首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Influence of Thermal Pollution on the Physiological Conditions and Bioaccumulation of Metals Metalloids and Trace Metals in Whitefish (Coregonus lavaretus L.)
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Influence of Thermal Pollution on the Physiological Conditions and Bioaccumulation of Metals Metalloids and Trace Metals in Whitefish (Coregonus lavaretus L.)

机译:热污染对白鱼中金属金属痕量金属的生理条件和生物累积的影响(Coregonus Lavaretus L.)

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摘要

The Kola nuclear power plant, which discharges warm water into one of the bays of subarctic Lake Imandra, significantly changes fish habitats. The temperature gradient of the lake is between 2 and 8 °C, which makes it significantly different from the natural temperature of the lake water. The stenothermal cold-water native species (lake whitefish (Coregonus lavaretus L.)), living for more than 40 years under conditions of thermal pollution, has adapted to this stressor. Moreover, this population differs favorably from the population in the natural-temperature environment in terms of its physiological state. Firstly, the hemoglobin concentrations in the fish blood are in the range of the ecological optimum, and secondly, it has a higher somatic growth, as estimated by Fulton’s condition factor. One of its main adaptive mechanisms of ion regulation is an intense metabolism of Na due to the high respiratory activity of the whitefish in warmer water. An increased accumulation of Rb and excretion of Se, Mo, and Si are associated more or less with that feature. Under conditions of an increased water temperature, the main metabolic need is due to a deficiency of Se in fish. The intensive metabolism of selenoproteins may involve risks of toxic effects and the bioaccumulation of Hg, As, and Cu in cases of increased existing stressors or the appearance of new ones.
机译:Kola核电站将温水排放到象征湖Imandra的海湾之一,显着改变了鱼类栖息地。湖泊的温度梯度在2到8°C之间,这使其与湖水的自然温度显着不同。稳定热的冷水天然物种(湖白鲑鱼(Coregonus Lavaretus L.)),在热污染条件下生活在40多年以上,适应了这种压力源。此外,在其生理状态方面,该群体与天然温度环境中的人群不同。首先,鱼血中的血红蛋白浓度在生态最佳的范围内,其次,它具有更高的体细胞生长,如富尔顿的病情因素估计。其主要的离子调节机制之一是由于温暖水中的白鱼的高呼吸活动导致NA的强烈代谢。随着该特征的特征,RB和排泄的增加的累积和排泄的增加是多相关的。在水温增加的条件下,主要代谢需求是由于鱼中的缺乏。硒蛋白的强化代谢可能涉及毒性效应的风险和HG的生物累积,以及在增加现有的压力源或新的压力频道或新的情况下的CU。

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