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首页> 外文期刊>American Journal of Bioinformatics >AN EFFICIENT DISTRIBUTED BIOINFORMATICS COMPUTING SYSTEM FOR DNA SEQUENCE ANALYSIS ON ENCODING SYSTEM | Science Publications
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AN EFFICIENT DISTRIBUTED BIOINFORMATICS COMPUTING SYSTEM FOR DNA SEQUENCE ANALYSIS ON ENCODING SYSTEM | Science Publications

机译:用于编码系统DNA序列分析的高效分布式生物信息学计算系统。科学出版物

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> This study provides an effective design of search technique of a distributed bioinformatics computing system for analysis of DNA sequences using OPTSDNA algorithm. This system could be used for disease detection, criminal forensic analysis, gene prediction, genetic system and protein analysis. Different types of distributed algorithms for the search and identification for DNA segments and repeat pattern in a given DNA sequence are developed. The search algorithm was developed to compute the number of DNA sequence which contains the same consecutive types of DNA segments. A distributed subsequence identifications algorithm was designed and implemented to detect the segment containing DNA sequences. Sequential and distributed implementation of these algorithms was executed with different length of search segments patterns and genetic sequences. OPTSDNA algorithm is used for storing various sizes of DNA sequence into database. DNA sequences of different lengths were tested by using this algorithm. These input DNA sequences varied in size from very small to very large. The performance of search technique distributed system is compared with sequential approach.
机译: >该研究为使用OPTSDNA算法分析DNA序列的分布式生物信息学计算系统的搜索技术提供了有效的设计。该系统可用于疾病检测,刑事司法鉴定,基因预测,遗传系统和蛋白质分析。开发了用于搜索和识别给定DNA序列中DNA片段和重复模式的不同类型的分布式算法。开发了搜索算法以计算包含相同连续类型DNA片段的DNA序列的数量。设计并实现了分布式子序列识别算法,以检测包含DNA序列的片段。这些算法的顺序和分布式实现是用不同长度的搜索片段模式和遗传序列执行的。 OPTSDNA算法用于将各种大小的DNA序列存储到数据库中。使用该算法测试了不同长度的DNA序列。这些输入的DNA序列的大小从很小到很大。将搜索技术分布式系统的性能与顺序方法进行了比较。

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