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首页> 外文期刊>Molecular reproduction and development >Transcription profile in mouse four-cell, morula, and blastocyst: Genes implicated in compaction and blastocoel formation.
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Transcription profile in mouse four-cell, morula, and blastocyst: Genes implicated in compaction and blastocoel formation.

机译:小鼠四细胞,桑ula和囊胚中的转录特征:与致密化和囊胚形成有关的基因。

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To gain insight into early embryo development, we utilized microarray technology to compare gene expression profiles in four-cell (4C), morula (MO), and blastocyst (BL) stage embryos. Differences in spot intensities were normalized, and grouped by using Avadis Prophetic software platform (version 3.3, Strand Genomics Ltd.) and categories were based on the PANTHER and gene ontology (GO) classification system. This technique identified 622 of 7,927 genes as being more highly expressed in MO when compared to 4C (P < 0.05); similarly, we identified 654 of 9,299 genes as being more highly expressed in BL than in MO (P < 0.05). Upregulation of genes for cytoskeletal, cell adhesion, and cell junction proteins were identified in the MO as compared to the 4C stage embryos, this means they could be involved in the cell compaction necessary for the development to the MO. Genes thought to be involved in ion channels, membrane traffic, transfer/carrier proteins, and lipid metabolism were also identified as being expressed at a higher level in the BL stage embryos than in the MO. Real-time RT-PCR was performed to confirm differential expression of selected genes. The identification of the genes being expressed in here will provide insight into the complex gene regulatory networks effecting compaction and blastocoel formation.
机译:为了深入了解早期胚胎发育,我们利用微阵列技术比较了四细胞(4C),桑ula(MO)和胚泡(BL)阶段胚胎的基因表达谱。将斑点强度的差异归一化,并使用Avadis Prophetic软件平台(3.3版,Strand Genomics Ltd.)进行分组,并基于PANTHER和基因本体(GO)分类系统对类别进行分类。与4C相比,该技术确定了7,927个基因中的622个在MO中的表达更高(P <0.05);同样,我们鉴定出9,299个基因中的654个在BL中比在MO中表达更高(P <0.05)。与4C期胚胎相比,在MO中发现了细胞骨架,细胞粘附和细胞连接蛋白基因的上调,这意味着它们可能参与了发展为MO所需的细胞紧实过程。还确定了与离子通道,膜运输,转移/载体蛋白和脂质代谢有关的基因在BL期胚胎中的表达水平高于MO。进行实时RT-PCR以确认所选基因的差异表达。在这里表达的基因的鉴定将提供影响致密化和囊胚形成的复杂基因调控网络的见解。

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