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A new distribution vector and its application in genome clustering

机译:一种新的分布载体及其在基因组聚类中的应用

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摘要

In this paper we report a novel mathematical method to transform the DNA sequences into the distribution vectors which correspond to points in the sixty dimensional space. Each component of the distribution vector represents the distribution of one kind of nucleotide in k segments of the DNA sequences. The mathematical and statistical properties of the distribution vectors are demonstrated and examined with huge datasets of human DNA sequences and random sequences. The determined expectation and standard deviation can make the mapping stable and practicable. Moreover, we apply the distribution vectors to the clustering of the Haemagglutinin (HA) gene of 60 H1N1 viruses from Human, Swine and Avian, the complete mitochondrial genomes from 80 placental mammals and the complete genomes from 50 bacteria. The 60 H1N1 viruses, 80 placental mammals and 50 bacteria are classified accurately and rapidly compared to the multiple sequence alignment methods. The results indicate that the distribution vectors can reveal the similarity and evolutionary relationship among homologous DNA sequences based on the distances between any two of these distribution vectors. The advantage of fast computation offers the distribution vectors the opportunity to deal with a huge amount of DNA sequences efficiently.
机译:在本文中,我们报告了一种新颖的数学方法,可将DNA序列转化为与60维空间中的点相对应的分布向量。分布载体的每个成分代表一种核苷酸在DNA序列的k个片段中的分布。用巨大的人类DNA序列和随机序列数据集证明并检验了分布载体的数学和统计特性。确定的期望值和标准差可以使映射稳定且可行。此外,我们将分布载体应用于人类,猪和禽类的60株H1N1病毒的血凝素(HA)基因的聚类,80种胎盘哺乳动物的完整线粒体基因组和50种细菌的完整基因组。与多序列比对方法相比,可以准确快速地分类60种H1N1病毒,80种胎盘哺乳动物和50种细菌。结果表明,基于这些分布载体中任意两个之间的距离,分布载体可以揭示同源DNA序列之间的相似性和进化关系。快速计算的优势为分布载体提供了有效处理大量DNA序列的机会。

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