Henan Key Laboratory of Reproduction and Genetics, Center for Reproductive Medicine, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Academy of medical sciences, Zhengzhou University, Zhengzhou, China.
Cell Prolif. 2023 Dec;56(12):e13516. doi: 10.1111/cpr.13516. Epub 2023 Jun 13.
Normal ovarian development is necessary for the production of healthy oocytes. However, the characteristics of oocytes development at different stages and the regulatory relationship between oocytes and somatic cells remain to be fully explained. Here, we combined scRNA-seq and spatial transcriptomic sequencing to profile the transcriptomic atlas of developing ovarian of the rat. We identified four components from developing granulosa cells including cumulus, primitive, mural, and luteal cells, and constructed their differential transcriptional regulatory networks. Several novel growth signals from oocytes to cumulus cells were identified, such as JAG1-NOTCH2 and FGF9-FGFR2. Moreover, we observed three cumulus sequential phases during follicle development determined by the key transcriptional factors in each cumulus phase (Bckaf1, Gata6, Cebpb, etc.), as well as the potential pinpointed roles of macrophages in luteal regression. Altogether, the single-cell spatial transcriptomic profile of the ovary provides not only a new research dimension for temporal and spatial analysis of ovary development, but also valuable data resources and a research basis for in-depth excavation of the mechanisms of mammalian ovary development.
正常的卵巢发育对于产生健康的卵母细胞是必要的。然而,卵母细胞在不同阶段的发育特征以及卵母细胞和体细胞之间的调控关系仍有待充分阐明。在这里,我们结合 scRNA-seq 和空间转录组测序技术,对大鼠卵巢发育的转录组图谱进行了分析。我们从发育中的颗粒细胞中鉴定出四个成分,包括卵丘、原始、壁层和黄体细胞,并构建了它们的差异转录调控网络。鉴定到了一些来自卵母细胞到卵丘细胞的新的生长信号,如 JAG1-NOTCH2 和 FGF9-FGFR2。此外,我们观察到卵泡发育过程中的三个卵丘相继阶段,这是由每个卵丘阶段的关键转录因子决定的(Bckaf1、Gata6、Cebpb 等),以及巨噬细胞在黄体退化中的潜在作用。总之,卵巢的单细胞空间转录组图谱不仅为卵巢发育的时空分析提供了一个新的研究维度,而且为深入挖掘哺乳动物卵巢发育的机制提供了有价值的数据资源和研究基础。