Yang Hua, Deng Mingtian, Lv Wenli, Wei Zongyou, Cai Yu, Cheng Peiyong, Wang Feng, Zhang Yanli
Institute of Sheep and Goat Science, Nanjing Agricultural University, Nanjing 210095, China.
Taicang Agricultural and Rural Science & Technology Service Center, Graduate Workstation, Taicang 215400, China.
Biology (Basel). 2022 Feb 11;11(2):289. doi: 10.3390/biology11020289.
Male germ cells directly affect the reproduction of males; however, their accurate isolation and culture in vitro is extremely challenging, hindering the study of germ cell development and function. CRISPR/dcas9, as an efficient gene reprogramming system, has been verified to promote the transdifferentiation of pluripotent stem cells into male germ cells by editing target genes. In our research, we explored the expression pattern of the germ cell related genes , and in Hu sheep testicular development and constructed the overexpression model using the CRISPR/dcas9 system. The results indicated that four genes showed more expression in testis tissue than in other tissues, and that , and present higher expression levels in nine-month-old sheep testes than in three-month-olds, while expressed the opposite trend ( < 0.05). In addition, the expression of four potential genes in spermatogenic cells was slightly different, but they were all expressed in sheep Leydig cells. To verify the potential roles of the four genes in the process of inducing differentiation of male germ cells, we performed cell transfection in vitro. We found that the expression of the germ cell related genes Prdm1, Prdm14, Mvh and Sox17 were significantly increased after the overexpression of the four genes in Leydig cells, and the co-transfection effect was the most significant ( < 0.05). Our results illustrate the crucial functions of , , and in Hu sheep testis development and verified the effectiveness of the overexpression model that was constructed using the CRISPR/dcas9 system, which provided a basis for further male germ cell differentiation in vitro.
雄性生殖细胞直接影响雄性的繁殖;然而,它们在体外的精确分离和培养极具挑战性,这阻碍了对生殖细胞发育和功能的研究。CRISPR/dcas9作为一种高效的基因重编程系统,已被证实可通过编辑靶基因促进多能干细胞向雄性生殖细胞的转分化。在我们的研究中,我们探究了生殖细胞相关基因 、 和 在湖羊睾丸发育中的表达模式,并使用CRISPR/dcas9系统构建了过表达模型。结果表明,这四个基因在睾丸组织中的表达高于其他组织,并且 、 和 在9月龄绵羊睾丸中的表达水平高于3月龄绵羊,而 的表达趋势相反(<0.05)。此外,四个潜在基因在生精细胞中的表达略有不同,但它们均在绵羊睾丸间质细胞中表达。为了验证这四个基因在诱导雄性生殖细胞分化过程中的潜在作用,我们在体外进行了细胞转染。我们发现,在睾丸间质细胞中过表达这四个基因后,生殖细胞相关基因Prdm1、Prdm14、Mvh和Sox17的表达显著增加,且共转染效果最为显著(<0.05)。我们的结果阐明了 、 、 和 在湖羊睾丸发育中的关键功能,并验证了使用CRISPR/dcas9系统构建的过表达模型的有效性,这为进一步在体外进行雄性生殖细胞分化提供了依据。