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Lack of Biological Significance in the ‘Linguistic Features' of Noncoding DNA—A Quantitative Analysis

机译:非编码DNA的“语言特征”中缺乏生物学意义的定量分析

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Recently, the application of two statistical methods (related to Zipf's distribution and Shannon's redundancy), called ‘linguistic' tests, to the primary structure of DNA sequences of living organisms has excited considerable interest. Of particular importance is the claim that noncoding DNA sequences in eukaryotes display specific ‘linguistic' features, being reminiscent of natural languages. Furthermore, this implies that noncoding regions of DNA may carry some new, thus far unknown, biological information which is revealed by these tests. In this paper these claims are tested quantitatively. With the aid of computer simulations of natural DNA sequences, and by applying the same ‘linguistic' tests to both natural and artificial sequences, we investigate in detail the reasons of the appearance of the claimed ‘linguistic' features and the associated differences between coding and noncoding DNAs. The presented results show quantitatively that the ‘linguistic' tests failed to reveal any new biological information in (noncoding or coding) DNA.
机译:最近,将两种统计方法(与Zipf的分布和Shannon的冗余有关)称为“语言”检验,应用于生物体DNA序列的一级结构引起了极大的兴趣。特别重要的是,声称真核生物中的非编码DNA序列具有特定的“语言”特征,让人联想到自然语言。此外,这暗示DNA的非编码区可能携带一些新的,迄今未知的生物学信息,这些信息揭示了这些测试。本文对这些声明进行了定量测试。借助计算机对天然DNA序列的模拟,并通过对天然序列和人工序列应用相同的“语言”测试,我们详细研究了所主张的“语言”特征出现的原因以及编码和编码之间相关的差异非编码DNA。给出的结果定量地表明,“语言”测试未能揭示(非编码或编码)DNA中的任何新生物学信息。

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