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首页> 外文期刊>Cellular reprogramming >Selection of Suitable Internal Control Genes for Accurate Normalization of Real-Time Quantitative PCR Data of Buffalo (Bubalus bubalis) Blastocysts Produced by SCNT and IVF
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Selection of Suitable Internal Control Genes for Accurate Normalization of Real-Time Quantitative PCR Data of Buffalo (Bubalus bubalis) Blastocysts Produced by SCNT and IVF

机译:选择合适的内部对照基因,以便于SCNT和IVF生产的水牛(血吸虫Bubalis)胚泡实时定量PCR数据的准确标准化

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We evaluated the suitability of 10 candidate internal control genes (ICGs), belonging to different functional classes, namely ACTB, EEF1A1, GAPDH, HPRT1, HMBS, RPS15, RPS18, RPS23, SDHA, and UBC for normalizing the real-time quantitative polymerase chain reaction (qPCR) data of blastocyst-stage buffalo embryos produced by hand-made cloning and in vitro fertilization (IVF). Total RNA was isolated from three pools, each of cloned and IVF blastocysts (n = 50/pool) for cDNA synthesis. Two different statistical algorithms geNorm and NormFinder were used for evaluating the stability of these genes. Based on gene stability measure (M value) and pairwise variation (V value), calculated by geNorm analysis, the most stable ICGs were RPS15, HPRT1, and ACTB for cloned blastocysts, HMBS, UBC, and HPRT1 for IVF blastocysts and RPS15, GAPDH, and HPRT1 for both the embryo types analyzed together. RPS18 was the least stable gene for both cloned and IVF blastocysts. Following NormFinder analysis, the order of stability was RPS15 = HPRT1> GAPDH for cloned blastocysts, HMBS= UBC>RPS23 for IVF blastocysts, and HPRT1> GAPDH> RPS15 for cloned and IVF blastocysts together. These results suggest that despite overlapping of the three most stable ICGs between cloned and IVF blastocysts, the panel of ICGs selected for normalization of qPCR data of cloned and IVF blastocyst-stage embryos should be different.
机译:我们评估了10个候选内部对照基因(ICG)的适用性,属于不同的功能类,即ACTB,EEF1A1,GAPDH,HPRT1,HMB,RPS15,RPS18,RPS23,SDHA和UBC,用于标准化实时定量聚合酶链通过手工克隆和体外施肥产生的胚泡阶段水牛胚胎的反应(QPCR)数据(IVF)。从三个池中分离出总RNA,每个克隆和IVF胚泡(n = 50 /池)用于cDNA合成。两种不同的统计算法属性和奈奎切姆用于评估这些基因的稳定性。基于基因稳定性测量(M值)和成对变异(V值),通过Genorm分析计算,最稳定的ICG是克隆胚泡,HMB,UBC和IVF胚泡和RPS15,GAPDH的克隆胚泡,HMB,UBC和HPRT1的rps15,HPRT1和ActB和分析在一起的胚胎类型的HPRT1。 RPS18是克隆和IVF胚泡的最不稳定的基因。在常常算法分析之后,稳定性的顺序是克隆胚泡的RPS15 = HPRT1> GAPDH,用于IVF胚泡的HMBS = UBC> RPS23,以及用于克隆和IVF胚泡的HPRT1> GAPDH> RPS15。这些结果表明,尽管克隆和IVF胚泡之间的三个最稳定的ICG重叠,所以选择用于克隆和IVF胚泡阶段胚胎QPCR数据的标准化的ICGS应该是不同的。

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