BOA, INRA, Université de Tours, 37380 Nouzilly, France.
Genes (Basel). 2019 Mar 4;10(3):197. doi: 10.3390/genes10030197.
RT-qPCR is the gold standard for candidate gene expression analysis. However, the interpretation of RT-qPCR results depends on the proper use of internal controls, i.e., reference genes. Japanese quail is an agronomic species also used as a laboratory model, but little is known about RT-qPCR reference genes for this species. Thus, we investigated 10 putative reference genes (, , , , , , , , and ) in three different female and male quail tissues (liver, brain and pectoral muscle). Gene expression stability was evaluated with three different algorithms: geNorm, NormFinder and BestKeeper. For each tissue, a suitable set of reference genes was defined and validated by a differential analysis of gene expression between females and males ( in brain and in pectoral muscle). Collectively, our study led to the identification of suitable reference genes in liver, brain and pectoral muscle for Japanese quail, along with recommendations for the identification of reference gene sets for this species.
实时荧光定量 RT-PCR 是候选基因表达分析的金标准。然而,RT-qPCR 结果的解释取决于内部对照(即参考基因)的正确使用。鹌鹑是一种农业物种,也被用作实验室模型,但对于这种物种的 RT-qPCR 参考基因知之甚少。因此,我们研究了三种不同的雌性和雄性鹌鹑组织(肝脏、大脑和胸肌)中的 10 个假定的参考基因(,,,,,,,, 和 )。使用三种不同的算法(geNorm、NormFinder 和 BestKeeper)评估基因表达稳定性。对于每个组织,通过对雌性和雄性之间的基因表达差异进行差异分析(在大脑中为 ,在胸肌中为 ),定义并验证了合适的参考基因集。总的来说,我们的研究确定了日本鹌鹑肝脏、大脑和胸肌中合适的参考基因,并为该物种鉴定参考基因集提出了建议。