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'Bone Development'' Is an Ontology Group Upregulated in Porcine Oocytes Before In Vitro Maturation: A Microarray Approach

机译:“骨骼发展”是在体外成熟之前在猪卵母细胞中上调的本体组:微阵列方法

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Mammalian cumulus-oocyte complexes (COCs) reach full developmental capability during folliculogenesis and oogenesis. It is well recognized that only gametes achieving MII stage after in vivo or in vitro maturation (IVM) are successfully fertilized by a single spermatozoon. Although the process of oocyte nuclear and/ or cytoplasmic maturation in pigs is well determined, there exist many differences that promote these processes in vivo and in vitro. Therefore, this study aimed to investigate the differences in RNA expression profiles between porcine oocytes before and after IVM using microarray and real-time quantitative polymerase chain reaction (RT-qPCR) assays. Experiments were performed on oocytes isolated from 55 pubertal crossbred Landrace gilts. The oocytes were analyzed both before and after IVM and only Brilliant Cresyl Blue (BCB)positive gametes were used for subsequent microarray analysis (Affymetrix) and RT-qPCR analysis. The microarray assay, which measures expression of 12,258 transcripts, revealed 419 differentially expressed transcripts in porcine oocytes, from which 379 were downregulated and 40 were upregulated before IVM compared to those analyzed after IVM. After DAVID analysis, we found eight different transcripts, including IHH, BMP1, WWTR1, CHRDL1, KLF10, EIF2AK3, MMP14, and STC1. Their expression is related to the "bone development'' ontology group and was further subjected to hierarchical clusterization. Using RT-qPCR analysis, we confirmed the results of the microarray assay, showing increased expression of the eight genes in oocytes before IVM compared to oocytes after maturation in vitro. It has been suggested that "bone development'' belongs to one ontological group involving genes substantially upregulated in porcine oocytes before IVM. We suggest that the gamete mRNA expression profile before IVM may comprise stored transcripts, which are templates for protein biosynthesis following fertilization. We also hypothesize that these mRNAs may be a specific "fingerprint'' of folliculogenesis and oogenesis in pigs.
机译:哺乳动物浓度卵母细胞配合物(COCs)在卵泡发生和ofoferis内达到全部发育能力。很好地认识到,只有在体内或体外成熟(IVM)之后获得MII阶段的卡片通过单个精子成功施肥。虽然猪的卵母细胞核和/或细胞质成熟的过程得到很好的确定,但存在许多促进这些过程在体内和体外的差异。因此,该研究旨在研究使用微阵列和实时定量聚合酶链反应(RT-QPCR)测定的IVM前后猪卵母细胞之间RNA表达谱的差异。对从55个普国青春期杂交地区吉尔茨分离的卵母细胞进行实验。在IVM之前和之后分析了卵母细胞,并且仅用于刚刚出亮的番茄蓝(BCB)阳性配子用于随后的微阵列分析(Affymetrix)和RT-QPCR分析。衡量12,2,2,258转录物的表达的微阵列测定揭示了猪卵母细胞中的419转录物,从中降低了379,与IVM后分析的那些相比,IVM在IVM之前上调了40个。在David分析后,我们发现了八个不同的成绩单,包括IHH,BMP1,WWTR1,CHRDL1,KLF10,EIF2AK3,MMP14和STC1。它们的表达与“骨开发”的本体论组有关,进一步进行分层集群化。使用RT-QPCR分析,我们证实了微阵列测定的结果,显示了IVM与卵母细胞相比卵母细胞中八种基因的表达增加在体外成熟后。有人提出“骨发育”属于一个涉及IVM之前在猪卵母细胞中基本上上调的基因的一个本体组织。我们建议在IVM之前的配子mRNA表达谱可以包含储存的转录物,其是受精后蛋白质生物合成的模板。我们还假设这些MRNA可以是猪的特定的“指纹”和猪中的ofofisesis。

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