Ni Mengke, Li Zhichao, Li Jing, He Hui, Wang Yaling, Jiang Yixuan, Wang Xianwei, Li Zhuanjian, Li Ming, Xu Huifen
College of Animal Science and Technology, Henan Agricultural University, Zhengzhou, 450046, P. R. China.
Animal Health Supervision Institute of Biyang, Henan, 463700, P. R. China.
BMC Zool. 2022 Dec 15;7(1):60. doi: 10.1186/s40850-022-00159-0.
In molecular biology studies, the selection of optimal reference genes is of vital importance for accurately quantifying gene expression. The purpose of the present study was to screen the most stable reference genes in different muscle tissues of New Zealand white rabbits and Yufeng yellow rabbits.
Results indicated that the most stable reference genes in the muscle tissues of New Zealand white rabbits were HPRT1, ACTB and PPIC, while HPRT1, PPIC, and RPL13A were the most stable reference genes in muscle tissues of Yufeng yellow rabbits. However, in the longissimus dorsi muscle and the abdominal wall muscle of both varieties, the most stable reference genes were HPRT1, RPL13A, and SDHA. In the quadriceps femoris muscle, the most stable reference genes were ACTB, HPRT1, and SDHA. Furthermore, the relative abundance of MYOG, MYH3 and MSTN was used to confirm the suitability and reliability of the selected most stable reference genes and the most unstable reference gene. Results revealed the same expression patterns of these myogenic genes when normalized according to the most stable genes, while normalization against the unstable reference gene altered the observed expression patterns.
Taken together, our results demonstrated that the most stable reference genes varied among different muscle tissues and different breeds of rabbits. However, HPRT1, PPIC and SDHA presented high stability among all examined reference genes; thus, the combined analysis of HPRT1/ PPIC/ SDHA gene provides the best reference for RT-qPCR in muscle tissues of New Zealand white rabbits and Yufeng yellow rabbits, while HPRT1 is a better choice than other reference genes when using a single reference gene to assess target gene expression. Our results provide basic data for better measuring target gene expression profiles in muscle tissues of rabbits.
在分子生物学研究中,选择最佳内参基因对于准确量化基因表达至关重要。本研究旨在筛选新西兰白兔和豫丰黄兔不同肌肉组织中最稳定的内参基因。
结果表明,新西兰白兔肌肉组织中最稳定的内参基因是HPRT1、ACTB和PPIC,而豫丰黄兔肌肉组织中最稳定的内参基因是HPRT1、PPIC和RPL13A。然而,在两个品种的背最长肌和腹壁肌中,最稳定的内参基因是HPRT1、RPL13A和SDHA。在股四头肌中,最稳定的内参基因是ACTB、HPRT1和SDHA。此外,利用MYOG、MYH3和MSTN的相对丰度来确认所选最稳定内参基因和最不稳定内参基因的适用性和可靠性。结果显示,根据最稳定基因进行标准化时,这些成肌基因呈现相同的表达模式,而以不稳定内参基因进行标准化则改变了观察到的表达模式。
综上所述,我们的结果表明,不同肌肉组织和不同品种的兔子中最稳定的内参基因各不相同。然而,HPRT1、PPIC和SDHA在所有检测的内参基因中表现出高稳定性;因此,HPRT1/PPIC/SDHA基因的联合分析为新西兰白兔和豫丰黄兔肌肉组织的RT-qPCR提供了最佳参考,而在使用单个内参基因评估靶基因表达时,HPRT1比其他内参基因是更好的选择。我们的结果为更好地测量兔子肌肉组织中的靶基因表达谱提供了基础数据。