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使用实时PCR对感染期间宿主和噬菌体mRNA表达进行定量分析。

Quantification of host and phage mRNA expression during infection using real-time PCR.

作者信息

Clokie Martha R J

机构信息

Department of Infection, Immunity and Inflammation, University of Leicester, Leicester, UK.

出版信息

Methods Mol Biol. 2009;502:177-91. doi: 10.1007/978-1-60327-565-1_11.

Abstract

Real-time, or quantitative PCR, is a valuable technique useful in bacteriophage research to quantify the abundance of phage or host gene transcripts. It can be used during the infection cycle both to monitor the expression of individual viral transcripts and to compare relative gene expression levels throughout the infection cycle. It is fairly economical to conduct and is useful in bacteria-phage systems where obtaining high yields of RNA is problematic. To perform real-time PCR, it is simply necessary to know the DNA sequence of the genes to be monitored, to have accurately quantified mRNA good quality cDNA, and access to a light-cycler. Although this chapter briefly reviews the basic principles of real-time PCR, the emphasis is on aspects of technique that are specific to the study of bacteriophage transcriptomics. These include (1) the selection of the target gene, (2) the choice of calibrator and reference genes, (3) RNA isolation for cDNA synthesis and (4) subsequent analysis of samples. This chapter should also be useful to those wishing to amplify genes from other types of templates such as metagenomic DNA or RNA extracted either from filtered samples or from agarose gels.

摘要

实时定量PCR是一种在噬菌体研究中很有价值的技术,可用于量化噬菌体或宿主基因转录本的丰度。它可在感染周期中用于监测单个病毒转录本的表达,并比较整个感染周期内的相对基因表达水平。该技术实施起来相当经济,在难以获得高产量RNA的细菌-噬菌体系统中很有用。要进行实时PCR,只需知道要监测基因的DNA序列,拥有准确量化的高质量mRNA和cDNA,并能使用荧光定量PCR仪。虽然本章简要回顾了实时PCR的基本原理,但重点是噬菌体转录组学研究特有的技术方面。这些方面包括:(1)靶基因的选择;(2)校准基因和参考基因的选择;(3)用于cDNA合成的RNA分离;以及(4)样本的后续分析。本章对于那些希望从其他类型模板(如宏基因组DNA或从过滤样本或琼脂糖凝胶中提取的RNA)扩增基因的人也应有所帮助。

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