Key Laboratory of Tropical & Subtropical Fishery Resource Application & Cultivation of Ministry of Agriculture and Rural Affairs, Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou, China.
Shanghai Ocean University, Shanghai, China.
J Exp Zool B Mol Dev Evol. 2021 Jul;336(5):431-442. doi: 10.1002/jez.b.23064. Epub 2021 Jun 8.
Vasa, one of the best-studied germ cell markers plays a critical role in germ cell development and differentiation in animals. Vasa deficiency would lead to male-specific sterility in most vertebrates, but female sterility in the fly. However, the role of the vasa gene involved in germ cell differentiation is largely elusive. Here, we first characterized the expression profile of vasa products in the Asian yellow pond turtle by quantitative reverse-transcription polymerase chain reaction and fluorescence immunostaining. The results showed that vasa messenger RNA (mRNA) is initially detected in embryos at stage 16, and then dramatically increased in embryos at stage 19. In particular, like the sex-related genes, vasa mRNA exhibited differential expression in embryos between the male-producing temperature (MPT, 25°C) and the female-producing temperature (FPT, 33°C), whereas there was no difference in methylation levels of vasa promoter detected between FPT and MPT. In contrast, in the adult Asian yellow pond, the level of vasa mRNA was much higher in the testis than ovary. Moreover, the immunostaining on testicular sections and cells showed that Vasa protein was exclusively expressed in germ cells: Weak but detectable in spermatogonia, highest in spermatocytes, moderate and concentrated in chromatid bodies in spermatids and spermatozoa, and bare in somatic cells. The expression profile of Vasa protein is similar in turtle species studied so far but distinct from those in fish species in this study. The findings of this study would provide new insights into our understanding of the conservation and divergence of the vasa gene, even other germ cell genes across phyla.
Vasa 是研究最为广泛的生殖细胞标记物之一,在动物的生殖细胞发育和分化中起着关键作用。Vasa 缺陷会导致大多数脊椎动物雄性特异性不育,但在果蝇中则是雌性不育。然而,vasa 基因在生殖细胞分化中的作用在很大程度上仍不清楚。在这里,我们首次通过定量逆转录聚合酶链反应和荧光免疫染色来描述亚洲黄喉龟 vasa 产物的表达谱。结果表明,vasa 信使 RNA(mRNA)最初在胚胎 16 期检测到,然后在胚胎 19 期急剧增加。特别是,与性别相关的基因一样,vasa mRNA 在产生雄性的温度(MPT,25°C)和产生雌性的温度(FPT,33°C)的胚胎之间表现出差异表达,而在 FPT 和 MPT 之间未检测到 vasa 启动子的甲基化水平有差异。相比之下,在成年亚洲黄喉龟中,睾丸中的 vasa mRNA 水平远高于卵巢。此外,对睾丸切片和细胞的免疫染色显示,Vasa 蛋白仅在生殖细胞中表达:在精原细胞中较弱但可检测到,在精母细胞中最高,在精细胞的染色质体中中等且集中,在精子中裸露,在体细胞中则没有。Vasa 蛋白的表达谱在迄今研究的龟类物种中相似,但与本研究中的鱼类物种不同。这项研究的结果将为我们理解 vasa 基因甚至其他门的生殖细胞基因的保守和分化提供新的见解。