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在遥远的挪威北极地区,终生接触多氯联苯会扰乱北极红点鲑的血浆应激代谢组。

Lifelong Exposure to PCBs in the Remote Norwegian Arctic Disrupts the Plasma Stress Metabolome in Arctic Charr.

机构信息

Department of Biological Sciences, University of Calgary , Calgary, Alberta Canada T2N1N4.

Akvaplan-niva AS, Fram Centre-High North Research Centre for Climate and the Environment , Hjalmar Johansens Gate 14, 9007 Tromsø, Norway.

出版信息

Environ Sci Technol. 2018 Jan 16;52(2):868-876. doi: 10.1021/acs.est.7b05272. Epub 2018 Jan 2.

Abstract

Lake Ellasjøen on the remote Norwegian island of Bjørnøya is populated by Arctic charr (Salvelinus alpinus) having 20-fold higher body burdens of polychlorinated biphenyls (PCB) compared to charr from the neighboring Lake Laksvatn. This provides a natural setting to test the hypothesis that lifelong exposure to PCBs compromises the energy metabolism in this northernmost living salmonid. To test this, blood was sampled from charr from both lakes immediately after capture and following a 1 h handling and confinement stressor to assess possible differences in their energy metabolism and energy substrate mobilization, respectively. The plasma metabolome of charr was assessed by metabolite detection/separation with LC-MS. Plasma metabolite profiles revealed differences in key pathways involved in amino acid metabolism between charr from each lake, underscoring an impact of PCBs on energy metabolism in Arctic charr residing in Lake Ellasjøen. Subjecting charr from either lake to an acute stressor altered the plasma metabolite profiles and revealed distinct stress metabolome in Lake Ellasjøen charr, suggesting a reduced metabolic capacity. Taken together, lifelong exposure to PCBs in Ellasjøen charr disrupts the plasma metabolome, and may impair the adaptive metabolic response to stressors, leading to a reduced fitness.

摘要

位于挪威偏远比约克岛的埃拉斯佐恩湖中的北极茴鱼(Salvelinus alpinus)体内多氯联苯(PCB)的体负荷比来自邻近的拉克瓦特纳湖的茴鱼高 20 倍。这为测试长期暴露于 PCB 是否会损害这种最北部生存的鲑鱼的能量代谢提供了自然环境。为了验证这一点,在捕获后立即从两个湖中采集了茴鱼的血液,并在 1 小时的处理和限制应激源后进行了处理,以分别评估它们的能量代谢和能量底物动员的差异。通过 LC-MS 进行代谢物检测/分离来评估茴鱼的血浆代谢组。血浆代谢物谱揭示了来自每个湖泊的茴鱼之间参与氨基酸代谢的关键途径存在差异,这强调了 PCB 对居住在埃拉斯佐恩湖的北极茴鱼能量代谢的影响。使来自两个湖泊的茴鱼受到急性应激源的影响改变了血浆代谢物谱,并在埃拉斯佐恩湖的茴鱼中揭示了独特的应激代谢组,表明代谢能力降低。总之,埃拉斯佐恩湖茴鱼终生暴露于 PCB 会破坏血浆代谢组,并可能损害对胁迫的适应性代谢反应,从而降低适应性。

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