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通过孤雌生殖或体外受精生产的绵羊胚胎的不同时间基因表达模式。

Different temporal gene expression patterns for ovine pre-implantation embryos produced by parthenogenesis or in vitro fertilization.

机构信息

Department of Veterinary Clinics and Pathology, University of Sassari, Sassari, Italy.

出版信息

Theriogenology. 2010 Sep 15;74(5):712-23. doi: 10.1016/j.theriogenology.2010.03.024. Epub 2010 May 7.

DOI:10.1016/j.theriogenology.2010.03.024
PMID:20451995
Abstract

Parthenogenetic activation of the mammalian oocyte constitutes an essential step to a number of oocyte- or embryo-related technologies. Mammalian parthenotes are useful tools for studying the roles of paternal and maternal genomes in early mammalian development and are considered potential candidates for an ethical source of embryonic stem cells. We investigated the in vitro developmental competence of pre-implantation ovine embryos derived from in vitro fertilization (IVF) and parthenogenetic activation (PA) together with the expression of a panel of fourteen genes at different times of development. IVF and PA embryos showed similar developmental competence. No differences in gene expression were observed between PA and IVF two cell-stage embryos, while PA morulae showed a significantly higher expression of IGF2. At the blastocyst stage, parthenotes exhibited up-regulation of TP-1, CDC2, and IGF2 transcripts and significantly lower levels of AQP3, ATP1A1, H2A.Z, hsp90beta, and OCT4, while NANOG, BAX, CCNB1, CDH1, GAPDH, and IGF2R displayed similar expression patterns in the two groups. Our study indicates that oocyte parthenogenetic activation does not impair in vitro pre-implantation development to the blastocyst stage, but affects the gene expression status of the embryo after the activation of its own genome.

摘要

哺乳动物卵母细胞的孤雌激活是许多卵母细胞或胚胎相关技术的重要步骤。哺乳动物孤雌胚是研究父本和母本基因组在早期哺乳动物发育中的作用的有用工具,被认为是胚胎干细胞的潜在伦理来源。我们研究了来自体外受精 (IVF) 和孤雌激活 (PA) 的绵羊胚胎在体外的发育能力,以及在不同发育时间点的 14 个基因的表达情况。IVF 和 PA 胚胎显示出相似的发育能力。PA 和 IVF 二细胞期胚胎之间的基因表达没有差异,而 PA 桑椹胚表现出 IGF2 的表达显著升高。在囊胚阶段,孤雌胚表现出 TP-1、CDC2 和 IGF2 转录物的上调,以及 AQP3、ATP1A1、H2A.Z、hsp90β和 OCT4 的水平显著降低,而 NANOG、BAX、CCNB1、CDH1、GAPDH 和 IGF2R 在两组中的表达模式相似。我们的研究表明,卵母细胞孤雌激活不会损害胚胎到囊胚阶段的体外植入前发育,但会影响胚胎自身基因组激活后的基因表达状态。

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