Wu Chongyang, Blondin Patrick, Vigneault Christian, Labrecque Rémi, Sirard Marc-André
Centre de Recherche en Reproduction, Développement et Santé Intergénérationnelle (CRDSI), Département des Sciences Animales, Faculté des Sciences de l'Agriculture et de l'Alimentation, Université Laval, Québec, Québec, Canada.
L'Alliance Boviteq, Saint-Hyacinthe, Québec, Canada.
BMC Genomics. 2020 Nov 16;21(1):798. doi: 10.1186/s12864-020-07206-5.
Sperm miRNAs were reported to regulate spermatogenesis and early embryonic development in some mammals including bovine. The dairy cattle breeding industry now tends to collect semen from younger bulls under high selection pressure at a time when semen quality may be suboptimal compared to adult bulls. Whether the patterns of spermatic miRNAs are affected by paternal age and/or impact early embryogenesis is not clear. Hence, we generated small non-coding RNA libraries of sperm collected from same bulls at 10, 12, and 16 months of age, using 16 months as control for differential expression and functional analysis.
We firstly excluded all miRNAs present in measurable quantity in oocytes according to the literature. Of the remaining miRNAs, ten sperm-borne miRNAs were significantly differentially expressed in younger bulls (four in the 10 vs 16 months contrast and six in the 12 vs 16 months contrast). Targets of miRNAs were identified and compared to the transcriptomic database of two-cell embryos, to genes related to two-cell competence, and to the transcriptomic database of blastocysts. Ingenuity pathway analysis of the targets of these miRNAs suggested potential influence on the developmental competence of two-cell embryos and on metabolism and protein synthesis in blastocysts.
The results showed that miRNA patterns in sperm are affected by the age of the bull and may mediate the effects of paternal age on early embryonic development.
据报道,精子中的微小RNA(miRNA)可调节包括牛在内的一些哺乳动物的精子发生和早期胚胎发育。奶牛养殖业现在倾向于在高选择压力下从较年轻的公牛采集精液,而此时与成年公牛相比,精液质量可能并不理想。精子miRNA的模式是否受父本年龄影响和/或影响早期胚胎发生尚不清楚。因此,我们构建了从10、12和16月龄同一公牛采集的精子的小非编码RNA文库,以16月龄作为对照进行差异表达和功能分析。
我们首先根据文献排除了卵母细胞中可测量数量存在的所有miRNA。在其余的miRNA中,10种精子携带的miRNA在较年轻的公牛中显著差异表达(10月龄与16月龄对比中有4种,12月龄与16月龄对比中有6种)。鉴定了miRNA的靶标,并与二细胞胚胎的转录组数据库、与二细胞能力相关的基因以及囊胚的转录组数据库进行比较。对这些miRNA靶标的 Ingenuity 通路分析表明,它们可能对二细胞胚胎的发育能力以及囊胚的代谢和蛋白质合成有潜在影响。
结果表明,精子中的miRNA模式受公牛年龄影响,并可能介导父本年龄对早期胚胎发育的影响。