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猪四倍体体细胞核移植胚胎的发育受卵母细胞核的影响。

Development of porcine tetraploid somatic cell nuclear transfer embryos is influenced by oocyte nuclei.

作者信息

Fu Bo, Liu Di, Ma Hong, Guo Zhen-Hua, Wang Liang, Li Zhong-Qiu, Peng Fu-Gang, Bai Jing

机构信息

Institute of Animal Husbandry Research, Heilongjiang Academy of Agricultural Sciences, Harbin, 150086, China.

College of Animal Science, Northeast Agriculture University, Harbin, 150030, China.

出版信息

Cell Biol Int. 2016 Feb;40(2):214-22. doi: 10.1002/cbin.10554. Epub 2015 Nov 24.

Abstract

Cloning efficiency in mammalian systems remains low because reprogramming of donor cells is frequently incomplete. Nuclear factors in the oocyte are removed by enucleation, and this removal may adversely affect reprogramming efficiency. Here, we investigated the role of porcine oocyte nuclear factors during reprogramming. We introduced somatic cell nuclei into intact MII oocytes to establish tetraploid somatic cell nuclear transfer (SCNT) embryos containing both somatic nuclei and oocyte nuclei. We then examined the influence of the oocyte nucleus on tetraploid SCNT embryo development by assessing characteristics including pronucleus formation, cleavage rate, and blastocyst formation. Overall, tetraploid SCNT embryos have a higher developmental competence than do standard diploid SCNT embryos. Therefore, we have established an embryonic model in which a fetal fibroblast nucleus and an oocyte metaphase II plate coexist. Tetraploid SCNT represents a new research platform that is potentially useful for examining interactions between donor nuclei and oocyte nuclei. This platform should facilitate further understanding of the roles played by nuclear factors during reprogramming.

摘要

在哺乳动物系统中,克隆效率仍然很低,因为供体细胞的重编程常常不完全。卵母细胞中的核因子通过去核被去除,而这种去除可能会对重编程效率产生不利影响。在这里,我们研究了猪卵母细胞核因子在重编程过程中的作用。我们将体细胞核导入完整的MII期卵母细胞中,以建立包含体细胞核和卵母细胞核的四倍体体细胞核移植(SCNT)胚胎。然后,我们通过评估包括原核形成、卵裂率和囊胚形成等特征,来检测卵母细胞核对四倍体SCNT胚胎发育的影响。总体而言,四倍体SCNT胚胎比标准的二倍体SCNT胚胎具有更高的发育能力。因此,我们建立了一个胎儿成纤维细胞核与卵母细胞中期II板共存的胚胎模型。四倍体SCNT代表了一个新的研究平台,可能有助于研究供体细胞核与卵母细胞核之间的相互作用。这个平台应该有助于进一步理解核因子在重编程过程中所起的作用。

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