The inflammatory, genotoxicity, antioxidants, and pathological response to ectoparasite infection of cultured Nile tilapia

IF 2.2 3区 农林科学 Q2 FISHERIES
Mahmoud Radwan, Moussa Attia Moussa, Mahmoud A. El-Sharkawy, Salah M. El-Sharkawy, Metwally G. Metwally, Bassem E. Elaraby, Kareem F. Darweesh, Marwa O. Abd El-Halim, Jamila S. Al malki, Amaal Mohammadein, Shahd Yassir, Said M. A. Elraey
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引用次数: 0

Abstract

Ectoparasites Dactylogyrus spp. mainly infest fish gills and severely damage the host’s gill tissues. Correspondingly, the explanation of the interaction of fish with Dactylogyrus spp. infection is still insufficient. The present study describes the changes in hemato-biochemical, immune, antioxidant, genotoxic, and pathological indices response of Nile tilapia (Oreochromis niloticus) severely (n > 50), mildly infected (n = 1–50), and uninfected with Dactylogyrus spp. Data showed the adverse effect of hemato-biochemical indices in infected fish compared to uninfected, notably in severely infected O. niloticus. Compared to uninfected fish, there is a significantly decreased serum lysozyme and complement C3 and increased IgM and phagocytic activity along with significant upregulation of (COX-2), (IL-1β), (TNF-α), and (IL-10) genes in infected fish partially, in severely infected fish. Concisely, indices of antioxidants in the liver and gills marked an increased level of MDA in the infected fish compared to the uninfected fish. Conversely, levels of SOD, CAT, and GSH were decreased significantly with damaged DNA in the gills and liver of infected groups, particularly in severely infected (P < 0.05). Histopathologically investigating livers and gills in infected Nile tilapia indicated damaging and degenerative alterations, particularly with severe infection. Findings showed that Dactylogyrus spp.–infected Nile tilapia were effective in improving our knowledge of fish-pathogen interactions, which may be essential for fish defense against parasite infection.

养殖尼罗罗非鱼外寄生虫感染的炎症、基因毒性、抗氧化剂和病理反应
外寄生虫 Dactylogyrus spp.主要侵袭鱼鳃,严重破坏宿主的鳃组织。相应地,鱼类与 Dactylogyrus spp.感染相互作用的解释仍不充分。本研究描述了尼罗罗非鱼(Oreochromis niloticus)严重感染(n > 50)、轻度感染(n = 1-50)和未感染 Dactylogyrus spp 的血液生化、免疫、抗氧化、基因毒性和病理指标反应的变化。 数据显示,与未感染 Dactylogyrus spp 的鱼相比,感染 Dactylogyrus spp 的鱼对血液生化指标有不利影响,尤其是严重感染的尼罗罗非鱼。与未感染的鱼类相比,受感染鱼类的血清溶菌酶和补体 C3 明显降低,IgM 和吞噬活性增加,同时(COX-2)、(IL-1β)、(TNF-α)和(IL-10)基因明显上调,部分严重感染的鱼类基因上调。简而言之,与未感染鱼类相比,感染鱼类肝脏和鳃中的抗氧化剂指数表明 MDA 水平升高。相反,SOD、CAT 和 GSH 的水平随着受感染组(尤其是严重感染组)鳃和肝脏中 DNA 的受损而显著下降(P < 0.05)。对受感染的尼罗罗非鱼的肝脏和鳃进行组织病理学检查,结果表明,尤其是严重感染的尼罗罗非鱼肝脏和鳃出现了损伤和变性改变。研究结果表明,Dactylogyrus属感染尼罗罗非鱼能有效提高我们对鱼类与病原体相互作用的认识,这可能是鱼类抵御寄生虫感染的关键。
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来源期刊
Aquaculture International
Aquaculture International 农林科学-渔业
CiteScore
5.10
自引率
6.90%
发文量
204
审稿时长
1.0 months
期刊介绍: Aquaculture International is an international journal publishing original research papers, short communications, technical notes and review papers on all aspects of aquaculture. The Journal covers topics such as the biology, physiology, pathology and genetics of cultured fish, crustaceans, molluscs and plants, especially new species; water quality of supply systems, fluctuations in water quality within farms and the environmental impacts of aquacultural operations; nutrition, feeding and stocking practices, especially as they affect the health and growth rates of cultured species; sustainable production techniques; bioengineering studies on the design and management of offshore and land-based systems; the improvement of quality and marketing of farmed products; sociological and societal impacts of aquaculture, and more. This is the official Journal of the European Aquaculture Society.
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