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Hierarchical structure of cascade of primary and secondary periodicities in Fourier power spectrum of alphoid higher order repeats.

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TLDR
DFT provides a robust detection method for higher order periodicity and is robust with respect to monomer insertions and deletions, random sequence insertions etc.
Abstract
Background Identification of approximate tandem repeats is an important task of broad significance and still remains a challenging problem of computational genomics. Often there is no single best approach to periodicity detection and a combination of different methods may improve the prediction accuracy. Discrete Fourier transform (DFT) has been extensively used to study primary periodicities in DNA sequences. Here we investigate the application of DFT method to identify and study alphoid higher order repeats.

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References
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Journal ArticleDOI

Periodicity of base correlation in nucleotide sequence

TL;DR: In this paper, a model of coding sequences is proposed and the origin of 3-periodicity is explained, and the possible occurrence of a hidden periodicity of base correlation with no peak in the spectrum is discussed.
Journal ArticleDOI

The informational concept of searching for periodicity in symbol sequences

TL;DR: The functional and structural role of hidden periodicity is discussed, and the method developed has been applied to reveal hidden periodicities in nucleotide and amino acid sequences, as well as in different poetical texts.
Journal ArticleDOI

OMWSA: detection of DNA repeats using moving window spectral analysis

TL;DR: A new method and a visualization tool for detecting DNA repeats in a 2D plane of location and frequency by using optimized moving window spectral analysis and the spectrogram can display the general distribution of repetitive sequences while showing the repeat period, length and location without any prior knowledge.
Journal ArticleDOI

A novel signal processing measure to identify exact and inexact tandem repeat patterns in DNA sequences

TL;DR: An algorithm to identify the exact and inexact repeat patterns in DNA sequences based on orthogonal exactly periodic subspace decomposition technique based on a new measure, where is the length of DNA sequence and is the window length, for identifying repeats.
Journal ArticleDOI

Gene identification in bacterial and organellar genomes using GeneScan.

TL;DR: The performance of the GeneScan algorithm for gene identification has been improved by incorporation of a directed iterative scanning procedure and sensitivity was found to improve in both the Open Reading Frames (ORFs) which have been identified as genes and those that are classified as hypothetical.
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