Tokyo University of Agriculture, Kanagawa 243-0037, Japan.
Fukuoka Agriculture and Forestry Research Center, Fukuoka 818-8549, Japan.
J Reprod Dev. 2022 Oct 6;68(5):318-323. doi: 10.1262/jrd.2022-046. Epub 2022 Jul 29.
Embryo-maternal reproductive tract interactions are pivotal for successful pregnancy. The present study predicted the molecules modulating embryo-uterine communication by comparing two sets of differentially expressed genes (DEGs): DEGs in uterine epithelial cells (UECs) collected from the uterus with and without blastocysts and DEGs between blastocysts developed in vivo and in vitro. Cows were subjected to super ovulation (SOV), followed by insemination or non-insemination at estrus (SOV + AI and SOV cows). Seven days after estrus, the uterus was flushed to collect UECs, and the presence of blastocysts in the uterus was confirmed. UECs were subjected to RNA-Sequencing (RNA-Seq) to identify DEGs. Publicly available RNA-Seq data of in vivo and in vitro developed bovine blastocysts were used to determine DEGs. Then, using ingenuity pathway analysis, activated- and inhibited-upstream regulators (USRs) for UECs in blastocysts were compared with those for blastocysts developed in vivo. RNA-Seq of UECs revealed that the DEGs were associated with immune response and cell adhesion pathways. The activated and inhibited USRs of UECs derived from SOV+ AI cows overlapped with the activated and inhibited USRs of blastocysts developed in vivo. Overlapping activated USRs include leukemia inhibitory factor, interleukin 6, fibroblast growth factor-2, transforming growth factor beta-1, and epidermal growth factor. In conclusion, the present study predicted the molecules that potentially mediate communication between the developing embryo and the uterus in vivo and prepare the uterus for pregnancy.
胚胎-母体生殖道相互作用对于成功妊娠至关重要。本研究通过比较两组差异表达基因(DEGs)来预测调节胚胎-子宫通讯的分子:一组来自有和无囊胚的子宫上皮细胞(UEC)的 DEGs,另一组来自体内和体外发育的囊胚之间的 DEGs。牛接受超数排卵(SOV),然后在发情期进行授精或不授精(SOV+AI 和 SOV 牛)。发情后 7 天,冲洗子宫收集 UEC,并确认子宫内是否有囊胚。对 UEC 进行 RNA-Seq 以鉴定 DEGs。使用体内和体外发育的牛囊胚的公开可用 RNA-Seq 数据确定 DEGs。然后,使用 Ingenuity 通路分析比较囊胚中 UEC 的激活和抑制上游调节剂(USR)与体内发育的囊胚中的 USR。UEC 的 RNA-Seq 表明,DEGs 与免疫反应和细胞黏附途径有关。SOV+AI 牛来源的 UEC 的激活和抑制 USR 与体内发育的囊胚的激活和抑制 USR 重叠。重叠的激活 USR 包括白血病抑制因子、白细胞介素 6、成纤维细胞生长因子-2、转化生长因子β-1 和表皮生长因子。总之,本研究预测了体内胚胎与子宫之间潜在的通讯分子,并为妊娠做准备。