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数字基因表达谱分析和验证研究突出了细胞周期蛋白 F 作为调控鸡精子活力的重要调节因子。

Digital gene expression profiling and validation study highlight Cyclin F as an important regulator for sperm motility of chickens.

机构信息

Key Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agriculture, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Poult Sci. 2019 Oct 1;98(10):5118-5126. doi: 10.3382/ps/pez212.

Abstract

In poultry industry, around 5 to 12% roosters were eliminated from the breeding program because of low sperm motility. Relatively few studies have been directed toward understanding and explaining the genetics mechanisms involved in sperm motility regulation in chickens. In the present study, digital gene expression (DGE) profiling and bioinformation analysis were used to explore the globally differentially expressed genes (DEG) in the testis of low sperm motility and high sperm motility roosters. Further validation study of key candidate genes was also performed. The DGE identified 652 DEGs, including 473 up-regulated and 179 down-regulated genes in the low sperm motility testis. Those DEGs were enriched on 21 terms of biological process category, 10 terms of cellular component category, including motile cilium, and 13 terms of molecular function category including microtubule motor activity and ATP binding. The kyoto encyclopedia of genes and genomes (KEGG) enrichment analysis indicated that these DEGs were involved in the FoxO signaling pathway and insulin resistance pathway. Quantitative real time PCR (qRT-PCR) studies of 8 DEGs were used to validate the DGE results. A key candidate gene Cyclin F (CCNF) was extremely low expressed in the low sperm motility testis (log2 ratio (low sperm motility/high sperm motility) = -5.23). The CCNF gene silencing in the chicken DF-1 cell line induced the reduced cell activity and proliferation. In summary, the present study provides insight into the potential genetic regulation of sperm motility and highlighted the underlying pathways (Insulin resistance and FoxO signaling pathways) and important candidate genes such as CCNF.

摘要

在禽类养殖业中,约有 5%至 12%的公鸡因精子活力低而被淘汰出繁殖计划。相对较少的研究致力于了解和解释与鸡精子活力调节相关的遗传机制。在本研究中,我们使用数字基因表达(DGE)谱分析和生物信息学分析来探索低精子活力和高精子活力公鸡睾丸中全局差异表达基因(DEG)。还对关键候选基因进行了进一步的验证研究。DGE 鉴定了 652 个 DEG,其中低精子活力睾丸中有 473 个上调和 179 个下调基因。这些 DEG 富集在 21 个生物学过程类别术语、10 个细胞成分类别术语(包括能动纤毛)和 13 个分子功能类别术语(包括微管马达活性和 ATP 结合)上。京都基因与基因组百科全书(KEGG)富集分析表明,这些 DEG 参与了 FoxO 信号通路和胰岛素抵抗通路。对 8 个 DEG 的定量实时 PCR(qRT-PCR)研究用于验证 DGE 结果。一个关键的候选基因细胞周期蛋白 F(CCNF)在低精子活力睾丸中表达极低(log2 比值(低精子活力/高精子活力)=-5.23)。鸡 DF-1 细胞系中 CCNF 基因沉默诱导细胞活性和增殖降低。总之,本研究深入了解了精子活力的潜在遗传调控,并强调了潜在的途径(胰岛素抵抗和 FoxO 信号通路)和重要的候选基因,如 CCNF。

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