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首页> 外文期刊>Zygote >Stability of reference genes for normalization of reverse transcription quantitative real-time PCR (RT-qPCR) data in bovine blastocysts produced by IVF, ICSI and SCNT
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Stability of reference genes for normalization of reverse transcription quantitative real-time PCR (RT-qPCR) data in bovine blastocysts produced by IVF, ICSI and SCNT

机译:IVF,ICSI和SCNT产生的牛胚泡中用于反转录定量实时PCR(RT-qPCR)数据标准化的参考基因的稳定性

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摘要

Reverse transcription quantitative real-time polymerase chain reaction (RT-qPCR) is a sensitive and accurate tool for quantitative estimation of gene transcription levels in preimplantation embryos. To control for possible experimental variations, gene expression data must be normalized using internal control genes commonly known as reference genes. However, the stability of reference genes can vary depending on the state of development and/or experimental conditions; hence the assessment of their stability is essential before initiating a gene expression analysis. In the present study, we used RT-qPCR to measure the transcript levels of 10 commonly used reference genes and analyzed their expression stability in bovine blastocysts produced by in vitro fertilization (IVF), intracytoplasmic sperm injection (ICSI) and somatic cell nuclear transfer (SCNT). Using the geNorm program, we found the best combination of genes to normalize gene expression data in bovine embryos at the blastocyst stage produced by IVF (HMBS, SF3A1, and HPRT1), ICSI (H2A, HMBS, and GAPDH), SCNT (ACTB, SF3A1, and SDHA) and/or between blastocysts produced by these methods (GAPDH, HMBS and EEF1A2). We also demonstrated that not only the culture conditions may affect the expression patterns in bovine blastocysts but also the choice of embryo production method may have an important effect.
机译:逆转录定量实时聚合酶链反应(RT-qPCR)是用于定量评估植入前胚胎中基因转录水平的灵敏且准确的工具。为了控制可能的实验变异,必须使用通常称为参考基因的内部控制基因对基因表达数据进行标准化。然而,参考基因的稳定性可以根据发育状态和/或实验条件而变化。因此,在启动基因表达分析之前,对其稳定性进行评估至关重要。在本研究中,我们使用RT-qPCR测量了10种常用参考基因​​的转录水平,并分析了它们在体外受精(IVF),胞浆内精子注射(ICSI)和体细胞核转移( SCNT)。使用geNorm程序,我们发现了最佳的基因组合,可以使IVF(HMBS,SF3A1和HPRT1),ICSI(H2A,HMBS和GAPDH),SCNT(ACTB, SF3A1和SDHA)和/或通过这些方法产生的胚泡之间(GAPDH,HMBS和EEF1A2)。我们还证明,不仅培养条件可能影响牛胚泡中的表达模式,而且胚胎生产方法的选择也可能具有重要作用。

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