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Dynamic Building of a BAC Clone Tiling Path for the Rat Genome Sequencing Project

机译:大鼠基因组测序项目的BAC克隆切片路径的动态构建

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摘要

CLONEPICKER is a software pipeline that integrates sequence data with BAC clone fingerprints to dynamically select a minimal overlapping clone set covering the whole genome. In the Rat Genome Sequencing Project (RGSP), a hybrid strategy of “clone by clone” and “whole genome shotgun” approaches was used to maximize the merits of both approaches. Like the “clone by clone” method, one key challenge for this strategy was to select a low-redundancy clone set that covered the whole genome while the sequencing is in progress. The CLONEPICKER pipeline met this challenge using restriction enzyme fingerprint data, BAC end sequence data, and sequences generated from individual BAC clones as well as WGS reads. In the RGSP, an average of 7.5 clones was identified from each side of a seed clone, and the minimal overlapping clones were reliably selected. Combined with the assembled BAC fingerprint map, a set of BAC clones that covered >97% of the genome was identified and used in the RGSP.
机译:CLONEPICKER是一个软件管道,将序列数据与BAC克隆指纹整合在一起,以动态选择覆盖整个基因组的最小重叠克隆集。在大鼠基因组测序计划(RGSP)中,采用了“逐个克隆”和“全基因组gun弹枪”方法的混合策略,以最大化两种方法的优点。与“逐个克隆”方法一样,此策略的主要挑战是在测序进行中选择覆盖整个基因组的低冗余克隆集。 CLONEPICKER管道使用限制酶指纹数据,BAC末端序列数据以及从单个BAC克隆产生的序列以及WGS读数来应对这一挑战。在RGSP中,从种子克隆的每一侧平均鉴定出7.5个克隆,并且可靠地选择了最少的重叠克隆。结合组装的BAC指纹图谱,鉴定出覆盖了97%以上基因组的BAC克隆集,并将其用于RGSP。

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