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Wavelet-based multifractal analysis of C.elegans sequences based on FCGS signal

机译:基于FCGS信号的C.Elegans序列的基于小波的多重分术分析

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The frequency chaos game signal (FCGS) is a new mapping technique of DNA sequences inspired by the Chaos Game theory. It has the particularity of exploiting the statistical properties of the genomic sequences composition which may serve in detecting interesting structures within the DNA sequences. Unlike the classical DNA sequences coding techniques, where the nucleotides are assigned numerical values depending on their chemical and structural characteristics, the advantage of the FCGS coding method is its invariance concerning the assignment of nucleotides to their numerical values. Mapping nucleotide sequences by the FCGS technique produces a multifractal landscape that can be studied quantitatively by applying the so-called wavelet transform modulus maxima method (WTMM). This method provides a natural generalization of the classical box-counting techniques for the multifractal signal analysis. In fact, the wavelets are playing the role of generalized oscillating boxes. In this paper, we use the WTMM method to perform a multifractal analysis of the C.elegans genome using FCGS signal with order two. First, we generate the FCGS signal of particulars C.elegans genome regions like exon, intron, Helitron, CERP3, and CEREP55. Next, we apply the WTMM to calculate the singularity spectrum. Finally, we prove, with the obtained results, the multifractal nature of this genome and the variability of this multifractal characteristic according to the region studied. We also discover that this variability was mainly dependent on differences in the contents of repetitive DNA in each DNA sequence. This approach will be used to characterize sequences to allow their automatic classification. The technique aims to characterize structural and functional regions of chromosomes in genomes and will help later to explore automatically and study unidentified sequences.
机译:频率混沌游戏信号(FCGS)是由混沌博弈理论启发的DNA序列的新型映射技术。它具有利用基因组序列组合物的统计性质的特殊性,其可用于检测DNA序列内的有趣结构。与经典DNA序列编码技术不同,根据其化学和结构特征将核苷酸分配数值,则FCGS编码方法的优点是其与其数值分配核苷酸的不变性。通过FCGS技术映射核苷酸序列产生多重术景观,可以通过施加所谓的小波变换模量最大值方法(WTMM)来定量地研究。该方法提供了用于多法分析的经典盒计数技术的天然概括。实际上,小波正在扮演广义振荡箱的作用。在本文中,我们使用WTMM方法对C.elegans基因组的多重分析进行使用,使用FCGS信号与顺序。首先,我们生成特定的C.Elegans基因组区域的FCGS信号,如外显子,内含子,HELITRON,CERP3和CEREP55。接下来,我们应用WTMM计算奇点谱。最后,通过所获得的结果,我们证明了这种基因组的多分泌性质和根据所研究的区域的这种多重角度的可变性。我们还发现这种可变性主要取决于每种DNA序列中重复DNA含量的差异。这种方法将用于表征序列以允许其自动分类。该技术旨在表征基因组中的染色体的结构和功能区域,并有助于自动探索并研究身份不明的序列。

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