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SEDLÁŘ, K. ŠKUTKOVÁ, H. VÍTEK, M. PROVAZNÍK, I.
Original Title
Prokaryotic DNA Signal Downsampling for Fast Whole Genome Comparison
Type
journal article in Scopus
Language
English
Original Abstract
Classification of prokaryotes is mainly based on molecular data, since next-generation sequencing platforms provide fast and effective way to capture prokaryotes characteristics. However, two different bacterial strains of the same genus can differ in the specific parts of their genomes due to copious amounts of repetitive and transposable parts. Thus, finding an ideal segment of genome for comparison is difficult. Conventional character-based methods rely on multiple sequence alignment, rendering them extremely computationally demanding. Only small parts of genomes can be compared in reasonable time. In this paper, we present a novel algorithm based on the conversion of the whole genome sequences to cumulative phase signals. Dyadic wavelet transform (DWT) is used for lossy compression of phase signals by eliminating redundant frequency bands. Signal classification is then performed as cluster analysis using Euclidean metrics where sequence alignment is replaced by dynamic time warping (DTW).
Keywords
prokaryotes, genomic signal, cumulated phase, compression, classification, dwt, dtw
Authors
SEDLÁŘ, K.; ŠKUTKOVÁ, H.; VÍTEK, M.; PROVAZNÍK, I.
RIV year
2014
Released
1. 6. 2014
Publisher
Springer International Publishing
Location
Německo
ISBN
2194-5357
Periodical
Advances in Intelligent Systems and Computing
Year of study
283
Number
6
State
Swiss Confederation
Pages from
373
Pages to
383
Pages count
11
BibTex
@article{BUT107893, author="Karel {Sedlář} and Helena {Vítková} and Martin {Vítek} and Valentine {Provazník}", title="Prokaryotic DNA Signal Downsampling for Fast Whole Genome Comparison", journal="Advances in Intelligent Systems and Computing", year="2014", volume="283", number="6", pages="373--383", doi="10.1007/978-3-319-06593-9\{_}33", issn="2194-5357" }