Yao Zhi Lei, Wang Xiao, Hu Chun Lei, Chen Fu Xiao, Chen Hong Ju, Jiang Shi-Jin, Zhao Yan, Ji Xiang Shan
Shandong Provincial Key Laboratory of Animal Biotechnology and Disease Control and Prevention, Shandong Agricultural University, Tai'an, China.
Key Laboratory of Efficient Utilization of Non-grain Feed Resources (Co-construction by Ministry and Province) of Ministry of Agriculture and Rural Affairs, Shandong Agricultural University, Tai'an, China.
J Fish Biol. 2024 Dec;105(6):1800-1810. doi: 10.1111/jfb.15911. Epub 2024 Sep 5.
In fish species, there is limited analysis of signature transcriptome profiles at the single-cell level in gonadal cells. Here, the molecular signatures of distinct ovarian cell categories in adult Nile tilapia (Oreochromis niloticus) were analysed using single-nucleus RNA sequencing (snRNA-seq). We identified four cell types (oogonia, oocytes, granulosa cell, and thecal cell) based on their specifically expressed genes and biological functions. Similarly, we found some key pathways involved in ovarian development that may affect germline-somatic interactions. A cell-to-cell communication network between the distinct cell types was constructed. We found that the bidirectional communication is mandatory for the development of germ cells and somatic cells in fish ovaries, and the granulosa cells and thecal cells play a central regulating role in the cell network in fish ovary. Additionally, we identified some novel candidate marker genes for various types of ovarian cells and also validated them using in situ hybridization. Our work reveals an ovarian atlas at the cellular and molecular levels and contributes to providing insights into oogenesis and gonad development in fish.
在鱼类中,对性腺细胞单细胞水平的特征转录组图谱分析有限。在此,我们使用单核RNA测序(snRNA-seq)分析了成年尼罗罗非鱼(Oreochromis niloticus)不同卵巢细胞类别的分子特征。我们根据其特异性表达的基因和生物学功能鉴定出四种细胞类型(卵原细胞、卵母细胞、颗粒细胞和卵泡膜细胞)。同样,我们发现了一些参与卵巢发育的关键途径,这些途径可能影响生殖细胞与体细胞之间的相互作用。构建了不同细胞类型之间的细胞间通讯网络。我们发现双向通讯对于鱼类卵巢中生殖细胞和体细胞的发育是必不可少的,并且颗粒细胞和卵泡膜细胞在鱼类卵巢的细胞网络中发挥着核心调节作用。此外,我们鉴定了一些针对各种类型卵巢细胞的新型候选标记基因,并使用原位杂交对其进行了验证。我们的工作揭示了细胞和分子水平上的卵巢图谱,并有助于深入了解鱼类的卵子发生和性腺发育。