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Efficient mining structural motifs for biosequences with intra- and inter-block gap constraints

机译:具有区块内和区块间间隙约束的生物序列的高效挖掘结构基序

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Among the biological sequences, sequential pattern mining reveals implicit motifs/patterns, which are of functional significance and have specific structures. Small alphabets and long sequences, such as DNA and protein sequences, are difficult to handle by traditional sequential pattern mining algorithms. Furthermore, the intra- and inter-blocked gap constraints can deal with the substitutions, insertions, loops, and deletions in evolution process. Hence we propose an approach called Depth-first spelling algorithm for mining structural motifs with Intra- and inter-Block gap constraints in biological sequences (referred to as DIB). DIB has two execution steps. First, it constructs a three-dimensional table of sequences by scanning the given dataset once. Second, DIB-Exuberance generates intra- and inter-blocked gap sequential patterns. Candidate intra- and inter-blocked gap sequential pattern spelling and pattern verification are carried out by DIB-Exuberance in a depth-first manner. Intra and inter gap constraints are handled by the intra- and inter-block counting matrices. The block size matrix deals with intra- and inter-block size constraints. In biological sequences, DIB's runtime is much shorter than BASIC.
机译:在生物序列中,顺序模式挖掘揭示了隐含的基元/模式,这些基元/模式具有功能意义并具有特定的结构。传统的顺序模式挖掘算法很难处理小字母和长序列,例如DNA和蛋白质序列。此外,块内和块间的间隙约束可以处理进化过程中的替换,插入,循环和删除。因此,我们提出了一种称为深度优先拼写算法的方法,该方法用于挖掘在生物序列中具有块内和块间间隙约束的结构基序(称为DIB)。 DIB有两个执行步骤。首先,它通过扫描给定的数据集构建一个三维序列表。其次,DIB-Exuberance生成块内和块间间隙顺序模式。 DIB-Exuberance以深度优先的方式执行候选的块内和块间间隙顺序图案拼写和图案验证。间隙内和间隙间约束由块内和块间计数矩阵处理。块大小矩阵处理块内和块间大小约束。在生物学序列中,DIB的运行时间比BASIC短。

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