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Multiple-stressor effects in an apex predator: combined influence of pollutants and sea ice decline on lipid metabolism in polar bears

机译:顶点掠食者的多重压力效应:污染物和海冰下降对北极熊脂质代谢的综合影响

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There is growing evidence from experimental and human epidemiological studies that many pollutants can disrupt lipid metabolism. In Arctic wildlife, the occurrence of such compounds could have serious consequences for seasonal feeders. We set out to study whether organohalogenated compounds (OHCs) could cause disruption of energy metabolism in female polar bears (Ursus maritimus) from Svalbard, Norway (n?=?112). We analyzed biomarkers of energy metabolism including the abundance profiles of nine lipid-related genes, fatty acid (FA) synthesis and elongation indices in adipose tissue, and concentrations of lipid-related variables in plasma (cholesterol, high-density lipoprotein, triglycerides). Furthermore, the plasma metabolome and lipidome were characterized by low molecular weight metabolites and lipid fingerprinting, respectively. Polychlorinated biphenyls, chlordanes, brominated diphenyl ethers and perfluoroalkyl substances were significantly related to biomarkers involved in lipid accumulation, FA metabolism, insulin utilization, and cholesterol homeostasis. Moreover, the effects of pollutants were measurable at the metabolome and lipidome levels. Our results indicate that several OHCs affect lipid biosynthesis and catabolism in female polar bears. Furthermore, these effects were more pronounced when combined with reduced sea ice extent and thickness, suggesting that climate-driven sea ice decline and OHCs have synergistic negative effects on polar bears.
机译:来自实验和人类流行病学研究的越来越多的证据表明,许多污染物可以破坏脂质代谢。在北极野生动植物中,此类化合物的出现可能会对季节性饲养者造成严重后果。我们着手研究有机卤代化合物(OHCs)是否会破坏挪威斯瓦尔巴特群岛的雌性北极熊(Ursus maritimus)的能量代谢(n = 112)。我们分析了能量代谢的生物标志物,包括九种脂质相关基因的丰度概况,脂肪组织中脂肪酸(FA)的合成和伸长指数以及血浆中脂质相关变量的浓度(胆固醇,高密度脂蛋白,甘油三酸酯)。此外,血浆代谢组和脂质组分别以低分子量代谢物和脂质指纹图谱为特征。多氯联苯,氯丹,溴化二苯醚和全氟烷基物质与涉及脂质蓄积,FA代谢,胰岛素利用和胆固醇稳态的生物标志物显着相关。而且,在代谢组和脂质组水平上,污染物的影响是可测量的。我们的结果表明,几种OHC影响雌性北极熊的脂质生物合成和分解代谢。此外,与减少的海冰范围和厚度相结合时,这些影响更为明显,表明气候驱动的海冰减少和OHC对北极熊具有协同的负面影响。

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