Yang Kaijie, Wang Jue, Wang Kejun, Luo Yabiao, Tang Qiguo, Liu Ximing, Fang Meiying
Department of Animal Genetics and Breeding, National Engineering Laboratory for Animal Breeding, MOA Laboratory of Animal Genetics and Breeding, Beijing Key Laboratory for Animal Genetic Improvement, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
College of Animal Science and Veterinary Medicine, Henan Agricultural University, Zhengzhou 450002, China.
Animals (Basel). 2020 Mar 3;10(3):420. doi: 10.3390/ani10030420.
Embryo loss is a major factor affecting profitability in the pig industry. Embryonic mortality occurs during peri-implantation and mid-late gestation in pigs. Previous investigations have shown that the embryo loss rate in Meishan pigs is significantly lower than in commercial breeds. Most studies have focused on embryonic mortality during early gestation, but little is known about losses during mid-late gestation. In this study, we performed a transcriptome analysis of endometrial tissue in mid-late gestation sows (gestation days 49 and 72) sampled from two breeds (Meishan (MS) and Duroc (DU)) that have different embryo loss rates. We identified 411, 1113, 697, and 327 differentially expressed genes, and 14, 36, 57, and 43 differentially expressed miRNAs in four comparisons (DU49 vs. DU72, DU49 vs. MS49, DU72 vs. MS72, and MS49 vs. MS72), respectively. Subsequently; seven differentially expressed mRNAs and miRNAs were validated using qPCR. Functional analysis suggested the differentially expressed genes and miRNAs target genes mainly involved in regulation of hormone levels, blood vessel development, developmental process involved in reproduction, embryonic placenta development, and the immune system. A network analysis of potential miRNA-gene interactions revealed that differentially expressed miRNAs in Meishan pigs are involved in the response to estradiol and oxygen levels, and affect angiogenesis and blood vessel development. The binding site on ssc-miR-503 for epidermal growth factor () and the binding site on ssc-miR-671-5p for estrogen receptor α (ESR1) were identified using a dual luciferase assay. The results of this study will enable further exploration of miRNA-mRNA interactions important in pig pregnancy and will help to uncover molecular mechanisms affecting embryonic mortality in pigs during mid-late gestation.
胚胎损失是影响养猪业盈利能力的一个主要因素。猪的胚胎死亡发生在着床期和妊娠中后期。先前的研究表明,梅山猪的胚胎损失率显著低于商业品种。大多数研究集中在妊娠早期的胚胎死亡,但对妊娠中后期的损失了解甚少。在本研究中,我们对来自两个胚胎损失率不同的品种(梅山猪(MS)和杜洛克猪(DU))的妊娠中后期母猪(妊娠第49天和第72天)的子宫内膜组织进行了转录组分析。在四个比较组(DU49 vs. DU72、DU49 vs. MS49、DU72 vs. MS72和MS49 vs. MS72)中,我们分别鉴定出411、1113、697和327个差异表达基因,以及14、36、57和43个差异表达的miRNA。随后,使用qPCR验证了7个差异表达的mRNA和miRNA。功能分析表明,差异表达的基因和miRNA靶基因主要参与激素水平调节、血管发育、生殖相关的发育过程、胚胎胎盘发育和免疫系统。对潜在miRNA-基因相互作用的网络分析表明,梅山猪中差异表达的miRNA参与对雌二醇和氧水平的反应,并影响血管生成和血管发育。使用双荧光素酶测定法鉴定了表皮生长因子()在ssc-miR-503上的结合位点以及雌激素受体α(ESR1)在ssc-miR-671-5p上的结合位点。本研究结果将有助于进一步探索猪妊娠中重要的miRNA-mRNA相互作用,并有助于揭示影响猪妊娠中后期胚胎死亡的分子机制。