Spatially resolved transcriptomic profiling of placental development in dairy cow.

IF 4 1区 生物学 Q1 ZOOLOGY Zoological Research Pub Date : 2024-05-18 DOI:10.24272/j.issn.2095-8137.2023.205
Guang-Hui Tan, Shi-Jie Liu, Ming-Le Dou, De-Feng Zhao, Ao Zhang, Heng-Kuan Li, Fu-Nong Luo, Tao Shi, Hao-Ping Wang, Jing-Yuan Lei, Yong Zhang, Yu Jiang, Yi Zheng, Fei Wang
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Abstract

The placenta plays a crucial role in successful mammalian reproduction. Ruminant animals possess a semi-invasive placenta characterized by a highly vascularized structure formed by maternal endometrial caruncles and fetal placental cotyledons, essential for full-term fetal development. The cow placenta harbors at least two trophoblast cell populations: uninucleate (UNC) and binucleate (BNC) cells. However, the limited capacity to elucidate the transcriptomic dynamics of the placental natural environment has resulted in a poor understanding of both the molecular and cellular interactions between trophoblast cells and niches, and the molecular mechanisms governing trophoblast differentiation and functionalization. To fill this knowledge gap, we employed Stereo-seq to map spatial gene expression patterns at near single-cell resolution in the cow placenta at 90 and 130 days of gestation, attaining high-resolution, spatially resolved gene expression profiles. Based on clustering and cell marker gene expression analyses, key transcription factors, including YBX1 and NPAS2, were shown to regulate the heterogeneity of trophoblast cell subpopulations. Cell communication and trajectory analysis provided a framework for understanding cell-cell interactions and the differentiation of trophoblasts into BNCs in the placental microenvironment. Differential analysis of cell trajectories identified a set of genes involved in regulation of trophoblast differentiation. Additionally, spatial modules and co-variant genes that help shape specific tissue structures were identified. Together, these findings provide foundational insights into important biological pathways critical to the placental development and function in cows.

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奶牛胎盘发育的空间分辨率转录组特征分析
胎盘对哺乳动物的成功繁殖起着至关重要的作用。反刍动物拥有半侵入性胎盘,其特点是由母体子宫内膜和胎儿胎盘子叶形成的高度血管化结构,对胎儿足月发育至关重要。牛胎盘中至少有两种滋养层细胞群:无核细胞(UNC)和双核细胞(BNC)。然而,由于阐明胎盘自然环境转录组动态的能力有限,人们对滋养层细胞和龛位之间的分子和细胞相互作用以及滋养层细胞分化和功能化的分子机制了解甚少。为了填补这一知识空白,我们采用立体测序技术绘制了妊娠90天和130天母牛胎盘中接近单细胞分辨率的空间基因表达模式图,获得了高分辨率的空间分辨基因表达谱。根据聚类和细胞标记基因表达分析,包括 YBX1 和 NPAS2 在内的关键转录因子被证明能调节滋养层细胞亚群的异质性。细胞通讯和轨迹分析为了解胎盘微环境中细胞与细胞之间的相互作用以及滋养层细胞向BNC的分化提供了一个框架。细胞轨迹的差异分析确定了一组参与滋养细胞分化调控的基因。此外,还发现了有助于形成特定组织结构的空间模块和共变基因。这些发现为了解对奶牛胎盘发育和功能至关重要的重要生物通路提供了基础。
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来源期刊
Zoological Research
Zoological Research Medicine-General Medicine
CiteScore
7.60
自引率
10.20%
发文量
1937
审稿时长
8 weeks
期刊介绍: Established in 1980, Zoological Research (ZR) is a bimonthly publication produced by Kunming Institute of Zoology, the Chinese Academy of Sciences, and the China Zoological Society. It publishes peer-reviewed original research article/review/report/note/letter to the editor/editorial in English on Primates and Animal Models, Conservation and Utilization of Animal Resources, and Animal Diversity and Evolution.
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