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来自育空地区三个选定湖泊的江鳕和湖鳟体内有机氯污染物的时间趋势。

Temporal trends of organochlorine contaminants in burbot and lake trout from three selected Yukon lakes.

作者信息

Ryan M J, Stern G A, Diamond M, Croft M V, Roach P, Kidd K

机构信息

Department of Fisheries and Oceans, Winnipeg, MB and U. Manitoba, Winnipeg, MB 501 University Cresent, Canada, R3T 2N6.

出版信息

Sci Total Environ. 2005 Dec 1;351-352:501-22. doi: 10.1016/j.scitotenv.2004.08.022. Epub 2005 Sep 6.

Abstract

Historical studies have demonstrated that organochlorine (OC) concentrations in top predators can vary considerably from lake to lake within a small geographic region but temporal trends of these contaminants have rarely been monitored in a sub-Arctic area for a long period of time. This study examined OC concentrations, including chlordane (CHL), DDT, hexachlorocyclohexane (HCH), toxaphene (CHB), PCB and chlorinated benzenes (CBz) in lake trout and burbot, from three Yukon lakes (Laberge, Kusawa, Quiet), over a span of 11 years (1992-2003). Temporal and spatial differences continue to exist in the OC concentrations of burbot and lake trout between these lakes. There is strong evidence that these contaminants are declining at various rates in lake trout (Salveninus namaycush) in Laberge, Kusawa and Quiet Lakes. For example, SigmaDDT concentrations have decreased 39%, 85% and 84% in Kusawa, Quiet and Laberge Lakes, respectively. Conversely, no consistent trends were observed in OC concentrations for burbot (Lota lota). For example, there is no evidence of a decline in toxaphene concentrations of Kusawa burbot yet a 58% decrease was observed in Laberge samples. Increases were also observed in the SigmaHCH levels of Kusawa Lake burbot, as well as increases in all OC groups (except SigmaHCH) for the Quiet Lake burbot samples. Decreases in burbot were evident in SigmaHCH and SigmaCHB for Lake Laberge fish and in SigmaCHL for Kusawa Lake samples. Spatial variations in OC levels are quite evident as Lake Laberge trout and burbot continued to maintain the highest levels over the eleven-year period from 1992 to 2003 followed by Kusawa Lake and then Quiet Lake. These differences were related to a variety of factors especially the species morphological characteristics such as log age, log weights and fish lipid content. A decreasing trend in Quiet and Laberge Lake trout lipid content, coupled with fluctuating condition factors and increases in body masses, suggest biotic changes may be occurring within the food webs due to fish population variations related to the cessation of commercial fishing or potentially an increase in lake plankton productivity related to annual climate variation. It is suspected that biotic factors rather than atmospheric inputs are the primary factors affecting the contaminant concentrations in lake trout and burbot in the study lakes.

摘要

历史研究表明,在一个小地理区域内,顶级捕食者体内的有机氯(OC)浓度在不同湖泊之间可能有很大差异,但在亚北极地区,这些污染物的长期时间趋势很少得到监测。本研究调查了11年(1992 - 2003年)间育空地区三个湖泊(拉伯格湖、久泽湖、宁静湖)中的湖鳟和江鳕体内的有机氯浓度,包括氯丹(CHL)、滴滴涕、六氯环己烷(HCH)、毒杀芬(CHB)、多氯联苯(PCB)和氯化苯(CBz)。这些湖泊中的江鳕和湖鳟体内有机氯浓度的时间和空间差异仍然存在。有强有力的证据表明,这些污染物在拉伯格湖、久泽湖和宁静湖的湖鳟(Salveninus namaycush)体内正以不同速率下降。例如,久泽湖、宁静湖和拉伯格湖中的总滴滴涕浓度分别下降了39%、85%和84%。相反,江鳕(Lota lota)体内有机氯浓度未观察到一致的趋势。例如,没有证据表明久泽湖江鳕体内的毒杀芬浓度下降,而拉伯格湖样本中却下降了58%。久泽湖江鳕的总六氯环己烷水平也有所上升,宁静湖江鳕样本中所有有机氯组(除总六氯环己烷外)也有所上升。拉伯格湖鱼类的总六氯环己烷和总氯化苯以及久泽湖样本的总氯丹中江鳕体内的下降很明显。有机氯水平的空间差异非常明显,从1992年到2003年的11年期间,拉伯格湖的鳟鱼和江鳕体内的有机氯水平一直保持最高,其次是久泽湖,然后是宁静湖。这些差异与多种因素有关,特别是物种的形态特征,如年龄、体重和鱼的脂质含量。宁静湖和拉伯格湖湖鳟脂质含量呈下降趋势,同时状况因子波动且体重增加,这表明由于与商业捕鱼停止相关的鱼类种群变化或可能与年度气候变化相关的湖泊浮游生物生产力增加,食物网内可能正在发生生物变化。据推测,生物因素而非大气输入是影响研究湖泊中湖鳟和江鳕体内污染物浓度的主要因素。

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