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利用基于现场可编程门阵列(FPGA)的系统加速下一代长读长映射

Accelerating the Next Generation Long Read Mapping with the FPGA-Based System.

作者信息

Chen Peng, Wang Chao, Li Xi, Zhou Xuehai

出版信息

IEEE/ACM Trans Comput Biol Bioinform. 2014 Sep-Oct;11(5):840-52. doi: 10.1109/TCBB.2014.2326876.

Abstract

To compare the newly determined sequences against the subject sequences stored in the databases is a critical job in the bioinformatics. Fortunately, recent survey reports that the state-of-the-art aligners are already fast enough to handle the ultra amount of short sequence reads in the reasonable time. However, for aligning the long sequence reads (>400 bp) generated by the next generation sequencing (NGS) technology, it is still quite inefficient with present aligners. Furthermore, the challenge becomes more and more serious as the lengths and the amounts of the sequence reads are both keeping increasing with the improvement of the sequencing technology. Thus, it is extremely urgent for the researchers to enhance the performance of the long read alignment. In this paper, we propose a novel FPGA-based system to improve the efficiency of the long read mapping. Compared to the state-of-the-art long read aligner BWA-SW, our accelerating platform could achieve a high performance with almost the same sensitivity. Experiments demonstrate that, for reads with lengths ranging from 512 up to 4,096 base pairs, the described system obtains a 10x -48x speedup for the bottleneck of the software. As to the whole mapping procedure, the FPGA-based platform could achieve a 1.8x -3:3x speedup versus the BWA-SW aligner, reducing the alignment cycles from weeks to days.

摘要

在生物信息学中,将新测定的序列与数据库中存储的目标序列进行比较是一项关键工作。幸运的是,最近的调查报告显示,最先进的比对工具已经足够快,能够在合理时间内处理超大量的短序列 reads。然而,对于比对下一代测序(NGS)技术产生的长序列 reads(>400 bp),目前的比对工具仍然效率相当低。此外,随着测序技术的改进,序列 reads 的长度和数量都在不断增加,这一挑战变得越来越严峻。因此,研究人员迫切需要提高长 reads 比对的性能。在本文中,我们提出了一种新颖的基于 FPGA 的系统来提高长 reads 映射的效率。与最先进的长 reads 比对工具 BWA-SW 相比,我们的加速平台在几乎相同的灵敏度下能够实现高性能。实验表明,对于长度从 512 到 4096 个碱基对的 reads,所描述的系统在软件瓶颈方面实现了 10 倍至 48 倍的加速。对于整个映射过程,基于 FPGA 的平台相对于 BWA-SW 比对工具能够实现 1.8 倍至 3.3 倍的加速,将比对周期从数周缩短至数天。

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