Department of Medical Microbiology, Postgraduate Institute of Medical Education and Research (PGIMER), Chandigarh, 160012, India.
Sci Rep. 2020 Feb 6;10(1):1972. doi: 10.1038/s41598-020-58744-7.
Candida tropicalis arises as one of the predominant non-Candida albicans Candida (NCAC) species causing invasive candidiasis in Asian countries. A rise in reports of C. tropicalis with a parallel increase in fluconazole resistance has also been observed. The genes and underlying pathways associated with azole antifungal resistance in C. tropicalis is still not properly understood. The RT-qPCR is the most promising approach for expression analysis of target genes to understand the mechanisms of resistance. The reliability and reproducibility of this technique depend on the selection of suitable reference genes for the normalization in expression study. The present study investigated the expression stability levels of ten genes including ACT1, EF1, GAPDH, PGK1, RDN5.8, RDN18, RDN28, SDHA, TUB1, and UBC13 for their suitability in fluconazole treated/untreated C. tropicalis. The stability levels of these genes were examined by the ∆∆CT, ΔCT, Pfaffl methods and five independent software including hkgFinder, geNorm, NormFinder, BestKeeper, and RefFinder software. We report, the EF1 and ACT1 were the most stable reference genes for normalization and can be used for the gene expression analysis in C. tropicalis. To the best of our knowledge, our study is the first to select and validate the reference genes in C. tropicalis for RT-qPCR based expression analysis.
热带假丝酵母是亚洲国家引起侵袭性念珠菌病的主要非白念珠菌假丝酵母(NCAC)物种之一。同时,也观察到 C. 热带假丝酵母的报告数量增加,而氟康唑耐药性也呈平行上升趋势。C. 热带假丝酵母中与唑类抗真菌耐药性相关的基因和潜在途径仍未得到充分理解。实时荧光定量聚合酶链反应(RT-qPCR)是分析靶基因表达以了解耐药机制的最有前途的方法。该技术的可靠性和可重复性取决于选择合适的内参基因进行表达研究的标准化。本研究调查了包括 ACT1、EF1、GAPDH、PGK1、RDN5.8、RDN18、RDN28、SDHA、TUB1 和 UBC13 在内的 10 个基因在氟康唑处理/未处理的 C. 热带假丝酵母中的表达稳定性水平。通过 ∆∆CT、ΔCT 和 Pfaffl 方法以及包括 hkgFinder、geNorm、NormFinder、BestKeeper 和 RefFinder 在内的 5 个独立软件来检查这些基因的稳定性水平。我们报告称,EF1 和 ACT1 是最稳定的内参基因,可用于 C. 热带假丝酵母的基因表达分析。据我们所知,我们的研究首次在 C. 热带假丝酵母中选择和验证了 RT-qPCR 基础表达分析的参考基因。