图论在进化封闭物种DNA相似性分析中的应用。

W. Karunasena, G. Wijesiri
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引用次数: 1

摘要

DNA是一种复杂的分子,由代代相传的生物信息组成。随着时间的推移,由于DNA序列重排的发生,从一个共同的祖先进化出了不同种类的物种。随着DNA数据库中序列数量的迅速增加,DNA序列相似性分析是一个重大挑战。在本研究中,我们基于图论的数学方法来分析两个DNA序列的相似性。该数学方法首先为每个DNA序列建模加权有向图,构造其邻接矩阵,并将其转换为每个图的代表向量。从这些向量,相似性是由距离测量,如欧几里得,余弦和相关性确定。通过将该方法作为基础方法,我们将检查它是否适用于考虑的基因组中的任何DNA片段,并且分子相似性系数可以用作距离测量。我们将使用图谱而不是代表性向量来获得相似度。然后将代表性向量的结果与图谱的结果进行比较。利用人类、大猩猩和猩猩的线粒体DNA对改进后的方法进行了测试。当DNA片段中核苷酸的数量增加时,结果也是一样的。
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Application of Graph Theory in DNA similarity analysis of Evolutionary Closed Species.
DNA is a complex molecule that consists of biological information that is passed down from generation to generation. With the evolution over time, there are different kinds of species that evolved from a common ancestor because of the occurrence of DNA sequence rearrangements. DNA sequence similarity analysis is a major challenge since the number of sequences is rapidly increasing in the DNA database. In this research, we based a mathematical method to analyze the similarity of two DNA sequences using Graph Theory. This mathematical method started by modeling a weighted directed graph for each DNA sequence, constructing its adjacency matrix, and converting it to the representative vector for each graph. From these vectors, the similarity was determined by distance measurements such as Euclidean, Cosine, and Correlation. By keeping this method as the based method, we will check whether it is applicable for any DNA fragments in considered genomes and molecular similarity coefficients can be used as distance measurements. We will obtain similarities using the graph spectrum instead of the representative vector. Then we will compare the results from the representative vector and that of the graph spectrum. The modified method is tested by using the mitochondrial DNA of Human, Gorilla, and Orangutan. It gives the same result when the number of nucleotides in DNA fragments is increased.
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