Murin Matej, Strejcek Frantisek, Bartkova Alexandra, Morovic Martin, Benc Michal, Prochazka Radek, Lucas-Hahn Andrea, Pendovski Lazo, Laurincik Jozef
Czech Academy of Sciences, Institute of Animal Physiology and Genetics, Rumburska 89, 277 21 Libechov, Czech Republic.
Constantine the Philosopher University in Nitra, Faculty of Natural Sciences, Nabrezie mladeze 91, 94974 Nitra, Slovak Republic.
Zygote. 2019 Aug;27(4):232-240. doi: 10.1017/S0967199419000352. Epub 2019 Aug 9.
Brilliant cresyl blue (BCB) vital labelling is a powerful method for analyzing the quality of porcine cumulus-oocyte complexes. Our aim was to investigate the correlation between the selection of porcine oocytes using BCB labelling and selected intranuclear characteristics of porcine oocytes and parthenotes. Moreover, BCB labelling was correlated with the diameter of the oocyte and the developmental potential of the parthenotes. The following methods were used: BCB labelling, measurement of the diameter of the oocyte, parthenogenetic activation, immunocytochemistry, transmission electron microscopy, enucleation and relative protein concentration (RPC) analysis. We determined that the diameter of the oocytes in the BCB-positive (BCB+) group was significantly larger than in the BCB-negative (BCB-) group. Immediately after oocyte selection according to BCB labelling, we found significant difference in chromatin configuration between the analyzed groups. BCB+ oocytes were significantly better at maturation than BCB- oocytes. BCB+ embryos were significantly more competent at cleaving and in their ability to reach the blastocyst stage than BCB- embryos. Ultrastructural analyses showed that the formation of active nucleoli in the BCB+ group started at the 8-cell stage. Conversely, most BCB- embryos at the 8-cell and 16-cell stages were fragmented. No statistically significant difference in RPC in nucleolus precursor bodies (NPBs) between BCB+ and BCB- oocytes was found. We can conclude that BCB labelling could be suitable for assessing the quality of porcine oocytes. Moreover, the evaluation of RPC indicates that the quantitative content of proteins in NPB is already established in growing oocytes.
灿烂甲酚蓝(BCB)活体染色是一种分析猪卵丘-卵母细胞复合体质量的有效方法。我们的目的是研究使用BCB染色选择猪卵母细胞与猪卵母细胞和孤雌胚胎的选定核内特征之间的相关性。此外,BCB染色与卵母细胞直径和孤雌胚胎的发育潜力相关。采用了以下方法:BCB染色、卵母细胞直径测量、孤雌激活、免疫细胞化学、透射电子显微镜、去核和相对蛋白浓度(RPC)分析。我们确定,BCB阳性(BCB+)组的卵母细胞直径明显大于BCB阴性(BCB-)组。根据BCB染色选择卵母细胞后,我们发现分析组之间的染色质构型存在显著差异。BCB+卵母细胞的成熟度明显优于BCB-卵母细胞。BCB+胚胎在分裂和发育至囊胚阶段的能力上明显优于BCB-胚胎。超微结构分析表明,BCB+组活性核仁的形成始于8细胞阶段。相反,大多数处于8细胞和16细胞阶段的BCB-胚胎发生了碎片化。在BCB+和BCB-卵母细胞的核仁前体(NPB)中,未发现RPC有统计学显著差异。我们可以得出结论,BCB染色可能适用于评估猪卵母细胞的质量。此外,RPC评估表明,NPB中蛋白质的定量含量在生长中的卵母细胞中已经确定。