甜菜碱
卵母细胞
胚泡
细胞生物学
氧化应激
化学
活性氧
胚胎
体外成熟
抗氧化剂
线粒体
胚胎发生
细胞质
生物化学
极体
刺猬信号通路
生物
卵母细胞激活
基因表达
劈理(地质)
氧化磷酸化
体外
细胞
皮质颗粒
作者
T. Yang,Yanxin Wang,Yun Wang,Ruru Jia,S Li,Mosinan Chen,Deshun Shi,Fenghua Lu
摘要
In vitro maturation (IVM) of oocytes is crucial in livestock breeding. Oocytes obtained by IVM are more susceptible to oxidative stress than in vivo, leading to low maturation rates. Betaine from red beetroot acts as an antioxidant and methyl donor, regulating epigenetic modifications in cell physiology. This study investigates Betaine's effects on porcine oocyte IVM, embryo development and underlying molecular mechanisms. Results demonstrate that 16 mmol/L Betaine significantly enhances the first polar body extrusion, cleavage and blastocyst rates compared to the control and other concentrations. Betaine elevates normal cortical granule distribution, normal spindle assembly, normal chromosome arrangement and overall m6A levels during IVM. It increases the antioxidant gene expression and mitochondrial function and decreases reactive oxygen species levels. However, Betaine's beneficial effects were diminished by AMPK inhibitor compound C. In conclusion, Betaine enhances porcine oocyte IVM and early embryo development by enhancing the antioxidant capacity and mitochondrial function pathway.
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