Liu Xiaoli, Li Wei, Yang Yanping, Chen Kaili, Li Yulin, Zhu Xinping, Ye Hua, Xu Hongyan
Key Laboratory of Tropical and Subtropical Fishery Resource Application and Cultivation, Ministry of Agriculture and Rural Affairs, Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou, China.
Key Laboratory of Freshwater Fish Reproduction and Development, Ministry of Education, Key Laboratory of Aquatic Sciences of Chongqing, College of Fisheries, Southwest University, Chongqing, China.
Front Cell Dev Biol. 2021 Mar 29;9:647892. doi: 10.3389/fcell.2021.647892. eCollection 2021.
Single-cell RNA sequencing (scRNA-seq) is widely adopted for identifying the signature molecular markers or regulators in cells, as this would benefit defining or isolating various types of cells. Likewise, the signature transcriptome profile analysis at the single cell level would well illustrate the key regulators or networks involved in gametogenesis and gonad development in animals; however, there is limited scRNA-seq analysis on gonadal cells in lower vertebrates, especially in the sexual reversal fish species. In this study, we analyzed the molecular signature of several distinct cell populations of Asian seabass adult ovaries through scRNA-seq. We identified five cell types and also successfully validated some specific genes of germ cells and granulosa cells. Likewise, we found some key pathways involved in ovarian development that may concert germline-somatic interactions. Moreover, we compared the transcriptomic profiles across fruit fly, mammals, and fish, and thus uncovered the conservation and divergence in molecular mechanisms that might drive ovarian development. Our results provide a basis for studying the crucial features of germ cells and somatic cells, which will benefit the understandings of the molecular mechanisms behind gametogenesis and gonad development in fish.
单细胞RNA测序(scRNA-seq)被广泛用于识别细胞中的标志性分子标记或调节因子,因为这将有助于定义或分离各种类型的细胞。同样,单细胞水平的标志性转录组谱分析将很好地阐明动物配子发生和性腺发育中涉及的关键调节因子或网络;然而,对低等脊椎动物性腺细胞的scRNA-seq分析有限,特别是在性逆转鱼类中。在本研究中,我们通过scRNA-seq分析了亚洲海鲈成年卵巢中几个不同细胞群的分子特征。我们鉴定出了五种细胞类型,并成功验证了生殖细胞和颗粒细胞的一些特定基因。同样,我们发现了一些参与卵巢发育的关键途径,这些途径可能协调生殖系-体细胞相互作用。此外,我们比较了果蝇、哺乳动物和鱼类的转录组谱,从而揭示了可能驱动卵巢发育的分子机制中的保守性和差异性。我们的结果为研究生殖细胞和体细胞的关键特征提供了基础,这将有助于理解鱼类配子发生和性腺发育背后的分子机制。