Chen Jing, Zhou Xiaoping, Miao Dongzhi, Li Wanqing, Zhang Haodong, Zhang Chi, Wang Ying, Yang Haiming, Wang Zhiyue
College of Animal Science and Technology, Yangzhou University, Yangzhou, Jiangsu Province, 225009, P. R. China.
J Anim Sci. 2025 Jan 4;103. doi: 10.1093/jas/skaf278.
Though widely valued, such as commercial poultry, for its meat and egg contributions to the human diet, the White King pigeon demonstrates relatively low egg production performance. Compared to white light (WL), red light (RL) exposure has improved egg-laying performance in pigeons. To uncover the molecular mechanisms behind this effect, RNA sequencing was conducted to investigate the expression profiles of long non-coding RNAs (lncRNAs) and mRNAs in granulosa cells (GCs) from F1 and F2 follicles of White King pigeons exposed to RL and WL on the third day of the laying interval (LI3). Compared to the WL group, 91 lncRNAs were differentially expressed in the F1 follicle under RL exposure, with 64 downregulated and 27 upregulated. In the F2 follicle, 187 lncRNAs showed differential expression in the RL group, including 132 downregulated and 55 upregulated transcripts. Integrated network analysis revealed that several differentially expressed (DE) mRNAs are associated with key pathways involved in follicular development, such as steroid biosynthesis, ECM-receptor interaction, Wnt signaling, TGF-beta signaling, and the p53 signaling pathway. The lncRNAs (XR_002424346.1, XR_002410355.1, XR_002410102.1, XR_002421922.1) on both cis and trans target mRNAs (AKR1D1, TPT1, BMP1, HRH2, KPNA7, and WNT6) play important roles in follicular development of pigeon. These findings provide a basis for understanding the molecular mechanisms through which lncRNAs, influenced by RL exposure, regulate follicle development and selection in pigeons, ultimately contributing to enhanced egg production.
尽管白王鸽因其肉和蛋对人类饮食的贡献而在商业家禽等方面具有广泛价值,但其产蛋性能相对较低。与白光(WL)相比,红光(RL)照射可提高鸽子的产蛋性能。为了揭示这种效应背后的分子机制,进行了RNA测序,以研究在产蛋间隔第三天(LI3)暴露于RL和WL的白王鸽F1和F2卵泡颗粒细胞(GCs)中长链非编码RNA(lncRNAs)和mRNA的表达谱。与WL组相比,在RL照射下F1卵泡中有91个lncRNAs差异表达,其中64个下调,27个上调。在F2卵泡中,187个lncRNAs在RL组中显示出差异表达,包括132个下调转录本和55个上调转录本。综合网络分析表明,一些差异表达(DE)mRNA与卵泡发育相关的关键途径有关,如类固醇生物合成、细胞外基质-受体相互作用、Wnt信号传导、TGF-β信号传导和p53信号通路。顺式和反式靶向mRNA(AKR1D1、TPT1、BMP1、HRH2、KPNA7和WNT6)的lncRNAs(XR_002424346.1、XR_002410355.1、XR_002410102.1、XR_002421922.1)在鸽子卵泡发育中起重要作用。这些发现为理解lncRNAs受RL照射影响调节鸽子卵泡发育和选择的分子机制提供了基础,最终有助于提高产蛋量。