Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan, 430223, China.
Hubei Provincial Engineering Laboratory for Pond Aquaculture, College of Fisheries, Huazhong Agricultural University, Wuhan, 430070, China.
Theriogenology. 2021 Dec;176:188-193. doi: 10.1016/j.theriogenology.2021.09.036. Epub 2021 Oct 3.
The dead end gene has been identified as a essential factor for Primordial germ cells (PGCs) migration and survival in many species, but its role in Monopterus albus is unclear. In order to clarify the function of dead end gene in M.albus PGCs migration and survival, we first characterized the expression profile of M.albus dead end (Madnd) in developing embryos and various tissues. qRT-PCR revealed that Madnd transcripts were exclusively detected in gonad, including ovary, testis and ovotestis.Embryos injected with a Madnd morpholino (Madnd-MO) exhibited down-regulation of the vasa gene. Furthermore, the GFP signal show the PGCs migration in control group were injected with GFP-nanos3 3'-UTR mRNA for visualization, as described in a previous study, yet it was disappeared after embryos injected with Madnd-MO.Finally, we characterized the genomics sequence of the Madnd gene and designed five gRNAs for genome editing. Three gRNAs were selected for microinjection according to the results of in vitro tests. gRNAd1 was used for microinjection with the Cas9 protein and was confirmed to be effective. Our analysis in this study suggested that Madnd play a key role in PGCs migration and survival in M. albus. These data provide the basis for the production of fast-growing and reproductively M.albus sterile.
终止基因已被鉴定为许多物种原始生殖细胞 (PGC) 迁移和存活的必需因素,但它在中华鳖中的作用尚不清楚。为了阐明终止基因在中华鳖 PGC 迁移和存活中的作用,我们首先描述了 Madnd 在发育胚胎和各种组织中的表达谱。qRT-PCR 显示 Madnd 转录本仅在性腺中检测到,包括卵巢、睾丸和卵睾。用 Madnd 形态发生素 (Madnd-MO) 注射的胚胎显示 vasa 基因下调。此外,GFP 信号显示,在对照组中注射 GFP-nanos3 3'-UTR mRNA 可用于可视化,如先前研究所述,但在 Madnd-MO 注射的胚胎中消失。最后,我们对 Madnd 基因的基因组序列进行了表征,并设计了 5 个用于基因组编辑的 gRNA。根据体外试验的结果选择了 3 个 gRNA 进行微注射。用 Cas9 蛋白进行 gRNAd1 微注射被证实是有效的。我们在这项研究中的分析表明,Madnd 在中华鳖的 PGC 迁移和存活中发挥关键作用。这些数据为生产快速生长和生殖不育的中华鳖提供了基础。