Yang Huanqi, Li Mengxiao, Zhang Beibei, Zhang Jinming, Shi Yuxiang, Ma Tenghe, Sun Yanyan
College of Life Sciences and Food Engineering, Hebei University of Engineering, Handan 056038, China.
State Key Laboratory of Animal Biotech Breeding, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Int J Mol Sci. 2025 Feb 28;26(5):2214. doi: 10.3390/ijms26052214.
The development and selection of ovarian follicles are essential for continuous egg production in chickens. Non-coding RNAs, particularly circular RNAs (circRNAs), play a critical regulatory role in follicle selection, a process heavily involving granulosa cells (GCs). In this study, we analyzed circRNA expression profiles in small yellow follicles (SYFs) and large yellow follicles (LYFs) of Taihang chickens using RNA sequencing. We identified 14,586 circRNAs, with 57 showing differential expression (DE-circRNAs) between SYFs and LYFs. Functional enrichment analysis revealed that these DE-circRNAs are involved in key biological processes, including signal transduction, cell membrane formation, and nuclear enzymatic regulation. We focused on circGRB14, a circRNA derived from the growth factor receptor-bound protein 14 (GRB14) gene, as a potential regulator of follicle selection. Using qPCR, CCK-8 proliferation assays, and Annexin V/PI apoptosis analysis, we demonstrated that circGRB14 inhibits GC proliferation and promotes apoptosis. In contrast, miR-12264-3p and miR-6660-3p, validated as direct targets of circGRB14 via Dual-Luciferase Reporter assays, exhibited opposing effects by promoting GC proliferation and inhibiting apoptosis. These findings highlight the circGRB14-miR-12264-3p/miR-6660-3p axis as a key regulatory mechanism in GC dynamics during follicle selection. This study provides novel insights into the functional interplay between circRNAs and miRNAs in avian follicle development, offering potential targets for improving egg production in poultry.
卵巢卵泡的发育和选择对于鸡持续产蛋至关重要。非编码RNA,特别是环状RNA(circRNA),在卵泡选择过程中发挥着关键的调节作用,而这一过程与颗粒细胞(GCs)密切相关。在本研究中,我们使用RNA测序分析了太行鸡小黄卵泡(SYFs)和大黄卵泡(LYFs)中的circRNA表达谱。我们鉴定出14,586个circRNA,其中57个在SYFs和LYFs之间表现出差异表达(DE-circRNAs)。功能富集分析表明,这些DE-circRNAs参与了关键的生物学过程,包括信号转导、细胞膜形成和核酶调节。我们重点关注circGRB14,一种源自生长因子受体结合蛋白14(GRB14)基因的circRNA,它可能是卵泡选择的潜在调节因子。通过qPCR、CCK-8增殖试验和Annexin V/PI凋亡分析,我们证明circGRB14抑制GC增殖并促进凋亡。相反,通过双荧光素酶报告试验验证为circGRB14直接靶点的miR-12264-3p和miR-6660-3p则通过促进GC增殖和抑制凋亡表现出相反的作用。这些发现突出了circGRB14-miR-12264-3p/miR-6660-3p轴是卵泡选择过程中GC动态变化的关键调节机制。本研究为鸟类卵泡发育过程中circRNAs和miRNAs之间的功能相互作用提供了新的见解,为提高家禽产蛋量提供了潜在靶点。