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The Maximal C 3 Self-Complementary Trinucleotide Circular Code X in Genes of Bacteria, Archaea, Eukaryotes, Plasmids and Viruses

机译:细菌,古细菌,真核生物,质粒和病毒基因中的最大C 3自互补三核苷酸环形密码X

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In 1996, a set X of 20 trinucleotides was identified in genes of both prokaryotes and eukaryotes which has on average the highest occurrence in reading frame compared to its two shifted frames. Furthermore, this set X has an interesting mathematical property as X is a maximal C 3 self-complementary trinucleotide circular code. In 2015, by quantifying the inspection approach used in 1996, the circular code X was confirmed in the genes of bacteria and eukaryotes and was also identified in the genes of plasmids and viruses. The method was based on the preferential occurrence of trinucleotides among the three frames at the gene population level. We extend here this definition at the gene level. This new statistical approach considers all the genes, i.e., of large and small lengths, with the same weight for searching the circular code X . As a consequence, the concept of circular code, in particular the reading frame retrieval, is directly associated to each gene. At the gene level, the circular code X is strengthened in the genes of bacteria, eukaryotes, plasmids, and viruses, and is now also identified in the genes of archaea. The genes of mitochondria and chloroplasts contain a subset of the circular code X . Finally, by studying viral genes, the circular code X was found in DNA genomes, RNA genomes, double-stranded genomes, and single-stranded genomes.
机译:在1996年,在原核生物和真核生物的基因中都鉴定出了由20个三核苷酸组成的集合X,与两个移位的框架相比,它们在阅读框中的发生率平均最高。此外,该集合X具有有趣的数学性质,因为X是最大的C 3自互补三核苷酸循环密码。 2015年,通过量化1996年使用的检查方法,在细菌和真核生物的基因中确认了圆形密码X,并且在质粒和病毒的基因中也确认了圆形密码。该方法基于在基因种群水平上三个框架中三核苷酸的优先出现。在这里,我们在基因水平上扩展该定义。这种新的统计方法考虑了具有相同权重的所有基因,即长短不一的基因,用于搜索循环码X。结果,循环编码的概念,特别是阅读框架的检索,直接与每个基因相关联。在基因水平上,圆形代码X在细菌,真核生物,质粒和病毒的基因中得到增强,现在也在古细菌的基因中得到鉴定。线粒体和叶绿体的基因包含圆形密码X的子集。最后,通过研究病毒基因,在DNA基因组,RNA基因组,双链基因组和单链基因组中发现了循环编码X。

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