Effects of Regulating Hippo and Wnt on the Development and Fate Differentiation of Bovine Embryo

河马信号通路 Wnt信号通路 丹麦克朗 生物 胚泡 细胞生物学 胚胎 内细胞团 胚胎发生 胚胎干细胞 信号转导 遗传学 基因
作者
Peipei Zhang,Hang Zhang,Chong-Yang Li,Baigao Yang,Xiaoyi Feng,Jianhua Cao,Weihua Du,Muhammad Shahzad,Adnan Khan,Shao‐Chen Sun,Xiao‐Fan Zhao
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:25 (7): 3912-3912
标识
DOI:10.3390/ijms25073912
摘要

The improvement of in vitro embryo development is a gateway to enhance the output of assisted reproductive technologies. The Wnt and Hippo signaling pathways are crucial for the early development of bovine embryos. This study investigated the development of bovine embryos under the influence of a Hippo signaling agonist (LPA) and a Wnt signaling inhibitor (DKK1). In this current study, embryos produced in vitro were cultured in media supplemented with LPA and DKK1. We comprehensively analyzed the impact of LPA and DKK1 on various developmental parameters of the bovine embryo, such as blastocyst formation, differential cell counts, YAP fluorescence intensity and apoptosis rate. Furthermore, single-cell RNA sequencing (scRNA-seq) was employed to elucidate the in vitro embryonic development. Our results revealed that LPA and DKK1 improved the blastocyst developmental potential, total cells, trophectoderm (TE) cells and YAP fluorescence intensity and decreased the apoptosis rate of bovine embryos. A total of 1203 genes exhibited differential expression between the control and LPA/DKK1-treated (LD) groups, with 577 genes upregulated and 626 genes downregulated. KEGG pathway analysis revealed significant enrichment of differentially expressed genes (DEGs) associated with TGF-beta signaling, Wnt signaling, apoptosis, Hippo signaling and other critical developmental pathways. Our study shows the role of LPA and DKK1 in embryonic differentiation and embryo establishment of pregnancy. These findings should be helpful for further unraveling the precise contributions of the Hippo and Wnt pathways in bovine trophoblast formation, thus advancing our comprehension of early bovine embryo development.
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