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实时荧光定量 RT-PCR 法全基因组分析伪狂犬病病毒基因表达。

Whole-genome analysis of pseudorabies virus gene expression by real-time quantitative RT-PCR assay.

机构信息

Department of Medical Biology, Faculty of Medicine, University of Szeged, Szeged, H-6720, Hungary.

出版信息

BMC Genomics. 2009 Oct 23;10:491. doi: 10.1186/1471-2164-10-491.

Abstract

BACKGROUND

Pseudorabies virus (PRV), a neurotropic herpesvirus of pigs, serves as an excellent model system with which to investigate the herpesvirus life cycle both in cultured cells and in vivo. Real-time RT-PCR is a very sensitive, accurate and reproducible technique that can be used to detect very small amounts of RNA molecules, and it can therefore be applied for analysis of the expression of herpesvirus genes from the very early period of infection.

RESULTS

In this study, we have developed and applied a quantitative reverse transcriptase-based real-time PCR technique in order to profile transcription from the whole genome of PRV after lytic infection in porcine kidney cells. We calculated the relative expression ratios in a novel way, which allowed us to compare different PRV genes with respect to their expression dynamics, and to divide the PRV genes into distinct kinetic classes. This is the first publication on the whole-genome analysis of the gene expression of an alpha-herpesvirus by qRT2-PCR. We additionally established the kinetic properties of uncharacterized PRV genes and revised or confirmed data on PRV genes earlier examined by traditional methods such as Northern blot analysis. Our investigations revealed that genes with the same expression properties form clusters on the PRV genome: nested overlapping genes belong in the same kinetic class, while most convergent genes belong in different kinetic classes. Further, we detected inverse relationships as concerns the expressions of EP0 and IE180 mRNAs and their antisense partners.

CONCLUSION

Most (if not all) PRV genes begin to be expressed from the onset of viral expression. No sharp boundary was found between the groups of early and late genes classified on the basis of their requirement for viral DNA synthesis. The expressions of the PRV genes were analyzed, categorized and compared by qRT2-PCR assay, with the average of the minimum cycle threshold used as a control for the calculation of a particular R value. In principle, this new calculation technique is applicable for the analysis of gene expression in all temporally changing genetic systems.

摘要

背景

伪狂犬病毒(PRV)是一种猪源神经嗜性疱疹病毒,可作为研究细胞培养和体内疱疹病毒生活周期的极好模型系统。实时 RT-PCR 是一种非常敏感、准确和可重复的技术,可用于检测非常少量的 RNA 分子,因此可用于分析疱疹病毒基因从感染早期的表达。

结果

在本研究中,我们开发并应用了一种基于定量逆转录实时 PCR 的技术,以分析 PRV 在猪肾细胞中的裂解感染后整个基因组的转录。我们以一种新的方式计算相对表达比,使我们能够比较不同 PRV 基因的表达动力学,并将 PRV 基因分为不同的动力学类。这是第一篇关于α疱疹病毒全基因组 qRT2-PCR 基因表达分析的出版物。我们还确定了未鉴定的 PRV 基因的动力学特性,并修订或确认了以前通过传统方法(如 Northern blot 分析)检查的 PRV 基因的数据。我们的研究表明,具有相同表达特性的基因在 PRV 基因组上形成簇:嵌套重叠基因属于同一动力学类,而大多数会聚基因属于不同的动力学类。此外,我们检测到 EP0 和 IE180 mRNA 及其反义伴侣的表达之间存在相反的关系。

结论

大多数(如果不是全部)PRV 基因在病毒表达开始时就开始表达。在基于病毒 DNA 合成要求对早期和晚期基因进行分类的组之间,没有发现明显的界限。使用平均最小循环阈值作为计算特定 R 值的对照,通过 qRT2-PCR 测定分析、分类和比较 PRV 基因的表达。原则上,这种新的计算技术可适用于所有随时间变化的遗传系统的基因表达分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fdf/2775753/1c5bf0a7db6a/1471-2164-10-491-1.jpg

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