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BS Seeker:亚硫酸氢盐测序的精确图谱绘制。

BS Seeker: precise mapping for bisulfite sequencing.

机构信息

Department of Molecular, Cell, and Developmental Biology, University of California, Los Angeles, CA, USA.

出版信息

BMC Bioinformatics. 2010 Apr 23;11:203. doi: 10.1186/1471-2105-11-203.

Abstract

BACKGROUND

Bisulfite sequencing using next generation sequencers yields genome-wide measurements of DNA methylation at single nucleotide resolution. Traditional aligners are not designed for mapping bisulfite-treated reads, where the unmethylated Cs are converted to Ts. We have developed BS Seeker, an approach that converts the genome to a three-letter alphabet and uses Bowtie to align bisulfite-treated reads to a reference genome. It uses sequence tags to reduce mapping ambiguity. Post-processing of the alignments removes non-unique and low-quality mappings.

RESULTS

We tested our aligner on synthetic data, a bisulfite-converted Arabidopsis library, and human libraries generated from two different experimental protocols. We evaluated the performance of our approach and compared it to other bisulfite aligners. The results demonstrate that among the aligners tested, BS Seeker is more versatile and faster. When mapping to the human genome, BS Seeker generates alignments significantly faster than RMAP and BSMAP. Furthermore, BS Seeker is the only alignment tool that can explicitly account for tags which are generated by certain library construction protocols.

CONCLUSIONS

BS Seeker provides fast and accurate mapping of bisulfite-converted reads. It can work with BS reads generated from the two different experimental protocols, and is able to efficiently map reads to large mammalian genomes. The Python program is freely available at http://pellegrini.mcdb.ucla.edu/BS_Seeker/BS_Seeker.html.

摘要

背景

使用下一代测序仪进行亚硫酸盐测序可实现单核苷酸分辨率的全基因组 DNA 甲基化测量。传统的比对器不是为映射经亚硫酸盐处理的读取而设计的,其中未甲基化的 Cs 被转化为 Ts。我们开发了 BS Seeker,这是一种将基因组转换为三字母字母表并使用 Bowtie 将经亚硫酸盐处理的读取映射到参考基因组的方法。它使用序列标签来减少映射歧义。对齐的后处理去除非唯一和低质量的映射。

结果

我们在合成数据、经亚硫酸盐转化的拟南芥文库以及根据两种不同实验方案生成的人类文库上测试了我们的对齐器。我们评估了我们的方法的性能并将其与其他亚硫酸盐对齐器进行了比较。结果表明,在所测试的对齐器中,BS Seeker 更通用且更快。在映射到人类基因组时,BS Seeker 生成的对齐比 RMAP 和 BSMAP 快得多。此外,BS Seeker 是唯一能够明确考虑某些文库构建方案生成的标签的对齐工具。

结论

BS Seeker 提供了快速准确的经亚硫酸盐转化读取的映射。它可以与两种不同实验方案生成的 BS 读取配合使用,并且能够有效地将读取映射到大哺乳动物基因组。Python 程序可在 http://pellegrini.mcdb.ucla.edu/BS_Seeker/BS_Seeker.html 免费获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e8c/2871274/ad7c9197cdc1/1471-2105-11-203-1.jpg

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