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首页> 外文期刊>Environmental toxicology and chemistry >Expression of Aryl Hydrocarbon Receptor–Regulated Genes and Superoxide Dismutase in the Antarctic Eelpout Pachycara brachycephalum Exposed to Benzo[a]pyrene
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Expression of Aryl Hydrocarbon Receptor–Regulated Genes and Superoxide Dismutase in the Antarctic Eelpout Pachycara brachycephalum Exposed to Benzo[a]pyrene

机译:暴露于苯并[a] re的南极鳗el厚头蝶中芳烃受体调控基因和超氧化物歧化酶的表达

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The aryl hydrocarbon receptor (AhR) pathway mediates many, if not all, responses of fish to dioxin-like compounds. The Southern Ocean is progressively exposed to increasing concentrations of anthropogenic pollutants. Antarctic fish are known to accumulate those pollutants, yet nothing is known about their capability to induce chemical biotransformation via the AhR pathway. The objective of the present study was to investigate whether Antarctic eelpout, Pachycara brachycephalum, respond to anthropogenic pollutants by activation of the AhR and its target gene cytochrome P4501A (CYP1A), and of superoxide dismutase (SOD), which served as a representative for oxidative stress. We exposed P. brachycephalum to 10 and 100 mg benzo[a]pyrene (BaP)/kg body weight for 10 d and measured the expression of AhR, CYP1A, and SOD in liver tissue via quantitative polymerase chain reaction. We identified two distinct AhR isoforms in the liver of P. brachycephalum. Antarctic eelpout responded to both BaP exposures by an up-regulation of AhR and SOD, and by a particularly strong induction of CYP1A expression, which remained high until day 10 of the exposure time. Our data suggest that P. brachycephalum possesses the potential to up-regulate xenobiotic biotransformation pathways, at least at the gene expression level. The time course of the AhR and CYP1A response points to an efficient but slow xenobiotics metabolism. Moreover, BaP exposure could include adverse effects such as oxidative stress. (C) 2018 SETAC
机译:芳烃受体(AhR)途径介导了鱼类对二恶英样化合物的反应(如果不是全部的话)。南大洋逐渐暴露于不断增加的人为污染物浓度。已知南极鱼会积聚这些污染物,但对它们通过AhR途径诱导化学生物转化的能力一无所知。本研究的目的是调查南极的出水Pachycara brachycephalum是否通过激活AhR及其靶基因细胞色素P4501A(CYP1A)和超氧化物歧化酶(SOD)来响应人为污染物。强调。我们将短脑假单胞菌暴露于10和100 mg / kg体重的苯并[a] py(BaP)/ kg体重下10 d,并通过定量聚合酶链反应测量肝脏组织中AhR,CYP1A和SOD的表达。我们在短脑假单胞菌的肝脏中发现了两个不同的AhR亚型。南极洲的出水对BaP暴露的反应是通过上调AhR和SOD,以及对CYP1A表达的特别强烈的诱导,直到暴露时间的第10天仍然很高。我们的数据表明,至少在基因表达水平上,头颅假单胞菌具有上调异源生物转化途径的潜力。 AhR和CYP1A反应的时间过程表明异种生物物质代谢有效但缓慢。此外,BaP暴露可能包括诸如氧化应激的不利影响。 (C)2018年SETAC

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