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Mapping single molecule sequencing reads using basic local alignment with successive refinement (BLASR): application and theory

机译:使用基本局部对准与连续改进(BLASR)的基本局部对准进行映射单分子测序读取:应用和理论

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Background Recent methods have been developed to perform high-throughput sequencing of DNA by Single Molecule Sequencing (SMS). While Next-Generation sequencing methods may produce reads up to several hundred bases long, SMS sequencing produces reads up to tens of kilobases long. Existing alignment methods are either too inefficient for high-throughput datasets, or not sensitive enough to align SMS reads, which have a higher error rate than Next-Generation sequencing. Results We describe the method BLASR (Basic Local Alignment with Successive Refinement) for mapping Single Molecule Sequencing (SMS) reads that are thousands of bases long, with divergence between the read and genome dominated by insertion and deletion error. The method is benchmarked using both simulated reads and reads from a bacterial sequencing project. We also present a combinatorial model of sequencing error that motivates why our approach is effective. Conclusions The results indicate that it is possible to map SMS reads with high accuracy and speed. Furthermore, the inferences made on the mapability of SMS reads using our combinatorial model of sequencing error are in agreement with the mapping accuracy demonstrated on simulated reads.
机译:背景技术已经开发了最近的方法以通过单分子测序(SMS)对DNA进行高通量测序。虽然下一代测序方法可以产生高达几百个基础的读数,但是SMS测序产生高达几十只千碱基的读取。对于高吞吐数据集,现有的对齐方法是过于效率的,或者不足以对齐SMS读取的敏感,其具有比下一代测序更高的误差率。结果我们描述了用于映射单分子测序(SMS)读取的读取单分子测序(SMS)读取的方法Blasr(基本局部对准),这些读数是千碱基的读取,读取和基因组之间的分歧通过插入和删除误差主导。该方法使用模拟读取和从细菌测序项目读取的方法进行基准测试。我们还提出了一种序列误差的组合模型,激励为什么我们的方法是有效的。结论结果表明,可以以高精度和速度映射SMS读数。此外,在SMS测序误差的组合模型上读取的关于SMS读取的次次读取的推论与模拟读取的映射精度一致。

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