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Oocyte-derived growth factors and ovulation rate in sheep

机译:卵母细胞衍生的生长因子和绵羊排卵率

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The physiological mechanisms controlling ovulation rate in mammals involve a complex exchange of endocrine signals between the pituitary gland and the ovary, and a localized exchange of intraovarian hormones between the oocyte and its adjacent somaticcells. The discoveries in sheep of mutations in bone morphogenetic protein 15 (BMP15) and bone morphogenetic protein receptor type IB (BMPR-IB) together with recent findings on the physiological effects of growth differentiation factor 9 (GDF9) and BMP15 on folllcular development and ovulation rate highlight some important differences in the way in which the oocyte may function in mammals with different ovulation rate phenotypes. In sheep, BMP15 and GDF9 have each been shown to be essential for the early and later stages of follicular development. In addition, ovulation rate is sensitive to changes in the dose of either of these two oocyte-derived growth factors. These findings are in contrast to those reported for mice in which GDF9, but not BMP15, is essential for follicular development. The evidence to date is consistent with the hypothesis that the oocyte plays a central role in regulating key events in the process of follicular development and hence, is important in determining ovulation rate. Moreover, it appears that the mechanisms that the oocyte uses to control these processes differ between species with low and high ovulation rate phenotypes.
机译:控制哺乳动物排卵率的生理机制涉及垂体腺和卵巢之间的内分泌信号的复杂交换,以及卵母细胞与其相邻的躯体卵瘤之间的局部内肾激素的局部交换。关于骨形态发生蛋白15(BMP15)和骨形态发生蛋白受体类型IB(BMPR-IB)突变的发现与最近的生长分化因子9(GDF9)和BMP15对卵泡发育和排卵率的生理作用突出卵母细胞在具有不同排卵率表型的哺乳动物中起作用的方式的一些重要差异。在绵羊中,BMP15和GDF9每人都被证明对滤窗发育的早期和后期阶段至关重要。此外,排卵率对这两个卵母细胞衍生的生长因子中的任何一种的剂量变化敏感。这些发现与报告的小鼠报道的结果形成鲜明对比,其中GDF9,但不是BMP15对卵泡发育至关重要。迄今为止的证据与假设一致,即卵母细胞在调节滤泡发展过程中的关键事件方面发挥着核心作用,因此在确定排卵率方面是重要的。此外,似乎卵母细胞用于控制这些过程的机制在具有低和高排卵率表型的物种之间不同。

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