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Fast and accurate correction of optical mapping data via spaced seeds

机译:通过间隔种子快速准确地校正光学映射数据

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Motivation: Optical mapping data is used in many core genomics applications, including structural variation detection, scaffolding assembled contigs and mis-assembly detection. However, the pervasiveness of spurious and deleted cut sites in the raw data, which are called Rmaps, make assembly and alignment of them challenging. Although there exists another method to error correct Rmap data, named cOMet, it is unable to scale to even moderately large sized genomes. The challenge faced in error correction is in determining pairs of Rmaps that originate from the same region of the same genome.
机译:动机:光学映射数据用于许多核心基因组学应用,包括结构变型检测,脚手架组装的CONDIGS和MIN组装检测。 然而,原始数据中的虚假和删除的削减站点的普遍性,称为RMAPS,使它们充满挑战的装配和对齐。 虽然存在另一种误差RMAP数据的方法,但它不能扩展到甚至适度的大型大小的基因组。 纠错所面临的挑战是确定源自同一基因组的相同区域的RMAPA对。

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