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Reverse Genetics of RNA Viruses: ISA-Based Approach to Control Viral Population Diversity without Modifying Virus Phenotype

机译:RNA病毒的逆向遗传:基于ISA的方法来控制病毒群体多样性而不改变病毒表型

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摘要

Reverse genetic systems are essential for the study of RNA viruses. Infectious clones remain the most widely used systems to manipulate viral genomes. Recently, a new PCR-based method called ISA (infectious subgenomic amplicons) has been developed. This approach has resulted in greater genetic diversity of the viral populations than that observed using infectious clone technology. However, for some studies, generation of clonal viral populations is necessary. In this study, we used the tick-borne encephalitis virus as model to demonstrate that utilization of a very high-fidelity, DNA-dependent DNA polymerase during the PCR step of the ISA procedure gives the possibility to reduce the genetic diversity of viral populations. We also concluded that the fidelity of the polymerase is not the only factor influencing this diversity. Studying the impact of genotype modification on virus phenotype is a crucial step for the development of reverse genetic methods. Here, we also demonstrated that the utilization of different PCR polymerases did not affect the phenotype (replicative fitness in cellulo and virulence in vivo) compared to the initial ISA procedure and the use of an infectious clone. In conclusion, we provide here an approach to control the genetic diversity of RNA viruses without modifying their phenotype.
机译:反向遗传系统是RNA病毒的研究是必不可少的。感染性克隆仍然是最广泛使用的系统来操纵病毒基因组。最近,一种新的基于PCR的方法被称为ISA(传染性亚基因组扩增子)已经研制成功。这种做法导致了使用感染性克隆技术比所观察到的病毒群体的更大的遗传多样性。然而,对于一些研究,代无性系病毒群体的需要。在这项研究中,我们使用了蜱传脑炎病毒作为模型来演示期间ISA过程的PCR步骤非常高的保真度,DNA依赖性DNA聚合酶的该利用率给出降低病毒种群的遗传多样性的可能性。我们还认为,聚合酶的保真度是不影响这个多样性的唯一因素。研究基因型修饰对病毒的表型的影响是对的反向遗传学方法的发展的关键一步。在这里,我们还表明,不同的PCR聚合酶的利用率并不影响表型(复制在健身和纤维素的毒性在体内),相对于初始ISA程序和使用的感染性克隆的。总之,我们在这里提供一种方法来控制RNA病毒的遗传多样性,而无需修改其表型。

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