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Using Single Molecule mRNA Fluorescent in Situ Hybridization (RNA-FISH) to Quantify mRNAs in Individual Murine Oocytes and Embryos

机译:使用单分子mRNA荧光原位杂交(RNA-FISH)定量单个小鼠卵母细胞和胚胎中的mRNA。

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摘要

Changes in abundance of mRNAs during oocyte growth and maturation and during pre-implantation embryo development have been documented using quantitative real-time RT-PCR (qPCR), microarray analyses, and whole genome sequencing. However, these techniques require amplification of mRNAs, normalization using housekeeping genes, can be biased for abundant transcripts, and/or require large numbers of oocytes and embryos which can be difficult to acquire from mammalian species. We optimized a single molecule RNA fluorescence in situ hybridization (RNA-FISH) protocol, which amplifies fluorescence signal to detect candidate transcripts, for use with individual oocytes and embryos. Quantification using the software Localize showed patterns of Gdf9 and Pou5f1 mRNA expression in oocytes and embryos that were consistent with previously published data. Interestingly, low levels of Nanog mRNA were also accurately and reproducibly measured in oocytes and one- and two-cell embryos suggesting that RNA-FISH could be used to detect and quantify low abundance transcripts. Unlike other techniques, RNA-FISH is also able to detect changes in the localization patterns of mRNAs which may be used to monitor post-transcriptional regulation of a transcript. Thus, RNA-FISH represents an important technique to investigate potential mechanisms associated with the synthesis and stability of candidate mRNAs in mammalian oocytes and embryos.
机译:已经使用定量实时RT-PCR(qPCR),微阵列分析和全基因组测序记录了卵母细胞生长和成熟以及植入前胚胎发育过程中mRNA丰度的变化。然而,这些技术需要扩增mRNA,使用管家基因进行标准化,可以偏向丰富的转录本,和/或需要大量的卵母细胞和胚胎,而这些卵母细胞和胚胎可能很难从哺乳动物中获得。我们优化了单分子RNA荧光原位杂交(RNA-FISH)协议,该协议可放大荧光信号以检测候选转录本,用于单个卵母细胞和胚胎。使用Localize软件进行的定量分析显示,在卵母细胞和胚胎中Gdf9和Pou5f1 mRNA的表达模式与以前发表的数据一致。有趣的是,还可以在卵母细胞以及一细胞和两细胞胚胎中准确,可重复地测量低水平的Nanog mRNA,这表明RNA-FISH可用于检测和定量低丰度转录物。与其他技术不同,RNA-FISH还能够检测mRNA定位模式的变化,这些变化可用于监测转录本的转录后调控。因此,RNA-FISH代表了一项重要技术,用于研究与哺乳动物卵母细胞和胚胎中候选mRNA的合成和稳定性相关的潜在机制。

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