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Next-Generation Sequence Assembly: Four Stages of Data Processing and Computational Challenges

机译:下一代序列组装:数据处理和计算挑战的四个阶段

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摘要

Decoding DNA symbols using next-generation sequencers was a major breakthrough in genomic research. Despite the many advantages of next-generation sequencers, e.g., the high-throughput sequencing rate and relatively low cost of sequencing, the assembly of the reads produced by these sequencers still remains a major challenge. In this review, we address the basic framework of next-generation genome sequence assemblers, which comprises four basic stages: preprocessing filtering, a graph construction process, a graph simplification process, and postprocessing filtering. Here we discuss them as a framework of four stages for data analysis and processing and survey variety of techniques, algorithms, and software tools used during each stage. We also discuss the challenges that face current assemblers in the next-generation environment to determine the current state-of-the-art. We recommend a layered architecture approach for constructing a general assembler that can handle the sequences generated by different sequencing platforms.
机译:使用下一代测序仪对DNA符号进行解码是基因组研究的重大突破。尽管下一代测序仪具有许多优点,例如高通量测序速率和相对较低的测序成本,但是由这些测序仪产生的读段的组装仍然是主要的挑战。在这篇综述中,我们介绍了下一代基因组序列装配器的基本框架,该框架包括四个基本阶段:预处理过滤,图构建过程,图简化过程和后处理过滤。在这里,我们将它们作为四个阶段的框架进行讨论,以进行数据分析和处理,并调查每个阶段使用的各种技术,算法和软件工具。我们还将讨论下一代环境中当前组装商面临的挑战,以确定当前的最新技术水平。我们建议使用分层体系结构方法来构建可处理由不同测序平台生成的序列的通用汇编程序。

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