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首页> 外文期刊>The Journal of Reproduction and Development >Bovine Oocytes and Early Embryos Express mRNA Encoding Glycerol Kinase but Addition of Glycerol to the Culture Media Interferes with Oocyte Maturation
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Bovine Oocytes and Early Embryos Express mRNA Encoding Glycerol Kinase but Addition of Glycerol to the Culture Media Interferes with Oocyte Maturation

机译:牛卵母细胞和早期胚胎表达编码甘油激酶的mRNA,但向培养基中添加甘油会干扰卵母细胞的成熟

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Glycerol plays multi-functional roles in cellular physiology. Other than forming the backbone molecule for glycerophospholipid and triglyceride (TG), glycerol acts as an energy substrate for glycolysis. Spermatozoa are known to utilize glycerol for energy production, but there are no reports of this in oocytes. In this study, the value of glycerol as art energy substrate for bovine oocyte maturation (Exp. 1) and the gene expression of glycerol kinase (GK), an enzyme crucial for cellular glycerol utilization, in bovine oocytes and early embryos (Exp. 2) were examined. In Exp. 1, in vitro maturation (IVM) was conducted using synthetic oviduct fluid supplemented with/without glucose (1.5 mM) and/or glycerol (1.0 mM), and maturation rate, degree of cumulus expansion, glucose consumption and lactate production by cumulus-oocyte complexes (COC) were examined. In Exp. 2, to examine the developmental expression of GK mRNA, cumulus cells, oocytes and embryos at the 2-, 8- and 16-cell, morula, expanded blastocyst and hatched blastocyst stages were obtained in separate experiments, and the expression of GK mRNA was quantified using a real-time PCR. Glycerol did not support oocyte maturation or cumulus expansion. Addition of glycerol to glucose-supplemented media significantly decreased the maturation rate. Expression of GK mRNA was very low in cumulus cells, whereas an appreciable level of the transcript was observed in the oocytes. GK mRNA was detected in embryos at all the stages examined, and its expression significantly increased at the morula stage. These results indicate that glycerol, at least at the present concentration, is not beneficial as a constituent of the medium for bovine oocyte maturation. However, the appreciable levels of GK mRNA found in the oocyte and embryo imply a physiological role for glycerol in bovine oocyte maturation and embryo development.
机译:甘油在细胞生理学中起着多功能的作用。除了形成甘油磷脂和甘油三酸酯(TG)的主链分子之外,甘油还充当糖酵解的能量底物。已知精子利用甘油来产生能量,但是在卵母细胞中尚无此报道。在这项研究中,甘油在牛卵母细胞和早期胚胎中作为牛卵母细胞成熟的艺术能量底物的价值(实验1)和甘油激酶(GK)的基因表达(一种对细胞甘油利用至关重要的酶)(实验2)。 )进行了检查。在实验中如图1所示,使用添加/不添加葡萄糖(1.5 mM)和/或甘油(1.0 mM)的合成输卵管液进行体外成熟(IVM),成熟速度,卵丘膨胀程度,葡萄糖消耗和卵丘卵母细胞产生乳酸配合物(COC)进行了检查。在实验中参照图2,检查GK mRNA的发育表达,分别在2、8和16细胞的卵丘细胞,卵母细胞和胚胎,桑ula,扩张的胚泡期和孵化的胚泡期,并分别测定GK mRNA的表达。使用实时PCR定量。甘油不支持卵母细胞成熟或卵丘扩张。在补充葡萄糖的培养基中添加甘油会显着降低成熟率。 GK mRNA的表达在卵丘细胞中非常低,而在卵母细胞中观察到可观的转录水平。在检查的所有阶段均在胚胎中检测到GK mRNA,并且在桑ula壳阶段其表达显着增加。这些结果表明,至少在目前的浓度下,甘油作为牛卵母细胞成熟培养基的成分是不利的。但是,在卵母细胞和胚胎中发现的GK mRNA的明显水平暗示着甘油在牛卵母细胞成熟和胚胎发育中的生理作用。

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