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甲状腺激素会改变体外生产的牛囊胚的转录组。

Thyroid hormones alter the transcriptome of in vitro-produced bovine blastocysts.

作者信息

Ashkar Fazl A, Revay Tamas, Rho NaYoung, Madan Pavneesh, Dufort Isabelle, Robert Claude, Favetta Laura A, Schmidt Chris, King W Allan

机构信息

Department of Biomedical Sciences,University of Guelph,Guelph,ON N1G 2W1,Canada.

Faculté des Sciences de l'Agriculture et de l'Alimentation,Département des Sciences Animales,Pavillon INAF,Centre de Recherche en Biologie de la Reproduction (CRBR),Université Laval,Québec,Canada.

出版信息

Zygote. 2016 Apr;24(2):266-76. doi: 10.1017/S0967199415000167. Epub 2015 Jun 23.

Abstract

Thyroid hormones (THs) have been shown to improve in vitro embryo production in cattle by increasing blastocyst formation rate, and the average cell number of blastocysts and by significantly decreasing apoptosis rate. To better understand those genetic aspects that may underlie enhanced early embryo development in the presence of THs, we characterized the bovine embryonic transcriptome at the blastocyst stage, and examined differential gene expression profiles using a bovine-specific microarray. We found that 1212 genes were differentially expressed in TH-treated embryos when compared with non-treated controls (>1.5-fold at P < 0.05). In addition 23 and eight genes were expressed uniquely in control and treated embryos, respectively. The expression of genes specifically associated with metabolism, mitochondrial function, cell differentiation and development were elevated. However, TH-related genes, including those encoding TH receptors and deiodinases, were not differentially expressed in treated embryos. Furthermore, the over-expression of 52 X-chromosome linked genes in treated embryos suggested a delay or escape from X-inactivation. This study highlights the significant impact of THs on differential gene expression in the early embryo; the identification of TH-responsive genes provides an insight into those regulatory pathways activated during development.

摘要

甲状腺激素(THs)已被证明可通过提高牛体外胚胎生产中的囊胚形成率、囊胚平均细胞数并显著降低凋亡率来改善体外胚胎生产。为了更好地理解在THs存在下可能促进早期胚胎发育的那些遗传因素,我们对牛囊胚阶段的胚胎转录组进行了表征,并使用牛特异性微阵列检查了差异基因表达谱。我们发现,与未处理的对照相比,在经TH处理的胚胎中有1212个基因差异表达(P < 0.05时>1.5倍)。此外,分别有23个和8个基因在对照胚胎和处理胚胎中独特表达。与代谢、线粒体功能、细胞分化和发育特异性相关的基因表达升高。然而,包括编码TH受体和脱碘酶的基因在内的TH相关基因在处理后的胚胎中没有差异表达。此外,处理后胚胎中52个X染色体连锁基因的过表达表明X染色体失活延迟或逃避。本研究突出了THs对早期胚胎差异基因表达的显著影响;TH反应基因的鉴定为发育过程中激活的那些调控途径提供了见解。

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