United States Department of Agriculture-Agricultural Research Service, Plant Genetics Research Unit, Columbia, MO, USA.
Division of Animal Sciences, University of Missouri, Columbia, MO, USA.
Biol Reprod. 2023 Apr 11;108(4):611-618. doi: 10.1093/biolre/ioad005.
Growth differentiation factor 9 (GDF9) is a secreted protein belonging to the transforming growth factor beta superfamily and has been well characterized for its role during folliculogenesis in the ovary. Although previous studies in mice and sheep have shown that mutations in GDF9 disrupt follicular progression, the exact role of GDF9 in pigs has yet to be elucidated. The objective of this study was to understand the role of GDF9 in ovarian function by rapidly generating GDF9 knockout (GDF9-/-) pigs by using the CRISPR/Cas9 system. Three single-guide RNAs designed to disrupt porcine GDF9 were injected with Cas9 mRNA into zygotes, and blastocyst-stage embryos were transferred into surrogates. One pregnancy was sacrificed on day 100 of gestation to investigate the role of GDF9 during oogenesis. Four female fetuses were recovered with one predicted to be GDF9-/- and the others with in-frame mutations. All four had fully formed oocytes within primordial follicles, confirming that knockout of GDF9 does not disrupt oogenesis. Four GDF9 mutant gilts were generated and were grown past puberty. One gilt was predicted to completely lack functional GDF9 (GDF9-/-), and the gilt never demonstrated standing estrus and had a severely underdeveloped reproductive tract with large ovarian cysts. Further examination revealed that the follicles from the GDF9-/- gilt did not progress past preantral stages, and the uterine vasculature was less extensive than the control pigs. By using the CRISPR/Cas9 system, we demonstrated that GDF9 is a critical growth factor for proper ovarian development and function in pigs.
生长分化因子 9(GDF9)是一种分泌蛋白,属于转化生长因子β超家族,其在卵巢滤泡发生中的作用已得到很好的描述。尽管先前在小鼠和绵羊中的研究表明,GDF9 突变会破坏卵泡的进展,但 GDF9 在猪中的确切作用尚未阐明。本研究的目的是通过使用 CRISPR/Cas9 系统快速生成 GDF9 敲除(GDF9-/-)猪,来了解 GDF9 在卵巢功能中的作用。将设计用于破坏猪 GDF9 的三个单引导 RNA 与 Cas9 mRNA 一起注射到受精卵中,并将囊胚期胚胎转移到代孕母猪中。一头妊娠母猪在妊娠第 100 天被处死,以研究 GDF9 在卵母细胞发生过程中的作用。回收了四只雌性胎儿,其中一只被预测为 GDF9-/-,其余的则带有框架内突变。所有四只胎儿的原始卵泡中都有完全形成的卵母细胞,这证实了敲除 GDF9 不会破坏卵母细胞发生。生成了四只 GDF9 突变小母猪并使其生长至青春期后。一只小母猪被预测完全缺乏功能性 GDF9(GDF9-/-),并且该小母猪从未表现出发情站立,生殖道严重发育不良,卵巢中有大的囊肿。进一步检查显示,GDF9-/-小母猪的卵泡没有进展到前腔期,并且子宫血管系统比对照猪的血管系统不发达。通过使用 CRISPR/Cas9 系统,我们证明了 GDF9 是猪卵巢正常发育和功能所必需的生长因子。