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首页> 外文期刊>Reproductive Biology and Endocrinology >Global gene expression in granulosa cells of growing, plateau and atretic dominant follicles in cattle
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Global gene expression in granulosa cells of growing, plateau and atretic dominant follicles in cattle

机译:牛生长,高原和闭锁显性卵泡颗粒细胞中的整体基因表达

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Background The physiological state of the dominant follicle is important as it may be linked to the competence of the oocyte within. The objective of this study was to analyze, by transcriptomic analysis, the changes occurring in granulosa cells from dominant follicles at different phases of follicular growth. Methods Granulosa cells were collected from slaughterhouse dairy cattle follicles with a diameter greater than 9?mm, and were classified at different phases of follicle growth based on flow cytometry profiles of DNA content after staining with propidium iodide. Three phases were identified based on the proportion of cells in -G1 (less than 2n DNA), G0-G1 (2n DNA) or S-M (more than 2n DNA) and follicles were thus allocated to the growing, plateau or atresia group. Between group analysis (BGA) showed clear segregation of the three groups, and the groups were contrasted against each other in a loop design to identify differently expressed genes. Ingenuity Pathway Analysis (IPA) was used to identify the functions and upstream regulators associated with the observed differently expressed genes. Results Major differences were observed between the growth phases. Granulosa cells from follicles in the plateau phase had increased expression of TYRO3 and downregulation of JAM2 compared to growing follicles, supporting the idea of a shift from proliferation to differentiation. On the other hand, genes regulating the response to oxidative stress (VNN1) and angiogenesis (ANGPT2) were upregulated in granulosa cells from atretic follicles. While the predicted activated functions in cells at the plateau stage compared to cells at the growing stage included synthesis and transport of molecules, the predictions for atretic follicles relative to plateau ones included an increase in apoptosis and cell death. Conclusion Consistent with previous studies, these observations allowed us to match the presence of specific gene transcripts to a particular physiological status and consequently to classify follicles. The results also demonstrated that the plateau phase is not a simple ‘in between’ status between growth and atresia, as several characteristics are unique to this stage.
机译:背景优势卵泡的生理状态很重要,因为它可能与卵母细胞的能力有关。这项研究的目的是通过转录组分析来分析在卵泡生长的不同阶段,来自优势卵泡的颗粒细胞的变化。方法从屠宰场奶牛卵泡中收集直径大于9?mm的颗粒细胞,并根据碘化丙锭染色后DNA含量的流式细胞仪分析,在卵泡生长的不同阶段对其进行分类。根据-G1(小于2n DNA),G0-G1(2n DNA)或S-M(大于2n DNA)中细胞的比例确定了三个阶段,因此将卵泡分配到了生长,高原或闭锁组。组间分析(BGA)显示了三组的清晰分离,并且在环设计中将各组进行了对比,以识别不同表达的基因。独创途径分析(IPA)用于鉴定与观察到的差异表达基因相关的功能和上游调节子。结果在生长期之间观察到主要差异。与生长的卵泡相比,处于稳定期的卵泡颗粒细胞具有增加的TYRO3表达和下调JAM2的能力,支持从增殖转变为分化的想法。另一方面,调节氧化应激(VNN1)和血管生成(ANGPT2)的基因在非定形卵泡颗粒细胞中被上调。尽管与生长阶段的细胞相比,处于平稳阶段的细胞的预测激活功能包括分子的合成和转运,但相对于稳定的卵泡的卵泡的预测包括凋亡和细胞死亡的增加。结论与先前的研究一致,这些观察结果使我们能够将特定基因转录本的存在与特定的生理状态进行匹配,从而对卵泡进行分类。结果还表明,高原期不是生长和闭锁之间的简单“中间”状态,因为该阶段具有一些独特的特征。

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