Liu Peng, Wang Le, Ye Bao Qing, Huang Shuqing, Wong Sek-Man, Yue Gen Hua
Department of Biological Sciences, National University of Singapore, 14 Science Drive, 117543 Singapore; Temasek Life Sciences Laboratory, National University of Singapore, 1 Research Link, 117604 Singapore.
Temasek Life Sciences Laboratory, National University of Singapore, 1 Research Link, 117604 Singapore.
Fish Shellfish Immunol. 2017 Feb;61:61-67. doi: 10.1016/j.fsi.2016.12.021. Epub 2016 Dec 15.
Asian seabass, an important food fish in Southeast Asia, has suffered from nervous necrosis virus (NNV) infection, resulting in massive mortality of Asian seabass larvae and enormous economic losses. Identification and characterization of disease resistance genes is important. Previous transcriptome analysis of Asians seabass epithelial cells after NNV infection revealed a highly inducible gene, receptor-transporting protein 3 (rtp3), indicating it could play an important role in Asian seabass - NNV interaction. To characterize this gene, we determined its expression pattern and subcellular localization. The rtp3 was highly induced in most examined tissues and organs of Asian seabass after NNV infection, and protein Rtp3 was localized in cytoplasm. Further association study in multiple families revealed that a microsatellite marker, (GT)ntt(GT)n, in the 3' UTR of rtp3 was significantly associated with VNN disease resistance in Asian seabass. Our results imply that rtp3 may be a novel disease resistance gene in Asian seabass. This data could improve our understanding of molecular interaction between Asian seabass and NNV, and has the potential to be applied in marker-assisted selection for disease resistance breeding in Asian seabass.
尖吻鲈是东南亚一种重要的食用鱼类,它遭受神经坏死病毒(NNV)感染,导致尖吻鲈幼鱼大量死亡并造成巨大经济损失。鉴定和表征抗病基因很重要。先前对NNV感染后的尖吻鲈上皮细胞进行的转录组分析揭示了一个高度可诱导的基因,受体转运蛋白3(rtp3),表明它可能在尖吻鲈与NNV的相互作用中发挥重要作用。为了表征该基因,我们确定了其表达模式和亚细胞定位。rtp3在NNV感染后的尖吻鲈大多数被检测组织和器官中高度诱导,并且蛋白Rtp3定位于细胞质中。在多个家系中进行的进一步关联研究表明,rtp3的3'UTR中的一个微卫星标记(GT)ntt(GT)n与尖吻鲈对病毒性神经坏死病的抗性显著相关。我们的结果表明rtp3可能是尖吻鲈中的一个新的抗病基因。这些数据可以增进我们对尖吻鲈与NNV之间分子相互作用的理解,并且有潜力应用于尖吻鲈抗病育种的分子标记辅助选择。