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Assessing the feasibility of GS FLX Pyrosequencing for sequencing the Atlantic salmon genome

机译:评估GS FLX焦磷酸测序对大西洋鲑鱼基因组测序的可行性

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摘要

BackgroundWith a whole genome duplication event and wealth of biological data, salmonids are excellent model organisms for studying evolutionary processes, fates of duplicated genes and genetic and physiological processes associated with complex behavioral phenotypes. It is surprising therefore, that no salmonid genome has been sequenced. Atlantic salmon (Salmo salar) is a good representative salmonid for sequencing given its importance in aquaculture and the genomic resources available. However, the size and complexity of the genome combined with the lack of a sequenced reference genome from a closely related fish makes assembly challenging. Given the cost and time limitations of Sanger sequencing as well as recent improvements to next generation sequencing technologies, we examined the feasibility of using the Genome Sequencer (GS) FLX pyrosequencing system to obtain the sequence of a salmonid genome. Eight pooled BACs belonging to a minimum tiling path covering ~1 Mb of the Atlantic salmon genome were sequenced by GS FLX shotgun and Long Paired End sequencing and compared with a ninth BAC sequenced by Sanger sequencing of a shotgun library.
机译:背景技术随着整个基因组的重复事件和丰富的生物学数据,鲑鱼是研究进化过程,复制基因的命运以及与复杂行为表型相关的遗传和生理过程的优秀模式生物。因此令人惊讶的是,没有鲑鱼基因组被测序。鉴于大西洋鲑(Salmo salar)在水产养殖中的重要性和可用的基因组资源,它是测序的很好的代表性鲑鱼。然而,基因组的大小和复杂性以及缺乏来自密切相关鱼类的测序参考基因组使得装配具有挑战性。考虑到Sanger测序的成本和时间限制以及对下一代测序技术的最新改进,我们研究了使用Genome Sequencer(GS)FLX焦磷酸测序系统获得鲑鱼基因组序列的可行性。通过GS FLX shot弹枪和长配对末端测序,对属于覆盖大西洋鲑鱼基因组约1 Mb的最小平铺路径的8个合并BAC进行测序,并与通过a弹枪文库的Sanger测序对第九个BAC进行比较。

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