Li Lili, Tang Xiaoyin, Guo Xuanxuan, Rao Di, Zeng Lin, Xue Junchao, Liu Shuxian, Tu Shikui, Shen En-Zhi
College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.
Key Laboratory of Growth Regulation and Translational Research of Zhejiang Province, School of Life Sciences, Westlake University, Hangzhou, Zhejiang, China.
Cell Discov. 2025 Mar 18;11(1):26. doi: 10.1038/s41421-025-00790-4.
Spermatogenesis is an intricate and tightly controlled process encompassing various layers of gene expression regulation. Despite the advance of our current understanding, the developmental trajectory and regulatory mechanisms dictating spermatogenesis remain elusive. In this study, we have generated single-cell gene expression profiles for Caenorhabditis elegans sperm cells and constructed gene regulatory networks alongside the developmental trajectories of these cells. Our findings indicate that each pre- and post-developmental stage is closely linked by co-expressed genes, while simultaneously being uniquely identified by the combined expression of specific gene families. To illustrate the applicability of this exhaustive gene expression catalog, we used gene regulatory networks to uncover potential transcription factors for (1) the expression of genes in the phosphorylation pathway, identifying NHR-23-to-phosphatase regulation for the meiotic cell division process; and (2) the expression of constituent components of small RNA pathways, identifying ELT-1-to-Argonaute protein regulation for siRNA maintenance and sperm activation. We expect that this sperm cell-specific gene expression directory will prompt investigations into the underlying mechanisms determining anatomy, differentiation, and function across the reproductive system. Finally, our expression data can be explored using the web application CelegansGermAtlas ( https://scgerm-atlas.sjtu.edu.cn/website/#/home ).
精子发生是一个复杂且受到严格调控的过程,涉及基因表达调控的多个层面。尽管我们目前的理解有所进展,但决定精子发生的发育轨迹和调控机制仍然难以捉摸。在这项研究中,我们生成了秀丽隐杆线虫精子细胞的单细胞基因表达谱,并沿着这些细胞的发育轨迹构建了基因调控网络。我们的研究结果表明,每个发育前和发育后阶段都通过共表达基因紧密相连,同时又由特定基因家族的组合表达独特地识别出来。为了说明这个详尽的基因表达目录的适用性,我们使用基因调控网络来揭示(1)磷酸化途径中基因表达的潜在转录因子,确定减数分裂细胞分裂过程中NHR-23对磷酸酶的调控;以及(2)小RNA途径组成成分的表达,确定ELT-1对Argonaute蛋白的调控以维持siRNA和激活精子。我们期望这个精子细胞特异性的基因表达目录将促使人们对决定整个生殖系统的解剖结构、分化和功能的潜在机制进行研究。最后,我们的表达数据可以使用网络应用程序CelegansGermAtlas(https://scgerm-atlas.sjtu.edu.cn/website/#/home)进行探索。