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Variant Map System to Simulate Complex Properties of DNA Interactions Using Binary Sequences

机译:使用二进制序列模拟DNA相互作用的复杂特性的变异图系统

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Stream cipher, DNA cryptography and DNA analysis are the most important R&D fields in both Cryptography and Bioinformatics. HC-256 is an emerged scheme as the new generation of stream ciphers for advanced network security. From a random sequencing viewpoint, both sequences of HC-256 and real DNA data may have intrinsic pseudo-random properties respectively. In a recent decade, many DNA sequencing projects are developed on cells, plants and animals over the world into huge DNA databases. Researchers notice that mammalian genomes encode thousands of large noncoding RNAs (lncRNAs), interact with chromatin regulatory complexes, and are thought to play a role in localizing these complexes to target loci across the genome. It is a challenge target using higher dimensional visualization tools to organize various complex interactive properties as visual maps. The Variant Map System (VMS) as an emerging scheme is systematically proposed in this paper to apply multiple maps that used four Meta symbols as same as DNA or RNA representations. System architecture of key components and core mechanism on the VMS are described. Key modules, equations and their I/O parameters are discussed. Applying the VM System, two sets of real DNA sequences from both sample human (noncoding DNA) and corn (coding DNA) genomes are collected in comparison with pseudo DNA sequences generated by HC-256 to show their intrinsic properties in higher levels of similar relationships among relevant DNA sequences on 2D maps. Sample 2D maps are listed and their characteristics are illustrated under controllable environment. Visual results are briefly analyzed to explore their intrinsic properties on selected genome sequences.
机译:流密码,DNA密码学和DNA分析是密码学和生物信息学中最重要的研发领域。 HC-256是作为用于高级网络安全性的新一代流密码而出现的方案。从随机测序的角度来看,HC-256和真实DNA数据序列可能分别具有固有的伪随机性质。在最近的十年中,许多DNA测序项目都在全世界的细胞,植物和动物上发展成庞大的DNA数据库。研究人员注意到,哺乳动物基因组编码成千上万个大型非编码RNA(lncRNA),并与染色质调节复合物相互作用,并被认为在将这些复合物定位到整个基因组的目标基因座中发挥作用。使用更高维度的可视化工具将各种复杂的交互属性组织为可视化地图是一个挑战性目标。本文系统地提出了一种变异图谱系统(VMS),以应用多个图谱,这些图谱使用与DNA或RNA表示相同的四个Meta符号。描述了VMS上关键组件的系统架构和核心机制。讨论了关键模块,方程式及其I / O参数。应用VM系统,与HC-256生成的伪DNA序列进行比较,从样本人类(非编码DNA)和玉米(编码DNA)基因组中收集了两组真实的DNA序列,以更高水平的相似关系显示其内在特性。在2D图上的相关DNA序列中。列出了示例2D贴图,并说明了可控环境下的特征。简要分析视觉结果以探索其在选定的基因组序列上的内在特性。

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