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Ancient DNA sequence revealed by error-correcting codes

机译:纠错码揭示了古代DNA序列

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摘要

A previously described DNA sequence generator algorithm (DNA-SGA) using error-correcting codes has been employed as a computational tool to address the evolutionary pathway of the genetic code. The code-generated sequence alignment demonstrated that a residue mutation revealed by the code can be found in the same position in sequences of distantly related taxa. Furthermore, the code-generated sequences do not promote amino acid changes in the deviant genomes through codon reassignment. A Bayesian evolutionary analysis of both code-generated and homologous sequences of the Arabidopsis thaliana malate dehydrogenase gene indicates an approximately 1 MYA divergence time from the MDH code-generated sequence node to its paralogous sequences. The DNA-SGA helps to determine the plesiomorphic state of DNA sequences because a single nucleotide alteration often occurs in distantly related taxa and can be found in the alternative codon patterns of noncanonical genetic codes. As a consequence, the algorithm may reveal an earlier stage of the evolution of the standard code.
机译:先前描述的使用纠错码的DNA序列生成器算法(DNA-SGA)已被用作计算工具,以解决遗传密码的进化途径。代码产生的序列比对证明,由代码揭示的残基突变可在远缘相关的分类群的序列中的相同位置发现。此外,代码生成的序列不会通过密码子重新分配促进异常基因组中的氨基酸变化。对拟南芥苹果酸脱氢酶基因的编码产生和同源序列的贝叶斯进化分析表明,从MDH编码产生的序列节点到其同源序列大约有1 MYA的分歧时间。 DNA-SGA有助于确定DNA序列的多态性,因为单核苷酸改变经常发生在远缘的分类单元中,并且可以在非规范遗传密码的替代密码子模式中找到。结果,该算法可以揭示标准代码发展的早期阶段。

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