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亚铁血红素肽(Hepcidin)通过调节铁分布和免疫基因表达来保护草鱼(Ctenopharyngodon idellus)抵抗柱状屈挠杆菌感染。

Hepcidin protects grass carp (Ctenopharyngodon idellus) against Flavobacterium columnare infection via regulating iron distribution and immune gene expression.

机构信息

Department of Aquatic Animal Medicines, College of Fisheries, Huazhong Agricultural University, Wuhan, Hubei 430070, China; Guangzhou Key Laboratory of Aquatic Animal Diseases and Waterfowl Breeding, Guangdong Provincial Key Laboratory of Waterfowl Healthy Breeding, College of Animal Sciences and Technology, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong 510225, China.

Guangzhou Key Laboratory of Aquatic Animal Diseases and Waterfowl Breeding, Guangdong Provincial Key Laboratory of Waterfowl Healthy Breeding, College of Animal Sciences and Technology, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong 510225, China.

出版信息

Fish Shellfish Immunol. 2018 Apr;75:274-283. doi: 10.1016/j.fsi.2018.02.023. Epub 2018 Feb 13.

Abstract

Columnaris disease (CD) caused by Flavobacterium columnare (F. columnare) is lack of knowledge on effective treatment measures. Bacterial pathogens require iron as an essential nutrient to infect the host. While hepcidin acts as a master regulator in iron metabolism, its contribution to host defense is emerging as complex and multifaceted. In vitro, recombinant Ctenopharyngodon idellus (C. idellus) hepcidin (CiHep) and synthetic CiHep both showed the ability to increase the expression of hepcidin and ferritin in C. idellus kidney cells, especially the recombinant CiHep. In vivo, recombinant CiHep improved the survival rate of C. idellus challenged with F. columnare. In addition, the fish fed diet containing recombinant CiHep (group H-1) had a higher survival rate than other pretreatment groups. The study showed that recombinant CiHep regulated iron metabolism causing iron redistribution, decreasing serum iron levels and increasing iron accumulation in the hepatopancreas. Moreover, the expression of iron-related genes was upregulated in various degrees at a different time except for group H-1. Immune-related genes were also evaluated, showing higher expression in the groups pretreated with CiHep at an early stage of infection. Of note, a clear upregulation of more immune genes occurred in the groups pretreated with recombinant CiHep than that pretreated with synthetic CiHep in the late stage of infection. In conclusion, the recombinant CiHep has a protective effect on the host response to bacterial pathogens. We speculate that hepcidin protects C. idellus against F. columnare infection via regulating the iron distribution and immune gene expression.

摘要

柱状屈挠杆菌引起的柱状屈挠杆菌病(CD)缺乏有效的治疗措施。细菌病原体需要铁作为一种必需的营养物质来感染宿主。虽然铁调素作为铁代谢的主要调节剂,但它对宿主防御的贡献正变得复杂和多方面。在体外,重组草鱼(C. idellus)铁调素(CiHep)和合成 CiHep 都显示出增加草鱼肾脏细胞中铁调素和铁蛋白表达的能力,尤其是重组 CiHep。在体内,重组 CiHep 提高了草鱼对柱状屈挠杆菌的存活率。此外,喂食含有重组 CiHep 的饲料(H-1 组)的鱼比其他预处理组具有更高的存活率。研究表明,重组 CiHep 调节铁代谢导致铁重新分布,降低血清铁水平并增加肝胰腺中的铁积累。此外,除了 H-1 组之外,在不同时间点,各种铁相关基因的表达都不同程度地上调。还评估了免疫相关基因,结果显示在感染早期用 CiHep 预处理的组中表达更高。值得注意的是,在感染后期,用重组 CiHep 预处理的组中,更多的免疫基因的上调比用合成 CiHep 预处理的组更明显。总之,重组 CiHep 对宿主对细菌病原体的反应具有保护作用。我们推测,铁调素通过调节铁分布和免疫基因表达来保护草鱼免受柱状屈挠杆菌感染。

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