolutionary BiologyComputational BiologyGenomic SignatureMedicineSequence Assembly
We explored DNA structures of genomes by means of a new tool derived from the "chaotic dynamical systems" theory (the so-called chaos game representation [CGR]), which allows the depiction of frequencies of oligonucleotides in the form of images. Using CGR, we observe that subsequences of a genome exhibit the main characteristics of the whole genome, attesting to the validity of the genomic signature concept. Base concentrations, stretches (runs of complementary bases or purines/pyrimidines), and patches (over- or underexpressed words of various lengths) are the main factors explaining the variability observed among sequences. The distance between images may be considered a measure of phylogenetic proximity. Eukaryotes and prokaryotes can be identified merely on the basis of their DNA structures.
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Enzymatic Synthesis of Deoxyribonucleic Acid
John Josse, A.D. Kaiser, Arthur Kornberg · Journal of Biological Chemistry · 1961 · 754 citations · Full text
Chaos game representation of gene structure
H. Joel Jeffrey · Nucleic Acids Research · 1990 · 735 citations · Full text