Messaoudi Imen, Oueslati Afef Elloumi, Lachiri Zied
Ecole Nationale d'Ingénieurs de Tunis, LR Signal, Images et Technologies de l'Information, Université de Tunis El Manar, BP 37, le Belvédère, Tunis, 1002 Tunisia.
Département de Génie Physique et Instrumentation, INSAT, Centre Urbain Cedex, BP 676, Tunis, 1080 Tunisia.
EURASIP J Bioinform Syst Biol. 2014 Sep 12;2014:16. doi: 10.1186/s13637-014-0016-z. eCollection 2014 Dec.
Challenging tasks are encountered in the field of bioinformatics. The choice of the genomic sequence's mapping technique is one the most fastidious tasks. It shows that a judicious choice would serve in examining periodic patterns distribution that concord with the underlying structure of genomes. Despite that, searching for a coding technique that can highlight all the information contained in the DNA has not yet attracted the attention it deserves. In this paper, we propose a new mapping technique based on the chaos game theory that we call the frequency chaos game signal (FCGS). The particularity of the FCGS coding resides in exploiting the statistical properties of the genomic sequence itself. This may reflect important structural and organizational features of DNA. To prove the usefulness of the FCGS approach in the detection of different local periodic patterns, we use the wavelet analysis because it provides access to information that can be obscured by other time-frequency methods such as the Fourier analysis. Thus, we apply the continuous wavelet transform (CWT) with the complex Morlet wavelet as a mother wavelet function. Scalograms that relate to the organism exhibit a multitude of periodic organization of specific DNA sequences.
生物信息学领域面临着具有挑战性的任务。基因组序列映射技术的选择是最棘手的任务之一。这表明明智的选择有助于研究与基因组潜在结构一致的周期性模式分布。尽管如此,寻找一种能够突出DNA中所有信息的编码技术尚未得到应有的关注。在本文中,我们提出了一种基于混沌博弈理论的新映射技术,我们称之为频率混沌博弈信号(FCGS)。FCGS编码的特殊性在于利用基因组序列本身的统计特性。这可能反映了DNA重要的结构和组织特征。为了证明FCGS方法在检测不同局部周期性模式方面的有效性,我们使用小波分析,因为它能够获取其他时频方法(如傅里叶分析)可能会掩盖的信息。因此,我们应用以复Morlet小波作为母小波函数的连续小波变换(CWT)。与生物体相关的尺度图展示了特定DNA序列的多种周期性组织。