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首页> 外文期刊>BMC Genomics >The effect of variant interference on de novo assembly for viral deep sequencing
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The effect of variant interference on de novo assembly for viral deep sequencing

机译:变体干扰对脱诺组件进行病毒深序的影响

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BACKGROUND:Viruses have high mutation rates and generally exist as a mixture of variants in biological samples. Next-generation sequencing (NGS) approaches have surpassed Sanger for generating long viral sequences, yet how variants affect NGS de novo assembly remains largely unexplored.RESULTS:Our results from ?15,000 simulated experiments showed that presence of variants can turn an assembly of one genome into tens to thousands of contigs. This "variant interference" (VI) is highly consistent and reproducible by ten commonly-used de novo assemblers, and occurs over a range of genome length, read length, and GC content. The main driver of VI is pairwise identities between viral variants. These findings were further supported by in silico simulations, where selective removal of minor variant reads from clinical datasets allow the "rescue" of full viral genomes from fragmented contigs.CONCLUSIONS:These results call for careful interpretation of contigs and contig numbers from de novo assembly in viral deep sequencing.
机译:背景:病毒具有高突变率,并且通常存在于生物样品中的变体的混合物。下一代测序(NGS)方法已超过Sanger用于生成长病毒序列,但变体如何影响NGS De Novo组装仍然很大程度上是未开发的。结果:我们的结果来自>?15,000模拟实验表明,变体的存在可以转动一个组装基因组成千上万的contigs。该“变型干扰”(VI)高度一致,可通过十个常用的DE Novo汇编程序再现,并且发生在一系列基因组长度,读取长度和GC含量范围内。 VI的主要驱动器是病毒变体之间的成对标识。在硅模拟中进一步支持这些发现,其中选择性地从临床数据集中读取次要变体读取,允许从碎片的Contigs中的完整病毒基因组的“拯救”。结论:这些结果要求仔细解释来自De Novo集合的Contigs和Contig数量在病毒深序。

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