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高通量测序中自动化简并 PCR 引物设计提高了病毒测序效率。

Automated degenerate PCR primer design for high-throughput sequencing improves efficiency of viral sequencing.

机构信息

The J, Craig Venter Institute, Rockville, MD 20850, USA.

出版信息

Virol J. 2012 Nov 6;9:261. doi: 10.1186/1743-422X-9-261.

Abstract

BACKGROUND

In a high-throughput environment, to PCR amplify and sequence a large set of viral isolates from populations that are potentially heterogeneous and continuously evolving, the use of degenerate PCR primers is an important strategy. Degenerate primers allow for the PCR amplification of a wider range of viral isolates with only one set of pre-mixed primers, thus increasing amplification success rates and minimizing the necessity for genome finishing activities. To successfully select a large set of degenerate PCR primers necessary to tile across an entire viral genome and maximize their success, this process is best performed computationally.

RESULTS

We have developed a fully automated degenerate PCR primer design system that plays a key role in the J. Craig Venter Institute's (JCVI) high-throughput viral sequencing pipeline. A consensus viral genome, or a set of consensus segment sequences in the case of a segmented virus, is specified using IUPAC ambiguity codes in the consensus template sequence to represent the allelic diversity of the target population. PCR primer pairs are then selected computationally to produce a minimal amplicon set capable of tiling across the full length of the specified target region. As part of the tiling process, primer pairs are computationally screened to meet the criteria for successful PCR with one of two described amplification protocols. The actual sequencing success rates for designed primers for measles virus, mumps virus, human parainfluenza virus 1 and 3, human respiratory syncytial virus A and B and human metapneumovirus are described, where >90% of designed primer pairs were able to consistently successfully amplify >75% of the isolates.

CONCLUSIONS

Augmenting our previously developed and published JCVI Primer Design Pipeline, we achieved similarly high sequencing success rates with only minor software modifications. The recommended methodology for the construction of the consensus sequence that encapsulates the allelic variation of the targeted population and is a key step prior to designing degenerate primers is also formally described.

摘要

背景

在高通量环境中,为了对来自具有潜在异质性和持续进化的群体的大量病毒分离物进行 PCR 扩增和测序,使用简并 PCR 引物是一种重要策略。简并引物允许使用一组预先混合的引物对更广泛范围的病毒分离物进行 PCR 扩增,从而提高扩增成功率并最大限度地减少基因组完成活动的必要性。为了成功选择一组用于覆盖整个病毒基因组并最大限度提高成功率的大量简并 PCR 引物,此过程最好通过计算来完成。

结果

我们开发了一种全自动简并 PCR 引物设计系统,该系统在 J. Craig Venter 研究所(JCVI)的高通量病毒测序管道中发挥着关键作用。使用一致性模板序列中的 IUPAC 模糊代码指定共识病毒基因组,或者在病毒分段的情况下指定一组共识节段序列,以表示目标群体的等位基因多样性。然后通过计算选择 PCR 引物对,以产生一组最小的扩增子,能够覆盖指定目标区域的全长。作为覆盖过程的一部分,通过计算筛选引物对,以满足两种描述的扩增方案之一的成功 PCR 的标准。描述了用于麻疹病毒、腮腺炎病毒、人副流感病毒 1 和 3、人呼吸道合胞病毒 A 和 B 以及人偏肺病毒的设计引物的实际测序成功率,其中 >90%的设计引物对能够一致地成功扩增 >75%的分离物。

结论

在对我们之前开发并发布的 JCVI 引物设计管道进行少量软件修改的情况下,我们实现了类似的高测序成功率。还正式描述了构建包含目标群体等位基因变异的共识序列的推荐方法,这是设计简并引物之前的关键步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b6d/3548747/d3693e7c4d4d/1743-422X-9-261-1.jpg

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