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G6PDH-activity in equine oocytes correlates with morphology, expression of candidate genes for viability, and preimplantative in vitro development

机译:马卵母细胞中的G6PDH活性与形态,存活力候选基因的表达以及植入前的体外发育相关

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Efficiencies for in vitro production of equine embryos are still low due to highly variable developmental competences of equine immature oocytes. In contrast to the equine, in vitro developmental competence of immature oocytes has been predicted successfully by the activity of glucose-6-phosphate dehydrogenase (G6PDH) indicated by brilliant cresyl blue (BCB) dye in a range of different species. Therefore, the aim of the present study was to test the association between G6PDH activity in equine oocytes with: (1) cumulus morphology and oocyte properties in terms of diameter and volume; (2) maturational competence; (3) gene expression of certain molecular markers; and (4) in vitro embryo development after intracytoplasmic sperm injection. Equine oocytes were exposed to BCB stain and were classified as BCB+ or BCB- according to their ability to convert the dye from blue to colorless. Additionally, BCB+ and BCB- oocytes were subclassified as having a compact (Cp) or expanded (Ex) cumulus complex. As a result, BCB+ oocytes had a greater proportion of expanded cumulus oocyte complexes compared with BCB- oocytes (71.2% vs. 49.5%). Moreover, we observed a significant difference in oocyte diameter and volume between BCB+ and BCB- oocytes irrespective of cumulus morphology. BCB+ oocytes reached a higher maturation rate compared with BCB- oocytes (59.0% vs. 28.7%). Regarding the analyzed candidate genes, relative transcript abundance was significantly different for nine genes. The expression of eight genes was significantly higher (P < 0.05) for BCB+ oocytes, including ATPV6E, IF-3, TFAM, DNMT1, STAT3, Aurora-A, ODC1, and CKS2 whereas BCB- oocytes showed higher in expression of COX1. These results are in line with the observed developmental competence. Cleavage rate (45.9% vs. 29.0%) and percentage of embryos that reached the blastocyst stage (9.2% vs. 1.4%) were significantly higher for embryos derived from BCB+ oocytes compared with BCB- oocytes. In conclusion, the present study provides evidence that G6PDH-activity in immature equine oocytes is a useful predictor for subsequent in vitro developmental competence
机译:由于马未成熟卵母细胞的发育能力高度可变,因此体外产生马胚胎的效率仍然很低。与马相反,未成熟卵母细胞的体外发育能力已通过一系列不同物种的亮甲酚蓝(BCB)染料指示的葡萄糖-6-磷酸脱氢酶(G6PDH)活性得到了成功预测。因此,本研究的目的是测试马卵母细胞中的G6PDH活性与以下方面的关联:(1)卵丘形态和卵母细胞特性的直径和体积; (二)成熟能力; (3)某些分子标记的基因表达; (4)注射胞浆内精子后的体外胚胎发育。马卵母细胞暴露于BCB染色,根据其将染料从蓝色转变为无色的能力分类为BCB +或BCB-。另外,将BCB +和BCB-卵母细胞亚分类为具有紧密(Cp)或扩展(Ex)积云复合体。结果,与BCB-卵母细胞相比,BCB +卵母细胞具有更大的膨胀卵丘卵母细胞复合物比例(71.2%vs. 49.5%)。此外,我们观察到BCB +和BCB-卵母细胞在卵母细胞直径和体积上存在显着差异,而与卵丘形态无关。与BCB-卵母细胞相比,BCB +卵母细胞达到了更高的成熟率(59.0%对28.7%)。关于分析的候选基因,九个基因的相对转录本丰度明显不同。 BCB +卵母细胞包括ATPV6E,IF-3,TFAM,DNMT1,STAT3,Aurora-A,ODC1和CKS2的八个基因的表达显着较高(P <0.05),而BCB-卵母细胞则表现出较高的COX1表达。这些结果与观察到的发育能力一致。与BCB-卵母细胞相比,BCB +卵母细胞的胚胎的卵裂率(45.9%对29.0%)和到达胚泡期的胚胎百分比(9.2%对1.4%)显着更高。总之,本研究提供了证据,即未成熟马卵母细胞中的G6PDH活性是后续体外发育能力的有用预测因子

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