Division of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South Korea.
Genomics. 2011 Nov;98(5):381-9. doi: 10.1016/j.ygeno.2011.07.002. Epub 2011 Jul 22.
Repetitive elements (REs) constitute a substantial portion of the genomes of human and other species; however, the RE profiles (type, density, and arrangement) within the individual genomes have not been fully characterized. In this study, we developed an RE analysis tool, called REMiner, for a chromosome-wide investigation into the occurrence of individual REs and arrangement of clusters of REs, and REMiner's functional features were examined using the human chromosome Y. The algorithm implemented by REMiner focused on unbiased mining of REs in large chromosomes and data interface within a viewer. The data from the chromosome demonstrated that REMiner is an efficient tool in regard to its capacity for a large query size and the availability of a high-resolution viewer, featuring instant retrieval of alignment data and control of magnification and identity ratio. The chromosome-wide survey identified a diverse population of ordered RE arrangements, which may participate in the genome biology.
重复元件 (REs) 构成了人类和其他物种基因组的重要部分;然而,个体基因组内的 RE 图谱(类型、密度和排列)尚未得到充分描述。在这项研究中,我们开发了一种重复元件分析工具,称为 REMiner,用于在染色体范围内研究单个重复元件的发生和重复元件簇的排列,并用人类染色体 Y 检验了 REMiner 的功能特征。REMiner 中实现的算法侧重于在大型染色体和查看器内的数据接口上进行无偏重复元件挖掘。染色体上的数据表明,REMiner 是一种高效的工具,它具有大容量查询和高分辨率查看器的可用性,能够即时检索比对数据,并控制放大倍数和同一性比例。全染色体调查确定了多样化的有序重复元件排列群体,它们可能参与了基因组生物学。