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Evaluation of the Persistence of Higher-Order Strand Symmetry in Genomic Sequences by Novel Word Symmetry Distance Analysis

机译:通过新型词对称距离分析评估基因组序列中高阶链对称性的持久性

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摘要

For the ubiquitous phenomenon of strand symmetry, it has been shown that it may persist for higher-order oligonucleotides. However, there is no consensus about to what extent (order of oligonucleotides or length of words) strand symmetry still persists. To determine the extent of strand symmetry in genomic sequences is critically important for the further understanding of the phenomenon. Based on previous studies, we have developed an algorithm for the novel word symmetry distance analysis. We applied it to evaluate the higher-order strand symmetry for 206 archaeal genomes and 2,659 bacterial genomes. Our results show that the new approach could provide a clear-cut criterion to determine the extent of strand symmetry for a group of genomes or individual genomes. According to the new measure, strand symmetry would tend to persist for up to 8-mers in archaeal genomes, and up to 9-mers in bacterial genomes. And the persistence may vary from 6- to 9-mers in individual genomes. Moreover, higher-order strand symmetry would tend to positively correlate with GC content and mononucleotide symmetry levels of genomic sequences. The variations of higher-order strand symmetry among genomes would indicate that strand symmetry itself may not be strictly relevant to biological functions, which would provide some insights into the origin and evolution of the phenomenon.
机译:对于普遍存在的链对称现象,已经表明它对于高阶寡核苷酸可能持续存在。但是,关于链对称性在多大程度上(寡核苷酸顺序或单词长度)仍然存在,尚无共识。确定基因组序列中链对称的程度对于进一步了解该现象至关重要。在先前研究的基础上,我们开发了一种新颖的词对称距离分析算法。我们将其用于评估206个古细菌基因组和2659个细菌基因组的高阶链对称性。我们的结果表明,新方法可以为确定一组基因组或单个基因组的链对称程度提供明确的标准。根据这项新措施,古细菌基因组中的链对称性将持续多达8个聚体,而细菌基因组中则将持续存在9个聚体。持久性在单个基因组中可能从6聚体到9聚体不等。而且,高阶链对称性倾向于与基因组序列的GC含量和单核苷酸对称性水平正相关。基因组之间高阶链对称性的变化将表明,链对称性本身可能与生物学功能不严格相关,这将为现象的起源和演变提供一些见识。

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