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Whole-Genome Shotgun Optical Mapping of Rhodobacter sphaeroides strain 2.4.1 and Its Use for Whole-Genome Shotgun Sequence Assembly

机译:球形红细菌菌株2.4.1的全基因组Shot弹子光学作图及其在全基因组ome弹子序列装配中的应用

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摘要

Rhodobacter sphaeroides 2.4.1 is a facultative photoheterotrophic bacterium with tremendous metabolic diversity, which has significantly contributed to our understanding of the molecular genetics of photosynthesis, photoheterotrophy, nitrogen fixation, hydrogen metabolism, carbon dioxide fixation, taxis, and tetrapyrrole biosynthesis. To further understand this remarkable bacterium, and to accelerate an ongoing sequencing project, two whole-genome restriction maps (EcoRI and HindIII) of R. sphaeroides strain 2.4.1 were constructed using shotgun optical mapping. The approach directly mapped genomic DNA by the random mapping of single molecules. The two maps were used to facilitate sequence assembly by providing an optical scaffold for high-resolution alignment and verification of sequence contigs. Our results show that such maps facilitated the closure of sequence gaps by the early detection of nascent sequence contigs during the course of the whole-genome shotgun sequencing process.
机译:sphaeroides sphaeroides 2.4.1是一种兼性的光异养细菌,具有巨大的代谢多样性,对我们对光合作用,光异养,氮固定,氢代谢,二氧化碳固定,出租车和四吡咯生物合成的分子遗传学的理解做出了重要贡献。为了进一步了解这种杰出的细菌,并加快正在进行的测序工作,使用shot弹枪光学作图法构建了两个球形球菌菌株2.4.1的全基因组限制性图谱(EcoRI和HindIII)。该方法通过单个分子的随机作图直接作图基因组DNA。通过提供用于高分辨率比对和序列重叠群验证的光学支架,这两个图被用于促进序列组装。我们的结果表明,这种图谱通过在全基因组shot弹枪测序过程中及早检测新生序列重叠群而促进了序列缺口的闭合。

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