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亚北极湖泊中欧洲白鲑(Coregonus lavaretus (L.))肝脏和肌肉中的总汞浓度——评估驱动全年变化的因素。

Total mercury concentrations in liver and muscle of European whitefish (Coregonus lavaretus (L.)) in a subarctic lake - Assessing the factors driving year-round variation.

作者信息

Keva Ossi, Hayden Brian, Harrod Chris, Kahilainen Kimmo K

机构信息

Department of Environmental Sciences, University of Helsinki, P.O.Box 65, FIN-00014, Finland.

Department of Environmental Sciences, University of Helsinki, P.O.Box 65, FIN-00014, Finland; Kilpisjärvi Biological Station, Käsivarrentie 14622, FIN-99490 Kilpisjärvi, Finland; Canadian Rivers Institute, Biology Department, University of New Brunswick, Fredericton, NB, E3B 5A3, Canada.

出版信息

Environ Pollut. 2017 Dec;231(Pt 2):1518-1528. doi: 10.1016/j.envpol.2017.09.012. Epub 2017 Sep 18.

Abstract

Subarctic lakes are characterised by extreme seasonal variation in light and temperature which influences growth, maturation, condition and resource use of fishes. However, our understanding of how seasonal changes affect mercury concentrations of fishes is limited. We conducted a year-round study (3 ice-covered months, 3 open-water months) with open-water inter-annual aspect (3 years: samples from August/September), focusing on total mercury (THg) concentrations and ecological characteristics of a common freshwater fish, European whitefish (Coregonus lavaretus (L.)) from a subarctic lake. We measured THg concentrations from tissues with fast (liver, n = 164) and moderate (muscle, n = 225) turnover rates, providing information on THg dynamics over different temporal scales. In both tissues, lipid-corrected THg concentrations were highest in winter (liver: 1.70 ± 0.88 μg/g, muscle: 0.24 ± 0.05 μg/g) and lowest in summer (liver: 0.87 ± 0.72 μg/g, muscle: 0.19 ± 0.04 μg/g). THg concentrations increased in winter following the summer-autumn dietary shift to pelagic zooplankton and starvation after spawning. Whitefish THg concentrations decreased towards summer, and were associated with consumption of benthic macroinvertebrates and subsequent growth dilution. Mercury bioaccumulated in both tissues with age, both showing the strongest regression slopes in winter and lowest in summer. THg concentrations in liver and muscle tissue were correlated throughout the year, however the correlation was lowest in summer, indicating high metabolism during somatic growing season in summer and growth dilution. Multiple linear regression models explained 50% and 55% of the THg variation in liver and muscle both models dominated by seasonally-variable factors i.e. sexual maturity, δC, and condition factor. Seasonally varying bioaccumulation slopes and the higher level of intra-annual variation (21%) in whitefish THg concentration in muscle than the inter-annual accumulation (8%) highlight the importance of including seasonal factors in future THg studies.

摘要

亚北极湖泊的特点是光照和温度存在极端的季节性变化,这会影响鱼类的生长、成熟、身体状况和资源利用。然而,我们对季节变化如何影响鱼类汞浓度的了解有限。我们进行了一项全年研究(3个冰封月份、3个开放水域月份),并涉及开放水域的年际情况(3年:8月/9月的样本),重点关注亚北极湖泊中一种常见淡水鱼欧洲白鲑(Coregonus lavaretus (L.))的总汞(THg)浓度和生态特征。我们测量了快速周转组织(肝脏,n = 164)和中速周转组织(肌肉,n = 225)中的THg浓度,以提供不同时间尺度上THg动态的信息。在这两种组织中,经脂质校正的THg浓度在冬季最高(肝脏:1.70±0.88μg/g,肌肉:0.24±0.05μg/g),在夏季最低(肝脏:0.87±0.72μg/g,肌肉:0.19±0.04μg/g)。冬季,随着夏秋季节饮食转向浮游动物以及产卵后的饥饿,THg浓度升高。白鲑的THg浓度在夏季下降,并与底栖大型无脊椎动物的消耗以及随后的生长稀释有关。汞在两种组织中都随着年龄的增长而生物累积,两者在冬季的回归斜率最强,在夏季最低。肝脏和肌肉组织中的THg浓度全年都呈相关关系,然而在夏季相关性最低,这表明夏季体细胞生长季节新陈代谢旺盛以及生长稀释。多元线性回归模型分别解释了肝脏和肌肉中THg变化的50%和55%,两个模型都以季节性可变因素为主导,即性成熟、δC和身体状况因子。季节性变化的生物累积斜率以及肌肉中白鲑THg浓度的年内变化水平较高(21%)高于年际累积(8%),这突出了在未来THg研究中纳入季节性因素的重要性。

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