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y Cyclic Concatenated Genetic Encoder: A mathematical proposal for biological inferences

机译:Y循环级联遗传编码器:生物推迟的数学建议

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摘要

The organization of the genetic information and its ability to be conserved and translated to proteins with low error rates have been the subject of study by scientists from different disciplines. Recently, it has been proposed that living organisms display an intra-cellular transmission system of genetic information, similar to a model of digital communication system, in which there is the ability to detect and correct errors. In this work, the concept of Concatenated Genetic Encoder is introduced and applied to the analysis of protein sequences as a tool for exploring evolutionary relationships. For such purposes Error Correcting Codes (ECCs) are used to represent proteins. A methodology for representing or identifying proteins by use of BCH codes over Z(20) and F-4 x Z(5) is proposed and cytochrome b6-f complex subunit 6-OS sequences, corresponding to different plants species, are analyzed according to the proposed methodology and results are contrasted to phylogenetic and taxonomic analyses. Through the analyses, it was observed that using BCH codes only some sequences are identified, all of which differ in one amino acid from the original sequence. In addition, mathematical relationships among identified sequences are established by considering minimal polynomials, where such sequences showed a close relationship as revealed in the phylogenetic reconstruction. Results, here shown, point out that communication theory may provide biology of interesting and useful tools to identify biological relationships among proteins, however the proposed methodology needs to be improved and rigorously tested in order to become into an applicable tool for biological analysis. (C) 2017 Elsevier B.V. All rights reserved.
机译:遗传信息的组织及其被保守和转化为具有低错误率的蛋白质的能力是由来自不同学科的科学家研究的主题。最近,已经提出了生物体显示了遗传信息的内部蜂窝信息传输系统,类似于数字通信系统的模型,其中有能力检测和校正误差。在这项工作中,引入了级联遗传编码器的概念并应用于蛋白质序列的分析作为探索进化关系的工具。对于这种目的,纠错码(ECC)用于表示蛋白质。提出了通过在Z(20)和F-4×Z(5)上的BCH代码表示或鉴定蛋白质的方法,并根据不同植物物种进行细胞色素B6-F复合亚基6-OS序列。提出的方法和结果与系统发育和分类分析造影。通过分析,观察到使用BCH代码仅鉴定一些序列,所有这些序列都在原始序列中的一个氨基酸中不同。此外,通过考虑最小多项式来确定所识别的序列中的数学关系,其中这些序列显示出在系统发育重建中揭示的密切关系。结果表明,指出,通信理论可以提供有趣和有用的工具的生物学,以鉴定蛋白质中的生物关系,然而,需要改进和严格地测试所提出的方法,以便成为生物分析的适用工具。 (c)2017 Elsevier B.v.保留所有权利。

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