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V-GAP: Viral genome assembly pipeline

机译:V-GAP:病毒基因组装配流程

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Next-generation sequencing technologies have allowed the rapid determination of the complete genomes of many organisms. Although shotgun sequences from large genome organisms are still difficult to reconstruct perfect contigs each of which represents a full chromosome, those from small genomes have been assembled successfully into a very small number of contigs. In this study, we show that shotgun reads from phage genomes can be reconstructed into a single contig by controlling the number of read sequences used in de novo assembly. We have developed a pipeline to assemble small viral genomes with good reliability using a resampling method from shotgun data. This pipeline, named V-GAP (Viral Genome Assembly Pipeline), will contribute to the rapid genome typing of viruses, which are highly divergent, and thus will meet the increasing need for viral genome comparisons in metagenomic studies. (C) 2015 The Authors. Published by Elsevier B.V.
机译:下一代测序技术可以快速测定许多生物的完整基因组。尽管来自大型基因组生物的shot弹枪序列仍然难以重建完美的重叠群,每个重叠群代表完整的染色体,但是来自小型基因组的those弹枪序列已成功地组装成非常少量的重叠群。在这项研究中,我们表明可以通过控制从头装配中使用的读取序列数,将噬菌体基因组中的shot弹枪读数重建为单个重叠群。我们已经开发了一种使用shot弹枪数据的重采样方法来组装具有良好可靠性的小型病毒基因组的管道。该管道称为V-GAP(病毒基因组组装管道),将有助于快速分化高度变异的病毒基因组,从而满足宏基因组学研究对病毒基因组比较的不断增长的需求。 (C)2015作者。由Elsevier B.V.发布

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