Lam S H, Chua H L, Gong Z, Lam T J, Sin Y M
Department of Biological Sciences, The National University of Singapore, 10 Kent Ridge Crescent, 119260, Singapore.
Dev Comp Immunol. 2004 Jan;28(1):9-28. doi: 10.1016/s0145-305x(03)00103-4.
The development and maturation of the immune system in zebrafish was investigated using immune-related gene expression profiling by quantitative real-time polymerase chain reaction, in situ hybridization (ISH), immunoglobulin (Ig) detection by immuno-affinity purification and Western blotting as well as immersion immunization experiments. Ikaros expression was first detected at 1 day post-fertilization (dpf) and thereafter increased gradually to more than two-fold between 28 and 42dpf before decreasing to less than the initial 1dpf expression level in adult fish (aged 105dpf). Recombination activating gene-1 (Rag-1) expression levels increased rapidly (by 10-fold) between 3 and 17dpf, reaching a maximum between 21 and 28dpf before decreasing gradually. However, in adult fish aged 105dpf, the expression level of Rag-1 had dropped markedly, and was equivalent to the expression level at 3dpf. T-cell receptor alpha constant region and immunoglobulin light chain constant region (IgLC) isotype-1, 2 and 3 mRNAs were detected at low levels by 3dpf and their expression levels increased steadily to the adult range between 4 and 6 weeks post-fertilization (wpf). Using tissue-section ISH, Rag-1 expression was detected in head kidney by 2wpf while IgLC-1, 2 and 3 were detected in the head kidney and the thymus by 3wpf onwards. Secreted Ig was only detectable using immuno-affinity purification and Western blotting by 4wpf. Humoral response to T-independent antigen (formalin-killed Aeromonas hydrophila) and T-dependent antigen (human gamma globulin) was observed in zebrafish immunized at 4 and 6wpf, respectively, indicating that immunocompetence was achieved. The findings reveal that the zebrafish immune system is morphologically and functionally mature by 4-6wpf.
通过定量实时聚合酶链反应进行免疫相关基因表达谱分析、原位杂交(ISH)、免疫亲和纯化和蛋白质印迹法检测免疫球蛋白(Ig)以及浸浴免疫实验,对斑马鱼免疫系统的发育和成熟过程进行了研究。Ikaros表达在受精后1天(dpf)首次被检测到,此后逐渐增加,在28至42 dpf之间增加到两倍以上,随后在成年鱼(105 dpf龄)中降至低于初始1 dpf的表达水平。重组激活基因-1(Rag-1)表达水平在3至17 dpf之间迅速增加(增加10倍),在21至28 dpf之间达到峰值,随后逐渐下降。然而,在105 dpf龄的成年鱼中,Rag-1的表达水平显著下降,与3 dpf时的表达水平相当。T细胞受体α恒定区和免疫球蛋白轻链恒定区(IgLC)同种型-1、2和3的mRNA在3 dpf时低水平被检测到,其表达水平在受精后4至6周(wpf)稳步增加至成年水平。使用组织切片ISH,2 wpf时在头肾中检测到Rag-1表达,而3 wpf起在头肾和胸腺中检测到IgLC-1、2和3。仅在4 wpf时使用免疫亲和纯化和蛋白质印迹法可检测到分泌型Ig。分别在4和6 wpf免疫的斑马鱼中观察到对非T细胞依赖性抗原(福尔马林灭活嗜水气单胞菌)和T细胞依赖性抗原(人γ球蛋白)的体液反应,表明获得了免疫能力。研究结果表明,斑马鱼免疫系统在4至6 wpf时在形态和功能上成熟。