Single-Cell Atlas of the Chinese Tongue Sole (Cynoglossus semilaevis) Ovary Reveals Transcriptional Programs of Oogenesis in Fish

文献类型: 外文期刊

第一作者: Liu, Xiang

作者: Liu, Xiang;Huang, Yingyi;Liu, Xiang;Huang, Yingyi;Wang, Hong-Yan;Zhang, Xianghui;Zhao, Xiaona;Liu, Kaiqiang;Wang, Qian;Shao, Changwei;Tan, Fujian;Chen, Jian-Yang;Liu, Shanshan;Fan, Guangyi;Tan, Fujian;Chen, Jian-Yang;Liu, Shanshan;Fan, Guangyi;Wang, Hong-Yan;Liu, Kaiqiang;Wang, Qian;Shao, Changwei;Chen, Jian-Yang;Liu, Shanshan;Zhang, Xianghui;Zhao, Xiaona;Piferrer, Francesc

作者机构:

关键词: scRNA-seq; oogenesis; Chinese tongue sole; germ cell; granulosa cell

期刊名称:FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY ( 影响因子:6.081; 五年影响因子:6.576 )

ISSN: 2296-634X

年卷期: 2022 年 10 卷

页码:

收录情况: SCI

摘要: Oogenesis is a highly orchestrated process that depends on regulation by autocrine/paracrine hormones and growth factors. However, many details of the molecular mechanisms that regulate fish oogenesis remain elusive. Here, we performed a single-cell RNA sequencing (scRNA-seq) analysis of the molecular signatures of distinct ovarian cell categories in adult Chinese tongue sole (Cynoglossus semilaevis). We characterized the successive stepwise development of three germ cell subtypes. Notably, we identified the cellular composition of fish follicle walls, including four granulosa cell types and one theca cell type, and we proposed important transcription factors (TFs) showing high activity in the regulation of cell identity. Moreover, we found that the extensive niche-germline bidirectional communications regulate fish oogenesis, whereas ovulation in fish is accompanied by the coordination of simultaneous and tightly sequential processes across different granulosa cells. Additionally, a systems biology analysis of the homologous genes shared by Chinese tongue sole and macaques revealed remarkably conserved biological processes in germ cells and granulosa cells across vertebrates. Our results provide key insights into the cell-type-specific mechanisms underlying fish oogenesis at a single-cell resolution, which offers important clues for exploring fish breeding mechanisms and the evolution of vertebrate reproductive systems.

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