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唑类药物治疗后光滑念珠菌实时定量 PCR 研究中参考基因的评估。

Evaluation of reference genes for real-time quantitative PCR studies in Candida glabrata following azole treatment.

机构信息

Clinical Mycology Section, Laboratory of Clinical Infectious Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

BMC Mol Biol. 2012 Jun 29;13:22. doi: 10.1186/1471-2199-13-22.

Abstract

BACKGROUND

The selection of stable and suitable reference genes for real-time quantitative PCR (RT-qPCR) is a crucial prerequisite for reliable gene expression analysis under different experimental conditions. The present study aimed to identify reference genes as internal controls for gene expression studies by RT-qPCR in azole-stimulated Candida glabrata.

RESULTS

The expression stability of 16 reference genes under fluconazole stress was evaluated using fold change and standard deviation computations with the hkgFinder tool. Our data revealed that the mRNA expression levels of three ribosomal RNAs (RDN5.8, RDN18, and RDN25) remained stable in response to fluconazole, while PGK1, UBC7, and UBC13 mRNAs showed only approximately 2.9-, 3.0-, and 2.5-fold induction by azole, respectively. By contrast, mRNA levels of the other 10 reference genes (ACT1, EF1α, GAPDH, PPIA, RPL2A, RPL10, RPL13A, SDHA, TUB1, and UBC4) were dramatically increased in C. glabrata following antifungal treatment, exhibiting changes ranging from 4.5- to 32.7-fold. We also assessed the expression stability of these reference genes using the 2(-ΔΔCT) method and three other software packages. The stability rankings of the reference genes by geNorm and the 2(-ΔΔCT) method were identical to those by hkgFinder, whereas the stability rankings by BestKeeper and NormFinder were notably different. We then validated the suitability of six candidate reference genes (ACT1, PGK1, RDN5.8, RDN18, UBC7, and UBC13) as internal controls for ten target genes in this system using the comparative CT method. Our validation experiments passed for all six reference genes analyzed except RDN18, where the amplification efficiency of RDN18 was different from that of the ten target genes. Finally, we demonstrated that the relative quantification of target gene expression varied according to the endogenous control used, highlighting the importance of the choice of internal controls in such experiments.

CONCLUSIONS

We recommend the use of RDN5.8, UBC13, and PGK1 alone or the combination of RDN5.8 plus UBC13 or PGK1 as reference genes for RT-qPCR analysis of gene expression in C. glabrata following azole treatment. In contrast, we show that ACT1 and other commonly used reference genes (GAPDH, PPIA, RPL13A, TUB1, etc.) were not validated as good internal controls in the current model.

摘要

背景

实时定量 PCR(RT-qPCR)中稳定且合适的参考基因的选择是在不同实验条件下进行可靠基因表达分析的关键前提。本研究旨在通过 RT-qPCR 鉴定唑类刺激的光滑念珠菌中基因表达研究的内参基因。

结果

使用 hkgFinder 工具计算 fold change 和标准差来评估 16 个参考基因在氟康唑应激下的表达稳定性。我们的数据显示,三种核糖体 RNA(RDN5.8、RDN18 和 RDN25)的 mRNA 表达水平在响应氟康唑时保持稳定,而 PGK1、UBC7 和 UBC13 的 mRNA 分别仅被唑类诱导约 2.9、3.0 和 2.5 倍。相比之下,其他 10 个参考基因(ACT1、EF1α、GAPDH、PPIA、RPL2A、RPL10、RPL13A、SDHA、TUB1 和 UBC4)的 mRNA 水平在真菌处理后在 C. glabrata 中显著增加,变化范围从 4.5 到 32.7 倍。我们还使用 2(-ΔΔCT) 方法和其他三个软件包评估了这些参考基因的表达稳定性。geNorm 和 2(-ΔΔCT) 方法对参考基因的稳定性排名与 hkgFinder 相同,而 BestKeeper 和 NormFinder 的稳定性排名则明显不同。然后,我们使用比较 CT 方法验证了在该系统中,六个候选参考基因(ACT1、PGK1、RDN5.8、RDN18、UBC7 和 UBC13)作为十个靶基因的内参的适用性。我们的验证实验通过了除 RDN18 之外的所有六个分析的参考基因,其中 RDN18 的扩增效率与十个靶基因不同。最后,我们证明了靶基因表达的相对定量取决于所使用的内参,这突出了此类实验中内参选择的重要性。

结论

我们建议单独使用 RDN5.8、UBC13 和 PGK1 或 RDN5.8 加 UBC13 或 PGK1 的组合作为唑类处理后 C. glabrata 中基因表达的 RT-qPCR 分析的参考基因。相比之下,我们表明 ACT1 和其他常用的参考基因(GAPDH、PPIA、RPL13A、TUB1 等)在当前模型中未被验证为良好的内参。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ded/3482582/93e07155d1f0/1471-2199-13-22-1.jpg

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