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How to describe genes: Enlightenment from the quaternary number system

机译:如何描述基因:四元数系统的启示

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摘要

As an open problem, computational gene identification has been widely studied, and many gene finders (software) become available today. However, little attention has been given to the problem of describing the common features of known genes in databanks to transform raw data into human understandable knowledge. In this paper, we draw attention to the task of describing genes and propose a trial implementation by treating DNA sequences as quaternary numbers. Under such a treatment, the common features of genes can be represented by a “position weight function”, the core concept for a number system. In principle, the “position weight function” can be any real-valued function. In this paper, by approximating the function using trigonometric functions, some characteristic parameters indicating single nucleotide periodicities were obtained for the bacteria Escherichia coli K12's genome and the eukaryote yeast's genome. As a byproduct of this approach, a single-nucleotide-level measure is derived that complements codon-based indexes in describing the coding quality and expression level of an open reading frame (ORF). The ideas presented here have the potential to become a general methodology for biological sequence analysis.
机译:作为一个未解决的问题,计算基因识别已得到广泛研究,并且今天有许多基因发现器(软件)可用。但是,很少有人关注描述数据库中已知基因的共同特征以将原始数据转化为人类可理解的知识的问题。在本文中,我们提请注意描述基因的任务,并通过将DNA序列视为四进制数来提出试验实现。通过这种处理,基因的共同特征可以用“位置权重函数”来表示,这是数字系统的核心概念。原则上,“位置权重函数”可以是任何实值函数。在本文中,通过使用三角函数对函数进行逼近,获得了指示细菌K12细菌基因组和真核生物酵母基因组的一些特征参数,这些参数表明了单核苷酸周期性。作为这种方法的副产品,在描述开放阅读框(ORF)的编码质量和表达水平时,衍生了一种单核苷酸水平的测量方法,可对基于密码子的索引进行补充。这里提出的想法有可能成为生物学序列分析的通用方法。

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