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用于细菌RNA定量的分离方法及RNA完整性评估

Evaluation of isolation methods and RNA integrity for bacterial RNA quantitation.

作者信息

Jahn Courtney E, Charkowski Amy O, Willis David K

机构信息

Department of Plant Pathology, 1630 Linden drive, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

J Microbiol Methods. 2008 Oct;75(2):318-24. doi: 10.1016/j.mimet.2008.07.004. Epub 2008 Jul 15.

DOI:10.1016/j.mimet.2008.07.004
PMID:18674572
Abstract

RNA integrity is critical for successful RNA quantitation for mammalian tissues, but the level of integrity required differs among tissues. The level of integrity required for quantitation has not been determined for bacterial RNA. Three RNA isolation methods were evaluated for their ability to produce high quality RNA from Dickeya dadantii, a bacterium refractory to RNA isolation. Bacterial lysis with Trizol using standard protocols consistently gave low RNA yields with this organism. Higher yields due to improved bacterial cells lysis was achieved with an added hot SDS incubation step, but RNA quality was low as determined by the RNA Integrity Number (RIN). Contaminating DNA remained a problem with the hot SDS-Trizol method; RNA samples required repeated, rigorous DNase treatments to reduce DNA contamination to levels sufficient for successful real-time qRT-PCR. A hot SDS-hot phenol RNA method gave the highest RNA quality and required only two DNase treatments to remove DNA. The assessment of RNA integrity using the Agilent 2100 BioAnalyzer was critical for obtaining meaningful gene expression data. RIN values below 7.0 resulted in high variation and loss of statistical significance when gene expression was analyzed by real-time qRT-PCR. We found that RNA preparations of different quality yielded drastic differences in relative gene expression ratios and led to major errors in the quantification of transcript levels. This work provides guidelines for RNA isolation and quality assessment that will be valuable for gene expression studies in a wide range of bacteria.

摘要

RNA完整性对于成功定量哺乳动物组织中的RNA至关重要,但不同组织所需的完整性水平有所不同。目前尚未确定定量细菌RNA所需的完整性水平。评估了三种RNA分离方法从达旦氏果胶杆菌(一种难以进行RNA分离的细菌)中产生高质量RNA的能力。使用标准方案用Trizol裂解细菌,对于这种生物体,RNA产量始终较低。通过增加热SDS孵育步骤提高了细菌细胞裂解效率,从而获得了更高的产量,但通过RNA完整性数(RIN)测定,RNA质量较低。热SDS-Trizol方法中,污染的DNA仍然是一个问题;RNA样品需要反复、严格的DNase处理,以将DNA污染降低到足以成功进行实时qRT-PCR的水平。热SDS-热酚RNA方法产生的RNA质量最高,仅需两次DNase处理即可去除DNA。使用安捷伦2100生物分析仪评估RNA完整性对于获得有意义的基因表达数据至关重要。当通过实时qRT-PCR分析基因表达时,RIN值低于7.0会导致高变异性并失去统计学意义。我们发现,不同质量的RNA制剂在相对基因表达比率上产生了巨大差异,并导致转录水平定量出现重大误差。这项工作为RNA分离和质量评估提供了指导方针,这对于广泛细菌中的基因表达研究将是有价值的。

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