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首页> 外文期刊>Reproduction: The official journal of the Society for the Study of Fertility >Changes in granulosa cells' gene expression associated with increased oocyte competence in bovine
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Changes in granulosa cells' gene expression associated with increased oocyte competence in bovine

机译:与牛卵母细胞能力增强相关的颗粒细胞基因表达的变化

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One of the challenges in mammalian reproduction is to understand the basic physiology of oocyte quality. It is believed that the follicle status is linked to developmental competence of the enclosed oocyte. To explore the link between follicles and competence in cows, previous research at our laboratory has developed an ovarian stimulation protocol that increases and then decreases oocyte quality according to the timing of oocyte recovery post-FSH withdrawal (coasting). Using this protocol, we have obtained the granulosa cells associated with oocytes of different qualities at selected times of coasting. Transcriptome analysis was done with Embryogene microarray slides and validation was performed by real-time PCR. Results show that the major changes in gene expression occurred from 20 to 44?h of coasting, when oocyte quality increases. Secondly, among upregulated genes (20–44?h), 25% were extracellular molecules, highlighting potential granulosa signaling cascades. Principal component analysis identified two patterns: one resembling the competence profile and another associated with follicle growth and atresia. Additionally, three major functional changes were identified: i) the end of follicle growth ( BMPR1B , IGF2 , and RELN ), involving interactions with the extracellular matrix ( TFPI2 ); angiogenesis ( NRP1 ), including early hypoxia, and potentially oxidative stress ( GFPT2 , TF , and VNN1 ) and ii) apoptosis ( KCNJ8 ) followed by iii) inflammation ( ANKRD1 ). This unique window of analysis indicates a progressive hypoxia during coasting mixed with an increase in apoptosis and inflammation. Potential signaling pathways leading to competence have been identified and will require downstream testing. This preliminary analysis supports the potential role of the follicular differentiation in oocyte quality both during competence increase and decrease phases.
机译:哺乳动物繁殖的挑战之一是了解卵母细胞质量的基本生理学。认为卵泡状态与封闭卵母细胞的发育能力有关。为了探究牛卵泡与能力之间的联系,我们实验室的先前研究已经开发了一种卵巢刺激方案,该方案根据FSH撤离(刮擦)后卵母细胞恢复的时间先增加然后降低卵母细胞质量。使用此协议,我们获得了在选定的滑行时间与不同质量的卵母细胞相关的颗粒细胞。转录组分析使用Embryogene微阵列玻片完成,并通过实时PCR进行验证。结果显示,当卵母细胞质量提高时,基因表达的主要变化发生在惯性运动的20至44小时。其次,在上调的基因(20–44?h)中,有25%是细胞外分子,突出了潜在的颗粒信号传导级联。主成分分析确定了两种模式:一种类似于能力水平,另一种与卵泡生长和闭锁有关。此外,确定了三个主要功能变化:i)卵泡生长的结束(BMPR1B,IGF2和RELN),涉及与细胞外基质的相互作用(TFPI2);血管生成(NRP1),包括早期缺氧和潜在的氧化应激(GFPT2,TF和VNN1),以及ii)细胞凋亡(KCNJ8),其次是iii)炎症(ANKRD1)。这种独特的分析窗口表明,滑行期间的进行性缺氧与细胞凋亡和炎症的增加相混合。已经确定了导致能力的潜在信号通路,并将需要下游测试。该初步分析支持在能力增强和降低阶段,卵泡分化在卵母细胞质量中的潜在作用。

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