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Sensitive alignment using paralogous sequence variants improves long-read mapping and variant calling in segmental duplications

机译:使用旁晕序列变体的敏感对准改善​​了在分段重复中的长读取映射和变体呼叫

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摘要

The ability to characterize repetitive regions of the human genome is limited by the read lengths of short-read sequencing technologies. Although long-read sequencing technologies such as Pacific Biosciences (PacBio) and Oxford Nanopore Technologies can potentially overcome this limitation, long segmental duplications with high sequence identity pose challenges for long-read mapping. We describe a probabilistic method, DuploMap, designed to improve the accuracy of long-read mapping in segmental duplications. It analyzes reads mapped to segmental duplications using existing long-read aligners and leverages paralogous sequence variants (PSVs)—sequence differences between paralogous sequences—to distinguish between multiple alignment locations. On simulated datasets, DuploMap increased the percentage of correctly mapped reads with high confidence for multiple long-read aligners including Minimap2 (74.3–90.6%) and BLASR (82.9–90.7%) while maintaining high precision. Across multiple whole-genome long-read datasets, DuploMap aligned an additional 8–21% of the reads in segmental duplications with high confidence relative to Minimap2. Using DuploMap-aligned PacBio circular consensus sequencing reads, an additional 8.9 Mb of DNA sequence was mappable, variant calling achieved a higher F1 score and 14 713 additional variants supported by linked-read data were identified. Finally, we demonstrate that a significant fraction of PSVs in segmental duplications overlaps with variants and adversely impacts short-read variant calling.
机译:表征人类基因组的重复区域的能力受短读测序技术的读取长度的限制。尽管太平洋生物科学(PACBIO)和牛津纳米孔技术等长读测序技术可能会克服这种限制,但具有高序列同一性的长期分段重复造成挑战,对于长读映射。我们描述了一种概率方法,Duplomap,旨在提高节段重复中的长读映射的准确性。它分析了使用现有的长读对方器映射到分段重复的读取,并利用递质序列变体(PSV)序列序列之间的序列差异 - 区分多个对准位置。在模拟数据集上,Duplomap增加了正确映射读数的百分比,对于多个长读对准器,包括Minimap2(74.3-90.6%)和Blasr(82.9-90.7%),同时保持高精度。在多个全基因组长读数据集中,Duplomap在节段形重复中额外的8-21%的读取,相对于Minimap2具有高置信度。使用Duplomap对齐的PACBIO循环共有测序测序读取,额外的8.9mb DNA序列是可映射的,变体呼叫实现了较高的F1得分,并且识别通过链接读取数据支持的额外变体。最后,我们证明了分段重复的显着分数与变体重叠,并且不利地影响短读变体呼叫。

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