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Studying the evolutionary relationships and phylogenetic trees of 21 groups of tRNA sequences based on complex networks

机译:基于复杂网络研究21组tRNA序列的进化关系和系统树

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摘要

To find out the evolutionary relationships among different tRNA sequences of 21 amino acids, 22 networks are constructed. One is constructed from whole tRNAs, and the other 21 networks are constructed from the tRNAs which carry the same amino acids. A new method is proposed such that the alignment scores of any two amino acids groups are determined by the average degree and the average clustering coefficient of their networks. The anticodon feature of isolated tRNA and the phylogenetic trees of 21 group networks are discussed.We find that some isolated tRNA sequences in 21 networks still connect with other tRNAs outside their group, which reflects the fact that those tRNAs might evolve by intercrossing among these 21 groups. We also find that most anticodons among the same cluster are only one base different in the same sites when S ≥ 70, and they stay in the same rank in the ladder of evolutionary relationships. Those observations seem to agree on that some tRNAs might mutate from the same ancestor sequences based on point mutation mechanisms.
机译:为了找出21个氨基酸的不同tRNA序列之间的进化关系,构建了22个网络。一个由完整的tRNA构建而成,其他21个网络由携带相同氨基酸的tRNA构建而成。提出了一种新方法,使得任意两个氨基酸组的比对得分由其网络的平均程度和平均聚类系数确定。讨论了分离的tRNA的反密码子特征和21个组网络的系统进化树,我们发现21个网络中的一些分离的tRNA序列仍与该组外的其他tRNA连接,这反映出以下事实:这些tRNA可能会通过在这21个组中相互交叉而进化组。我们还发现,当S≥70时,同一簇中的大多数反密码子只有一个碱基不同,并且它们在进化关系的阶梯中保持相同的等级。这些观察似乎同意在点突变机制的基础上某些tRNA可能从相同的祖先序列突变而来。

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