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首页> 外文期刊>BMC Genomics >An improved genome assembly uncovers prolific tandem repeats in Atlantic cod
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An improved genome assembly uncovers prolific tandem repeats in Atlantic cod

机译:改进的基因组装配揭示了大西洋鳕鱼中大量的串联重复序列

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Background The first Atlantic cod ( Gadus morhua ) genome assembly published in 2011 was one of the early genome assemblies exclusively based on high-throughput 454 pyrosequencing. Since then, rapid advances in sequencing technologies have led to a multitude of assemblies generated for complex genomes, although many of these are of a fragmented nature with a significant fraction of bases in gaps. The development of long-read sequencing and improved software now enable the generation of more contiguous genome assemblies. Results By combining data from Illumina, 454 and the longer PacBio sequencing technologies, as well as integrating the results of multiple assembly programs, we have created a substantially improved version of the Atlantic cod genome assembly. The sequence contiguity of this assembly is increased fifty-fold and the proportion of gap-bases has been reduced fifteen-fold. Compared to other vertebrates, the assembly contains an unusual high density of tandem repeats (TRs). Indeed, retrospective analyses reveal that gaps in the first genome assembly were largely associated with these TRs. We show that 21% of the TRs across the assembly, 19% in the promoter regions and 12% in the coding sequences are heterozygous in the sequenced individual. Conclusions The inclusion of PacBio reads combined with the use of multiple assembly programs drastically improved the Atlantic cod genome assembly by successfully resolving long TRs. The high frequency of heterozygous TRs within or in the vicinity of genes in the genome indicate a considerable standing genomic variation in Atlantic cod populations, which is likely of evolutionary importance.
机译:背景技术2011年发布的首个大西洋鳕(Gadus morhua)基因组组装是专门基于高通量454焦磷酸测序的早期基因组组装之一。从那时起,测序技术的飞速发展导致了为复杂基因组生成的大量装配,尽管其中许多装配都是碎片化的,缺口中有很大一部分碱基。长时间测序和改进软件的开发现在可以生成更多连续的基因组程序集。结果通过结合来自Illumina,454和更长的PacBio测序技术的数据,并集成了多个装配程序的结果,我们创建了大西洋鳕鱼基因组装配的大幅改进版本。该装配体的序列连续性增加了五十倍,而空位碱基的比例减少了十五倍。与其他脊椎动物相比,该装配体包含异常高的串联重复序列(TRs)。确实,回顾性分析表明,第一个基因组装配中的缺口与这些TR密切相关。我们显示整个装配体中21%的TR,在启动子区域中的19%和编码序列中的12%在测序的个体中是杂合的。结论包含PacBio读段并结合使用多个装配程序可通过成功解决长TR极大地改善了大西洋鳕鱼基因组的装配。基因组中基因内或附近的杂合TRs的高频率表明,大西洋鳕鱼种群中存在显着的常设基因组变异,这可能具有进化重要性。

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