Liu Jie, Dai Shudi, Dai Zichun, Feng Yuyan, Lei Mingming, Chen Rong, Zhu Huanxi
Institute of Animal Science, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Key Laboratory of Crop and Livestock Integration, Ministry of Agriculture, Nanjing 210014, China.
Animals (Basel). 2023 Jun 28;13(13):2132. doi: 10.3390/ani13132132.
The selection of follicles determines the reproductive performance of birds, but the process of follicle selection in geese is still elusive. This study focuses on Yangzhou geese during the egg-laying period and divides the follicular development process into three stages: small follicle development, follicle selection, and follicle maturation. Transcriptome sequencing was performed on granulosa cells from large white follicles, small yellow follicles, and F5 and F4 follicles. In addition, we selected the transcripts that remained unchanged during the development and maturation of small follicles but significantly changed during the follicular selection stage as the transcript collection that plays an important role in the follicular selection process. Then, we performed functional analysis on these transcripts and constructed a ceRNA network. The results showed that during the follicular selection stage, the number of differentially expressed mRNAs, miRNAs, and lncRNAs was the highest. In addition, miR-222-3p, miR-2954-3p, miR-126-5p, miR-2478, and miR-425-5p are potential key core regulatory molecules in the selection stage of goose follicles. These results can provide a reference for a better understanding of the basic mechanisms of the goose follicle selection process and potential targets for the precise regulation of goose egg production performance.
卵泡的选择决定了禽类的繁殖性能,但鹅卵泡选择的过程仍不清楚。本研究聚焦于产蛋期的扬州鹅,将卵泡发育过程分为三个阶段:小卵泡发育、卵泡选择和卵泡成熟。对大白卵泡、小黄卵泡以及F5和F4卵泡的颗粒细胞进行了转录组测序。此外,我们选择了在小卵泡发育和成熟过程中保持不变但在卵泡选择阶段发生显著变化的转录本作为在卵泡选择过程中起重要作用的转录本集合。然后,我们对这些转录本进行了功能分析并构建了ceRNA网络。结果表明,在卵泡选择阶段,差异表达的mRNA、miRNA和lncRNA数量最多。此外,miR-222-3p、miR-2954-3p、miR-126-5p、miR-2478和miR-425-5p是鹅卵泡选择阶段潜在的关键核心调控分子。这些结果可为更好地理解鹅卵泡选择过程的基本机制以及精确调控鹅产蛋性能的潜在靶点提供参考。