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吞噬作用激活蛋白(PAP)在嗜水气单胞菌感染鲤鱼中的作用

Roles of phagocytosis activating protein (PAP) in Aeromonas hydrophila infected Cyprinus carpio.

作者信息

Wonglapsuwan Monwadee, Kongmee Pataraporn, Suanyuk Naraid, Chotigeat Wilaiwan

机构信息

Center for Genomics and Bioinformatics Research, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla 90112, Thailand; Dept. of Molecular Biotechnology and Bioinformatics, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla 90112, Thailand.

Dept. of Aquatic Science, Faculty of Natural Resources, Prince of Songkla University, Hat Yai, Songkhla 90112, Thailand.

出版信息

Dev Comp Immunol. 2016 Jun;59:25-33. doi: 10.1016/j.dci.2015.12.021. Epub 2015 Dec 31.

Abstract

Cyprinus carpio (koi) is one of the most popular ornamental fish. A major problem for C. carpio farming is bacterial infections especially by Aeromonas hydrophila. Previously studies had shown that the Phagocytosis Activating Protein (PAP) gene was involved in the innate immune response of animals. Therefore, we attempted to identify a role for the PAP gene in the immunology of C. carpio. The expression of the PAP was found in C. carpio whole blood and increased when the fish were stimulated by inactivated A. hydrophila. In addition, PAP-phMGFP DNA was injected as an immunostimulant. The survival rate and the phagocytic index were significantly increased in the A. hydrophila infected fish that received the PAP-phMGFP DNA immunostimulant. A chitosan-PAP-phMGFP nanoparticle was then developed and feeded into fish which infected with A. hydrophila. These fish had a significantly lower mortality rate than the control. Therefore, this research confirmed a key role for PAP in protection fish from bacterial infection and the chitosan-PAP-phMGFP nanoparticle could be a good prototype for fish immunostimulant in the future.

摘要

鲤鱼(锦鲤)是最受欢迎的观赏鱼之一。鲤鱼养殖的一个主要问题是细菌感染,尤其是嗜水气单胞菌感染。此前的研究表明,吞噬作用激活蛋白(PAP)基因参与动物的先天免疫反应。因此,我们试图确定PAP基因在鲤鱼免疫学中的作用。在鲤鱼全血中发现了PAP的表达,当鱼受到灭活的嗜水气单胞菌刺激时,其表达增加。此外,注射PAP-phMGFP DNA作为免疫刺激剂。接受PAP-phMGFP DNA免疫刺激剂的嗜水气单胞菌感染鱼的存活率和吞噬指数显著提高。然后开发了一种壳聚糖-PAP-phMGFP纳米颗粒,并投喂给感染嗜水气单胞菌的鱼。这些鱼的死亡率明显低于对照组。因此,本研究证实了PAP在保护鱼类免受细菌感染方面的关键作用,壳聚糖-PAP-phMGFP纳米颗粒可能是未来鱼类免疫刺激剂的良好原型。

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