Dietary teprenone enhances non-specific immunity, antioxidative response and resistance to hypoxia induced oxidative stress in Lateolabrax maculatus
文献类型: 外文期刊
第一作者: Dong, Hongbiao
作者: Dong, Hongbiao;Zheng, Xiaoting;Duan, Yafei;Sun, Yongxu;Zhang, Jiasong;Roy, Suvra;Kumar, Vikash;Das, Basanta Kumar;Sun, Yongxu;Roy, Suvra;Zheng, Xiaoting;Kumar, Vikash
作者机构: Chinese Acad Fishery Sci, South China Sea Fisheries Res Inst, Key Lab South China Sea Fishery Resources Exploit, Minist Agr, Guangzhou, Peoples R China;ICAR Cent Inland Fisheries Res Inst, Aquat Environm Biotechnol & Nanotechnol AEBN Div, Kolkata 700120, India;Xiamen Univ, Coll Ocean & Earth Sci, State Key Lab Marine Environm Sci, Xiamen 361102, Peoples R China;Univ Ghent, Lab Aquaculture & Artemia Reference Ctr, Dept Anim Sci & Aquat Ecol, Fac Biosci Engn, Ghent, Belgium
关键词: Hypoxia; Lateolabrax maculatus; Oxidative stress; Teprenone; Antioxidative response; Innate immunity
期刊名称:AQUACULTURE ( 2020影响因子:4.242; 五年影响因子:4.723 )
ISSN: 0044-8486
年卷期: 2021 年 533 卷
收录情况: SCI
摘要: Persistent hypoxic or low-oxygen conditions in aquatic systems are becoming more frequent worldwide, causing large-scale mortalities to the aquaculture animals. Hence, it would be of great benefit to search for natural compounds that are clinically safe, yet able to induce host health and antioxidant defence system. In the experiment, Lateolabrax maculatus were fed with ketone compound teprenone and subsequently exposed to hypoxia condition. Afterwards, the effect of teprenone on the antioxidative response, non-specific immunity and hypoxia induced oxidative stress were investigated. We found that dietary supplementation of teprenone at 200 mg/kg (HT200), 400 mg/kg (HT400) and 800 mg/kg (HT800) significantly increase the total antioxidant capacity (T-AOC) during hypoxia stress. While, lower values of malondialdehyde (MDA) content, an indicator of oxidative stress, were recorded in teprenone supplemented groups. In addition, upregulation of non-specific immune parameters including lysozyme (LZM), Hsp70 and Hsp90 was observed in L.maculatus. We further demonstrated that teprenone supplementation protects L.maculatus from hypoxia and oxidative stress generated apoptosis. The pro-apoptotic signalling molecules, i.e., cytochrome C (Cty-C), caspase-9 and caspase-3 production were significantly decreased in response to teprenone supplementation during the hypoxia stress. In contrast, the anti-apoptotic response, BCL-2 gene expression, was significantly increased. We have shown that dietary teprenone induces innate immunity and antioxidative response and protects L.maculatus against hypoxia induced-oxidative stress and apoptosis; therefore, suggesting their possible role to manage the stressful condition, in particular, hypoxia stress in aquaculture.
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