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Towards Personalized Medicine: An Improved De Novo Assembly Procedure for Early Detection of Drug Resistant HIV Minor Quasispecies in Patient Samples

机译:迈向个性化医学:改进的从头组装程序用于早期检测患者样本中的抗药性HIV次要准种

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摘要

The third-generation sequencing technology, PacBio, has shown an ability to sequence the HIV virus amplicons in their full length. The long read of PaBio offers a distinct advantage to comprehensively understand the virus evolution complexity at quasispecies level (i.e. maintaining linkage information of variants) comparing to the short reads from Illumina shotgun sequencing. However, due to the highnoise nature of the PacBio reads, it is still a challenge to build accurate contigs at high sensitivity. Most of previously developed NGS assembly tools work with the assumption that the input reads are fairly accurate, which is largely true for the data derived from Sanger or Illumina technologies. When applying these tools on PacBio high-noise reads, they are largely driven by noise rather than true signal eventually leading to poor results in most cases. In this study, we propose the de novo assembly procedure, which comprises a positivefocused strategy, and linkage-frequency noise reduction so that it is more suitable for PacBio high-noise reads. We further tested the unique de novo assembly procedure on HIV PacBio benchmark data and clinical samples, which accurately assembled dominant and minor populations of HIV quasispecies as expected. The improved de novo assembly procedure shows potential ability to promote PacBio technology in the field of HIV drug-resistance clinical detection, as well as in broad HIV phylogenetic studies.
机译:第三代测序技术PacBio已显示出对HIV病毒扩增子进行全长测序的能力。与Illumina shot弹枪测序的短读相比,PaBio的长读提供了独特的优势,可以在准物种级别全面了解病毒进化的复杂性(即保持变体的连锁信息)。但是,由于PacBio读数的高噪声性质,以高灵敏度构建准确的重叠群仍是一个挑战。大多数以前开发的NGS组装工具都在假设输入读数相当准确的前提下工作,这对于从Sanger或Illumina技术获得的数据来说基本上是正确的。将这些工具应用于PacBio高噪声读取时,它们很大程度上是由噪声而非真实信号驱动的,最终在大多数情况下会导致较差的结果。在这项研究中,我们提出了从头组装程序,该程序包括一个正向策略和链接频率噪声降低,因此它更适合于PacBio高噪声读取。我们进一步根据HIV PacBio基准数据和临床样本测试了独特的从头组装程序,该程序可以按预期准确地组装HIV准种的主要和次要种群。改进的从头组装程序显示了在HIV耐药性临床检测领域以及广泛的HIV系统发育研究领域推广PacBio技术的潜在能力。

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