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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >In vitro production and nuclear transfer affect dosage compensation of the X-linked gene transcripts G6PD, PGK, and Xist in preimplantation bovine embryos.
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In vitro production and nuclear transfer affect dosage compensation of the X-linked gene transcripts G6PD, PGK, and Xist in preimplantation bovine embryos.

机译:体外生产和核移植影响植入前牛胚胎中X连锁基因转录本G6PD,PGK和Xist的剂量补偿。

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摘要

Equal expression of X-linked genes such as G6PD and PGK in females and males and the initiation of X-chromosome inactivation are critically dependent on the expression of the X-inactive specific transcript (Xist). The objective of the present study was to determine the effects of in vitro production (IVP) and nuclear transfer (NT) on the relative abundance (RA) of the X-linked transcripts G6PD, PGK, and Xist in preimplantation bovine embryos. In experiment 1, sex-determined IVP or in vivo-produced embryos were analyzed for mRNA expression of the 3 genes. The sex ratio was 36% vs. 64% in IVP blastocysts and thus deviated significantly from the expected ratio of 50% in the vivo control group. The RA of G6PD transcripts was significantly higher in female IVP embryos than in male embryos. In contrast, no significant differences were seen between in vivo-derived female embryos and their male counterparts. At the morula stage, female IVP embryos transcribed significantly more PGK mRNA than did male embryos. However, blastocysts did not exhibit significant differences in PGK transcripts. No differences were observed for in vivo-derived embryos with regard to the RA of PGK transcripts. The RA of Xist mRNA was significantly higher in all female embryos than in their male counterparts. In experiment 2, IVP, in vivo-developed, NT-derived, and parthenogenetic embryos carrying two X chromosomes of either maternal and paternal origin or of maternal origin only (parthenogenotes) were analyzed for the RA of the 3 genes. In NT-derived morulae, the RA of G6PD transcripts was significantly increased compared with their IVP and in vivo-generated counterparts. G6PD transcript levels were significantly increased in IVP blastocysts compared with in vivo-generated and parthenogenetic embryos. At the morula stage, PGK transcripts were similar in all groups, but the RA of PGK transcripts was significantly higher in IVP blastocysts than in their in vivo-generated, parthenogenetic, and NT-derived counterparts. The RA of Xist was significantly elevated in NT-derived morulae compared with IVP, in vivo-generated, and parthenogenetic embryos. NT-derived blastocysts showed an increased Xist expression compared with that of IVP, in vivo-generated, and parthenogenetic embryos. Results of the present study show for the first time that differences in X-chromosome-linked gene transcript levels are related to a perturbed dosage compensation in female and male IVP and female NT-derived embryos. This finding warrants further studies to improve IVP systems and NT protocols to ensure the production of embryos with normal gene expression patterns.
机译:X连锁基因(例如G6PD和PGK)在雌性和雄性中的均等表达以及X染色体失活的启动关键取决于非X激活的特定转录本(Xist)的表达。本研究的目的是确定体外生产(IVP)和核转移(NT)对植入前牛胚胎中X连锁转录本G6PD,PGK和Xist的相对丰度(RA)的影响。在实验1中,分析了性别决定的IVP或体内产生的胚胎中3个基因的mRNA表达。 IVP囊胚的性别比为36%,而64%为性别比,因此与体内对照组的50%的预期比例明显不同。女性IVP胚胎中G6PD转录本的RA显着高于男性胚胎。相反,在体内衍生的雌性胚胎与雄性雌性胚胎之间没有发现显着差异。在桑ula期,雌性IVP胚胎比雄性胚胎转录出更多的PGK mRNA。但是,胚泡在PGK转录本上没有表现出显着差异。对于PGK转录本的RA,未观察到体内来源的胚胎的差异。在所有雌性胚胎中,Xist mRNA的RA均显着高于雄性。在实验2中,分析了具有两个X染色体的IVP,体内发育,NT衍生和孤雌生殖的胚胎,这些X染色体既有母本又有父本或仅是母本(单性生殖),这3个基因的RA均得到了分析。在NT来源的桑ula中,与它们的IVP和体内生成的对应物相比,G6PD转录物的RA显着增加。与体内生成的和孤雌生殖的胚胎相比,IVP囊胚中的G6PD转录水平显着增加。在桑ula期,所有组的PGK转录本都相似,但是IVP囊胚中PGK转录本的RA明显高于其体内产生的,孤雌生殖的和NT衍生的对应物。与IVP,体内生成的和孤雌生殖的胚胎相比,NT衍生的桑ula中Xist的RA显着升高。与IVP,体内生成的和孤雌生殖的胚胎相比,NT衍生的胚泡显示出更高的Xist表达。本研究的结果首次表明,X染色体相关基因转录水平的差异与雌性和雄性IVP以及雌性NT来源的胚胎的剂量补偿扰动有关。这一发现值得进一步研究来改善IVP系统和NT方案,以确保产生具有正常基因表达模式的胚胎。

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