Zhang Xiaohua, Li Xuesong, Hua Rong, Fang Yuan, Yue Tingsong, Li Jianying, Lu Yuxun, Yue Wansong, Gao Zhanghui, Liu Shaoxiong, Sun Dafeng
Kunming Edible Fungi Institute of All China Federation of Supply and Marketing Cooperatives, Kunming, China.
Yunnan Academy of Edible Fungi Industry Development, Kunming, China.
PLoS One. 2025 May 7;20(5):e0323272. doi: 10.1371/journal.pone.0323272. eCollection 2025.
Quantitative real-time PCR (qRT-PCR) is a well-established and reliable technology utilized for the rapid and accurate quantification of gene expression changes. The selection of stable reference genes is necessary to analyse qRT-PCR data and ensure gene expression studies reliability. Stropharia rugosoannulata, commonly known as the wine-cap Stropharia mushroom, ranks among the top ten internationally traded mushrooms. In the present study, six novel candidate reference genes were selected from S. rugosoannulata transcriptome, alongside four traditional reference genes that displayed stable expression levels in S. rugosoannulata. Three widely used software (geNorm, NormFinder, and BestKeeper) were employed to analyse ten candidate reference genes, and the final ranking of reference genes was determined through RefFinder. The results indicated that UBP exhibited the highest stability across various developmental stages of red and yellow S. rugosoannulata, while RPB2 and GAPDH showed the least stability. These novel reference genes demonstrated significantly superior stability to other four traditional genes across nearly all developmental stages. In conclusion, Our findings provide robust guidelines for selecting suitable reference genes, thereby enhancing the reliability of qRT-PCR normalization in Stropharia rugosoannulata.
定量实时聚合酶链反应(qRT-PCR)是一种成熟且可靠的技术,用于快速、准确地定量基因表达变化。选择稳定的内参基因对于分析qRT-PCR数据并确保基因表达研究的可靠性至关重要。皱环盖菇,俗称酒帽环盖菇,是国际贸易量排名前十的蘑菇之一。在本研究中,从皱环盖菇转录组中筛选出六个新的候选内参基因,同时还有四个在皱环盖菇中表达水平稳定的传统内参基因。使用三种广泛应用的软件(geNorm、NormFinder和BestKeeper)分析这十个候选内参基因,并通过RefFinder确定内参基因的最终排名。结果表明,泛素结合酶(UBP)在红、黄皱环盖菇的各个发育阶段均表现出最高的稳定性,而RNA聚合酶II亚基B(RPB2)和甘油醛-3-磷酸脱氢酶(GAPDH)的稳定性最低。在几乎所有发育阶段,这些新的内参基因均表现出比其他四个传统基因显著更高的稳定性。总之,我们的研究结果为选择合适的内参基因提供了有力指导,从而提高了皱环盖菇中qRT-PCR标准化的可靠性。