School of Pharmacy, Chengdu University, Chengdu, Sichuan 610106, China.
College of Animal Science, Xichang University, Xichang, Sichuan 615000, China.
J Genet Genomics. 2024 Nov;51(11):1265-1277. doi: 10.1016/j.jgg.2024.08.002. Epub 2024 Aug 13.
Avian ovaries develop asymmetrically apart from prey birds, with only the left ovary growing more towards functional organ. Here, we analyze over 135,000 cells from chick's left and right ovaries at six distinct embryonic developmental stages utilizing single-cell transcriptome sequencing. We delineate gene expression patterns across 15 cell types within these embryo ovaries, revealing side-specific development. The left ovaries exhibit cortex cells, zygotene germ cells, and transcriptional changes unique to the left side. Differential gene expression analysis further identifies specific markers and pathways active in these cell types, highlighting the asymmetry in ovarian development. A fine-scale analysis of the germ cell meiotic transcriptome reveals seven distinct clusters with gene expression patterns specific to various meiotic stages. The study also identifies signaling pathways and intercellular communications, particularly between pre-granulosa and germ cells. Spatial transcriptome analysis shows the asymmetry, demonstrating cortex cells exclusively in the left ovary, modulating neighboring cell types through putative secreted signaling molecules. Overall, this single-cell analysis provides insights into the molecular mechanisms of the asymmetric development of avian ovaries, particularly the significant role of cortex cells in the left ovary.
禽类的卵巢与猎物鸟类不同,呈不对称发育,只有左侧卵巢向功能性器官生长更多。在这里,我们利用单细胞转录组测序分析了六个不同胚胎发育阶段小鸡左右卵巢的超过 135000 个细胞。我们在这些胚胎卵巢的 15 种细胞类型中描绘了基因表达模式,揭示了侧特异性发育。左侧卵巢表现出皮质细胞、粗线期生殖细胞以及仅存在于左侧的转录变化。差异基因表达分析进一步确定了这些细胞类型中活跃的特定标记物和途径,突出了卵巢发育的不对称性。对生殖细胞减数分裂转录组的精细分析揭示了七个具有特定减数分裂阶段基因表达模式的独特簇。该研究还鉴定了信号通路和细胞间通讯,特别是在原始卵泡细胞和生殖细胞之间。空间转录组分析显示了这种不对称性,证明了皮质细胞仅存在于左侧卵巢中,通过潜在的分泌信号分子调节邻近的细胞类型。总的来说,这项单细胞分析为禽类卵巢不对称发育的分子机制提供了深入了解,特别是皮质细胞在左侧卵巢中的重要作用。