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Archaeon and archaeal virus diversity classification via sequence entropy and fractal dimension

机译:通过序列熵和分形维数对古细菌和古细菌的多样性进行分类

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Archaea are important potential candidates in astrobiology as their metabolism includes solar, inorganic and organic energy sources. Archaeal viruses would also be expected to be present in a sustainable archaeal exobiological community. Genetic sequence Shannon entropy and fractal dimension can be used to establish a two-dimensional measure for classification and phylogenetic study of these organisms. A sequence fractal dimension can be calculated from a numerical series consisting of the atomic numbers of each nucleotide. Archaeal 16S and 23S ribosomal RNA sequences were studied. Outliers in the 16S rRNA fractal dimension and entropy plot were found to be halophilic archaea. Positive correlation (R-square ~ 0.75, N = 18) was observed between fractal dimension and entropy across the studied species. The 16S ribosomal RNA sequence entropy correlates with the 23S ribosomal RNA sequence entropy across species with R-square 0.93, N = 18. Entropy values correspond positively with branch lengths of a published phylogeny. The studied archaeal virus sequences have high fractal dimensions of 2.02 or more. A comparison of selected extremophile sequences with archaeal sequences from the Humboldt Marine Ecosystem database (Wood-Hull Oceanography Institute, MIT) suggests the presence of continuous sequence expression as inferred from distributions of entropy and fractal dimension, consistent with the diversity expected in an exobiological archaeal community.
机译:古细菌是天体生物学的重要潜在候选者,因为它们的新陈代谢包括太阳能,无机和有机能源。预计古细菌也将存在于可持续的古细菌外生生物群落中。遗传序列的香农熵和分形维数可用于建立用于对这些生物进行分类和系统发育研究的二维量度。可以从由每个核苷酸的原子序数组成的数值序列计算序列分形维数。研究了古细菌的16S和23S核糖体RNA序列。发现16S rRNA分形维数和熵图中的异常值是嗜盐古细菌。在整个研究物种中,分形维数与熵之间存在正相关(R平方〜0.75,N = 18)。跨物种的16S核糖体RNA序列熵与23S核糖体RNA序列熵相关,R平方为0.93,N =18。熵值与已发布系统发育的分支长度成正比。研究的古细菌病毒序列具有2.02或更高的高分形维数。通过比较洪堡海洋生态系统数据库(麻省伍德霍尔海洋学研究所)中所选的极端微生物序列与古菌序列,发现存在连续序列表达,这是根据熵和分形维数的分布推断出来的,这与预期的生物古细菌多样性相一致。社区。

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