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首页> 外文期刊>IEEE transactions on nanobioscience >Signalign: An Ontology of DNA as Signal for Comparative Gene Structure Prediction Using Information-Coding-and-Processing Techniques
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Signalign: An Ontology of DNA as Signal for Comparative Gene Structure Prediction Using Information-Coding-and-Processing Techniques

机译:Signalign:DNA本体论,用于使用信息编码和处理技术进行比较基因结构预测

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摘要

Conventional character-analysis-based techniques in genome analysis manifest three main shortcomings—inefficiency, inflexibility, and incompatibility. In our previous research, a general framework, called DNA As X was proposed for character-analysis-free techniques to overcome these shortcomings, where X is the intermediates, such as digit, code, signal, vector, tree, graph network, and so on. In this paper, we further implement an ontology of DNA As Signal, by designing a tool named Signalign for comparative gene structure analysis, in which DNA sequences are converted into signal series, processed by modified method of dynamic time warping and measured by signal-to-noise ratio (SNR). The ontology of DNA As Signal integrates the principles and concepts of other disciplines including information coding theory and signal processing into sequence analysis and processing. Comparing with conventional character-analysis-based methods, Signalign can not only have the equivalent or superior performance, but also enrich the tools and the knowledge library of computational biology by extending the domain from character/string to diverse areas. The evaluation results validate the success of the character-analysis-free technique for improved performances in comparative gene structure prediction.
机译:基因组分析中基于传统字符分析的技术表现出三个主要缺陷:效率低下,缺乏灵活性和不兼容。在我们之前的研究中,提出了一种通用框架,称为DNA As X,用于无字符分析技术来克服这些缺点,其中X是诸如数字,代码,信号,矢量,树,图形网络等的中间物。上。在本文中,我们通过设计一个名为Signalign的用于比较基因结构分析的工具,进一步实现了DNA As Signal的本体,该工具中将DNA序列转换为信号序列,通过动态时间扭曲的改进方法进行处理,并通过Signal-to -噪声比(SNR)。 DNA As Signal的本体论将包括信息编码理论和信号处理在内的其他学科的原理和概念整合到序列分析和处理中。与传统的基于字符分析的方法相比,Signalign不仅可以具有同等或优越的性能,而且还可以通过将域从字符/字符串扩展到不同区域来丰富计算生物学的工具和知识库。评估结果验证了无字符分析技术在比较基因结构预测中提高性能的成功。

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