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Abstract

<title>Abstract</title> <p>We propose a new alignment-free algorithm by constructing a compact vector representation on \((\mathbb{R}^{24})\) of a DNA sequence of arbitrary length. Each component of this vector is obtained from a representative sequence, the elements of which are the values realized by a function \((\Gamma)\). This function \((\Gamma)\) acts on neighborhoods of arbitrary radius that are located at strategic positions within the DNA sequence and carries complete information about the local distribution of frequencies of the nucleotides as a consequence of the uniqueness of prime factorization of integer. The algorithm exhibits linear time complexity and turns out to consume significantly small memory. The two natural parameters characterizing the radius and location of the neighbourhoods are fixed by comparing the phylogenec tree with the benchmark for full genome sequences of fish mtDNA datasets. Using these fitting parameters, the method is applied to a number of genome sequences from benchmark and other standard datasets.Our algorithm proves to be computationally efficient compared to other well known algorithms when applied on simulated dataset.</p>

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Keywords

algorithm sequence vector arbitrary from

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