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Antigen Uptake during Different Life Stages of Zebrafish (Danio rerio) Using a GFP-Tagged Yersinia ruckeri

机译:使用GFP标记的耶尔森氏菌在斑马鱼(Danio rerio)的不同生命阶段中的抗原摄取。

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摘要

Immersion-vaccines (bacterins) are routinely used for aquacultured rainbow trout to protect against Yersinia ruckeri (Yr). During immersion vaccination, rainbow trout take up and process the antigens, which induce protection. The zebrafish was used as a model organism to study uptake mechanisms and subsequent antigen transport in fish. A genetically modified Yr was developed to constitutively express green fluorescent protein (GFP) and was used for bacterin production. Larval, juvenile and adult transparent zebrafish (tra:nac mutant) received a bath in the bacterin for up to 30 minutes. Samples were taken after 1 min, 15 min, 30 min, 2 h, 12 h and 24 h. At each sampling point fish were used for live imaging of the uptake using a fluorescence stereomicroscope and for immunohistochemistry (IHC). In adult fish, the bacterin could be traced within 30 min in scale pockets, skin, oesophagus, intestine and fins. Within two hours post bath (pb) Yr-antigens were visible in the spleen and at 24 h in liver and kidney. Bacteria were associated with the gills, but uptake at this location was limited. Antigens were rarely detected in the blood and never in the nares. In juvenile fish uptake of the bacterin was seen in the intestine 30 min pb and in the nares 2 hpb but never in scale pockets. Antigens were detected in the spleen 12 hpb. Zebrafish larvae exhibited major Yr uptake only in the mid-intestine enterocytes 24 hpb. The different life stages of zebrafish varied with regard to uptake locations, however the gut was consistently a major uptake site. Zebrafish and rainbow trout tend to have similar uptake mechanisms following immersion or bath vaccination, which points towards zebrafish as a suitable model organism for this aquacultured species.
机译:浸没疫苗(细菌素)通常用于水产养殖虹鳟鱼,以预防强生耶尔森氏菌。在浸泡疫苗接种过程中,虹鳟鱼吸收并加工了抗原,从而诱导了保护作用。斑马鱼被用作模型生物来研究鱼类的摄取机制和随后的抗原转运。开发了基因修饰的Yr以组成型表达绿色荧光蛋白(GFP),并用于产生细菌素。幼体,幼体和成年透明斑马鱼(tra:nac突变体)在该细菌中浸泡长达30分钟。在1分钟,15分钟,30分钟,2小时,12小时和24小时之后取样。在每个采样点,将鱼用于使用荧光立体显微镜对摄取进行实时成像,并用于免疫组织化学(IHC)。在成年鱼中,可以在30分钟内在鳞鳞袋,皮肤,食管,肠和鳍中追溯到该细菌。沐浴后两小时内(pb)脾脏以及肝脏和肾脏24小时可见Yr抗原。细菌与the有关,但在此位置的摄取受到限制。血液中很少检测到抗原,鼻孔中也从未检测到抗原。在幼鱼中,在肠道中30分钟铅中观察到了该细菌的吸收,在鼻孔中观察到了2 hpb的吸收,但在鳞屑囊中从未观察到。在脾脏12 hpb中检测到抗原。斑马鱼幼虫仅在肠中段肠上皮细胞24 hpb中显示出主要的Y吸收。斑马鱼的不同生命阶段在摄取位置方面有所不同,但是肠道始终是主要的摄取场所。斑马鱼和虹鳟鱼在浸泡或沐浴疫苗接种后倾向于具有相似的摄取机制,这表明斑马鱼是该水产养殖物种的合适模式生物。

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