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首页> 外文期刊>Animal Reproduction Science >Gene expression patterns in in vitro-produced and somatic nuclear transfer-derived preimplantation bovine embryos: relationship to the large offspring syndrome?
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Gene expression patterns in in vitro-produced and somatic nuclear transfer-derived preimplantation bovine embryos: relationship to the large offspring syndrome?

机译:在体外产生的和体细胞核移植衍生的植入前牛胚胎中的基因表达模式:与大后代综合征的关系?

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摘要

A considerable proportion of the offspring born from somatic nuclear transfer (sNT)-derived and in vitro-produced (IVP) embryos, particularly in ruminants and mice, is affected by multiple abnormalities of which a high birth weight is the predominant feature; a phenomenon that has been called "large offspring syndrome (LOS)". The underlying mechanisms are largely unknown at present, but changes in epigenetic modifications occurring during preimplantation development resulting in perturbed embryonic and fetal gene expression patterns are thought to be involved in the syndrome. This review summarizes results from studies comparing mRNA expression patterns from IVP and sNT-derived embryos to those of their in vivo counterparts, which are regarded as the "gold standard". Numerous aberrations have been observed ranging from suppression of expression to de novo overexpression or more frequently to a significant up- or down-regulation of a specific gene. These observations emphasize the need for further studies during preimplantation embryo development to gain insight in the molecular, preferentially epigenetic, mechanisms regulating embryonic and fetal development. Understanding these mechanisms will help to improve biotechnologies applied to early embryos in all species including humans.
机译:从体细胞核移植(sNT)衍生和体外产生(IVP)胚胎出生的后代中,相当一部分,特别是在反刍动物和小鼠中,受到多种异常的影响,其中高出生体重是其主要特征;一种被称为“大后代综合症(LOS)”的现象。目前尚不了解其潜在机制,但是据认为,该现象涉及植入前发育过程中发生的表观遗传修饰变化,导致胚胎和胎儿基因表达模式受到干扰。这篇综述总结了将IVP和sNT来源的胚胎与体内对应物的mRNA表达模式进行比较的研究结果,这些被认为是“黄金标准”。观察到许多畸变,从抑制表达到从头过度表达,或更频繁地到特定基因的显着上调或下调。这些观察结果强调需要在植入前胚胎发育过程中进行进一步研究,以深入了解调节胚胎和胎儿发育的分子机制(优选表观遗传学)。了解这些机制将有助于改善应用于包括人类在内的所有物种的早期胚胎的生物技术。

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