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Improved assembly procedure of viral RNA genomes amplified with Phi29 polymerase from new generation sequencing data

机译:从新一代测序数据中,用Phi29聚合酶扩增的病毒RNA基因组的改进装配程序

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New sequencing technologies have opened the way to the discovery and the characterization of pathogenic viruses in clinical samples. However, the use of these new methods can require an amplification of viral RNA prior to the sequencing. Among all the available methods, the procedure based on the use of Phi29 polymerase produces a huge amount of amplified DNA. However, its major disadvantage is to generate a large number of chimeric sequences which can affect the assembly step. The pre-process method proposed in this study strongly limits the negative impact of chimeric reads in order to obtain the full-length of viral genomes. Three different assembly softwares (ABySS, Ray and SPAdes) were tested for their ability to correctly assemble the full-length of viral genomes. Although in all cases, our pre-processed method improved genome assembly, only its combination with the use of SPAdes allowed us to obtain the full-length of the viral genomes tested in one contig. The proposed pipeline is able to overcome drawbacks due to the generation of chimeric reads during the amplification of viral RNA which considerably improves the assembling of full-length viral genomes.
机译:新的测序技术为临床样品中病原病毒的发现和表征开辟了道路。但是,使用这些新方法可能需要在测序之前扩增病毒RNA。在所有可用的方法中,基于使用Phi29聚合酶的程序会产生大量的扩增DNA。然而,其主要缺点是产生大量的嵌合序列,这会影响组装步骤。本研究中提出的预处理方法极大地限制了嵌合读段的负面影响,以便获得病毒基因组的全长。测试了三种不同的组装软件(ABySS,Ray和SPAdes)正确组装病毒基因组全长的能力。尽管在所有情况下,我们的预处理方法都能改善基因组装配,但只有将其与SPAdes结合使用,我们才能获得在一个重叠群中测试的病毒基因组的全长。所提出的管线能够克服由于在病毒RNA的扩增期间嵌合读段的产生而造成的缺点,这大大改善了全长病毒基因组的组装。

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