Elucidation of the pluripotent potential of bovine embryonic lineages facilitates the establishment of formative stem cell lines

Author:

Zhi Minglei1,Gao Dengfeng2,Yao Yixuan1,Zhao Zimo1,Wang Yingjie1,He Pengcheng1,Feng Zhiqiang1,Zhang Jinying1,Huang Ziqi3,Gu Wenyuan4,Zhao Jianglin5,Zhang He1,Wang Shunxin1,Li Xin4,Zhang Qiang1,Zhao Zengyuan1,Chen Xinze1,Zhang Xiaowei1,Qin Lun6,Liu Jun5,Liu Chengjun7,Cao Suying6,Gao Shuai1,Yu Wenli4,Han Jianyong1ORCID,Ma Zhu7

Affiliation:

1. China Agricultural University

2. Sichuan Agricultural University

3. Capital Medical University

4. Tianquan Elite Dairy Co., Ltd.

5. Northwest Agriculture University: Northwest A&F University

6. Beijing University of Agriculture

7. Beijing Dairy Cattle Center

Abstract

Abstract

The establishment of epiblast-derived pluripotent stem cells (PSCs) from cattle, which are important domestic animals that provide humans with milk and meat while also serving as bioreactors for producing valuable proteins, poses a challenge due to the unclear molecular signaling required for embryonic epiblast development and maintenance of PSC self-renewal. Here, we selected six key stages of bovine embryo development (E5, E6, E7, E10, E12, and E14) to track changes in pluripotency and the dependence on signaling pathways via modified single-cell transcription sequencing technology. The remarkable similarity of the gene expression patterns between cattle and pigs during embryonic lineage development contributed to the successful establishment of bovine epiblast stem cells (bEpiSCs) using 3i/LAF (WNTi, GSK3βi, SRCi, LIF, Activin A, and FGF2) culture systems. The generated bEpiSCs exhibited consistent expression patterns of formative epiblast pluripotency genes and maintained clonal morphology, normal karyotypes, and proliferative capacity for more than 112 passages. Moreover, these cells exhibited high-efficiency teratoma formation as well as the ability to differentiate into various cell lineages. The potential of bEpiSCs for myogenic differentiation, primordial germ cell like cells (PGCLCs) induction and as donor cells for somatic cell nuclear transfer (SCNT) was also assessed, indicating their promise in advancing cell-cultured meat production, gene editing, and animal breeding.

Publisher

Springer Science and Business Media LLC

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