Lee Jang Wook, Kim Jung Eun, Goo In Bon, Hwang Ju-Ae, Im Jea Hyun, Choi Hye-Sung, Lee Jeong-Ho
Inland Aquaculture Research Center, National Fisheries Research & Development Institute, Changwon 645-806, Korea.
Dev Reprod. 2015 Dec;19(4):181-7. doi: 10.12717/DR.2015.19.4.181.
Early life stage mortality in fish is one of the problems faced by loach aquaculture. However, our understanding of immune system in early life stage fish is still incomplete, and the information available is restricted to a few fish species. In the present work, we investigated the expression of immune-related transcripts in loach during early development. In fishes, recombination-activating gene 1 (RAG-1) and sacsin (SACS) have been considered as immunological function. In this study, the expression of the both genes was assessed throughout the early developmental stages of loach using real-time PCR method. maRAG-1 mRNA was first detected in 0 dph, observed the increased mostly until 40 dph. Significant expression of maRAG-1 was detected in 0 to 40 dph. These patterns of expression may suggest that the loach start to develop its function after hatching. On the other hand, maSACS was detected in unfertilized oocyte to molura stages and 0 to 40 dph. maSACS mRNA transcripts were detected in unfertilized oocytes, suggesting that they are maternally transferred.
鱼类早期生命阶段的死亡率是泥鳅养殖面临的问题之一。然而,我们对鱼类早期生命阶段免疫系统的了解仍然不完整,现有的信息仅限于少数几种鱼类。在本研究中,我们调查了泥鳅早期发育过程中免疫相关转录本的表达。在鱼类中,重组激活基因1(RAG-1)和萨克斯蛋白(SACS)被认为具有免疫功能。在本研究中,使用实时PCR方法评估了这两个基因在泥鳅整个早期发育阶段的表达。maRAG-1 mRNA在0日龄时首次被检测到,在40日龄之前大多呈上升趋势。在0至40日龄时检测到maRAG-1的显著表达。这些表达模式可能表明泥鳅在孵化后开始发育其功能。另一方面,在未受精卵母细胞到桑葚胚阶段以及0至40日龄时检测到maSACS。在未受精卵母细胞中检测到maSACS mRNA转录本,表明它们是母源传递的。