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Development of a Low Bias Method for Characterizing Viral Populations Using Next Generation Sequencing Technology

机译:利用下一代测序技术表征病毒种群的低偏差方法的发展

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摘要

Background: With an estimated 38 million people worldwide currently infected with human immunodeficiency virus (HIV), and an additional 4.1 million people becoming infected each year, it is important to understand how this virus mutates and develops resistance in order to design successful therapies. \ud\udMethodology/Principal Findings: We report a novel experimental method for amplifying full-length HIV genomes without the use of sequence-specific primers for high throughput DNA sequencing, followed by assembly of full length viral genome sequences from the resulting large dataset. Illumina was chosen for sequencing due to its ability to provide greater coverage of the HIV genome compared to prior methods, allowing for more comprehensive characterization of the heterogeneity present in the HIV samples analyzed. Our novel amplification method in combination with Illumina sequencing was used to analyze two HIV populations: a homogenous HIV population based on the canonical NL4-3 strain and a heterogeneous viral population obtained from a HIV patient's infected T cells. In addition, the resulting sequence was analyzed using a new computational approach to obtain a consensus sequence and several metrics of diversity. \ud\udSignificance: This study demonstrates how a lower bias amplification method in combination with next generation DNA sequencing provides in-depth, complete coverage of the HIV genome, enabling a stronger characterization of the quasispecies present in a clinically relevant HIV population as well as future study of how HIV mutates in response to a selective pressure.
机译:背景:目前全球估计有3,800万人感染了人类免疫缺陷病毒(HIV),每年又有410万人被感染,因此,了解这种病毒如何突变并产生抗药性以设计成功的疗法非常重要。 \ ud \ udMethodology /主要发现:我们报道了一种新颖的实验方法,用于扩增全长HIV基因组,而无需使用序列特异性引物进行高通量DNA测序,然后从所得的大型数据集中组装全长病毒基因组序列。选择Illumina进行测序是因为与以前的方法相比,它具有提供更大的HIV基因组覆盖率的能力,从而可以更全面地表征分析的HIV样品中存在的异质性。我们将新颖的扩增方法与Illumina测序相结合,用于分析两个HIV群体:基于规范NL4-3菌株的同质HIV群体和从HIV患者感染的T细胞获得的异种病毒群体。此外,使用一种新的计算方法对所得序列进行了分析,以获得一个共有序列和几个多样性指标。 \ ud \ ud意义:这项研究证明了低偏倚扩增方法与下一代DNA测序相结合如何能够对HIV基因组进行深入,完整的覆盖,从而能够更强地表征临床相关HIV人群中存在的准种以及艾滋病毒如何在选择性压力下发生突变的未来研究。

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