首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Comparative analysis of bacterial essential and nonessential genes with Hurst exponent based on chaos game representation
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Comparative analysis of bacterial essential and nonessential genes with Hurst exponent based on chaos game representation

机译:基于混沌博弈表示法的细菌必需基因和非必需基因与赫斯特指数的比较分析

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Essential genes are indispensable for the survival of an organism. Investigating features associated with gene essentiality is fundamental to the prediction and identification of essential genes with computational techniques. We use fractal theory approach to make comparative analysis of essential and nonessential genes in bacteria. The Hurst exponents of essential genes and nonessential genes available in the DEG database for 27 bacteria are calculated based on their gene chaos game representations. It is found that for most analyzed bacteria, weak negative correlation exists between Hurst exponent and gene length. Moreover, essential genes generally differ from nonessential genes in their Hurst exponent. For genes of similar length, the average Hurst exponent of essential genes is smaller than that of nonessential genes. The results of our work reveal that gene Hurst exponent is very probably useful gene feature for the algorithm predicting essential genes. (C) 2014 Elsevier Ltd. All rights reserved.
机译:必需基因对于生物的生存是必不可少的。研究与基因必需性相关的特征是使用计算技术预测和鉴定必需基因的基础。我们使用分形理论方法对细菌中必需和非必需基因进行比较分析。根据DEG数据库中27种细菌的必需基因和非必需基因的Hurst指数,基于它们的基因混沌游戏表示来计算。发现对于大多数分析细菌,赫斯特指数与基因长度之间存在弱的负相关性。此外,必需基因的赫斯特指数通常不同于非必需基因。对于相似长度的基因,必需基因的平均赫斯特指数小于非必需基因的平均赫斯特指数。我们的工作结果表明,基因赫斯特指数很可能对预测必需基因的算法有用。 (C)2014 Elsevier Ltd.保留所有权利。

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