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Bioaccumulation of Toxaphene Congeners in the Lake Superior Food Web

机译:苏必利尔湖食物网中毒杀芬同源物的生物蓄积

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The bioaccumulation and biotransformation of toxaphene was examined in the food webs of Lake Superior and Siskiwit Lake (Isle Royale) using congener specific analysis as well as stable isotope ratios of carbon and nitrogen to characterize food webs. Toxaphene concentrations (calculated using technical toxaphene) in lake trout (Salvelinus namaycush) from the western basin of Lake Superior (N = 95) averaged (±SD) 889 ± 896 ng/g wet wt and 60 ± 34 ng/g wet wt in Siskiwit Lake. Major congeners in lake trout were B8-789 (P38), B8-2226 (P44), B9-1679 (P50), and B9-1025 (P62). Toxaphene concentrations were found to vary seasonally, especially in lower food web organisms in Lake Superior and to a lesser extent in Siskiwit Lake. Toxaphene concentrations declined significantly in lake herring (Coregonus artedii), rainbow smelt (Omerus mordax), and slimy sculpin (Cottus cognatus) as well as in zooplankton (> 102 μm) and Mysis (Mysis relicta) between May and October. The seasonal variation may reflect seasonal shifts in the species abundance within the zooplankton community. Trophic magnification factors (TMF) derived from regressions of toxaphene congener concentrations versus δ~(15)N were > 1 for most octa- and nonachlorobornanes in Lake Superior except B8-1413 (P26) and B9-715. Log bioaccumulation factors (BAFs) for toxaphene congeners in lake trout (ng/g lipidg/L dissolved) ranged from 4.54 to 9.7 and were significantly correlated with log octanol-water partition coefficients. TMFs observed for total toxaphene and congener B9-1679 in Lake Superior were similar to those in Arctic lakes, as well as to previous studies in the Great Lakes, which suggests that the bioaccumulation behavior of toxaphene is similar in pelagic food webs of large, cold water systems. However, toxaphene concentrations were lower in lake trout from Siskiwit Lake and lakes in northwestern Ontario than in Lake Superior possibly because of shorter food chains and greater reliance on zooplankton or other pelagic invertebrates.
机译:在苏必利尔湖和西斯基维特湖(皇家岛)的食物网中,通过同类物特异性分析以及碳和氮的稳定同位素比来表征食物网,从而检测了毒杀芬的生物蓄积和生物转化。苏必利尔湖西部盆地(N = 95)的鳟鱼(Salvelinus namaycush)中的毒杀芬浓度(使用工业毒杀芬计算)的平均值为(±SD)889±896 ng / g湿重和60±34 ng / g湿重斯基斯基湖。湖鳟的主要同源物是B8-789(P38),B8-2226(P44),B9-1679(P50)和B9-1025(P62)。发现毒杀芬的浓度随季节变化,特别是在苏必利尔湖和西斯基威特湖中食物链较低的生物中。在五月到十月之间,湖鲱鱼(Coregonus artedii),彩虹熔炼物(Omerus mordax),粘糊糊的杜鹃(Cottus cognatus)以及浮游动物(> 102μm)和Mysis(Mysis relicta)中的毒杀芬浓度显着下降。季节变化可能反映了浮游动物群落内物种丰度的季节性变化。除B8-1413(P26)和B9-715外,苏必利尔湖中大多数八氯和九氯硼烷的毒理学含量都由毒杀芬同类物浓度相对于δ〜(15)N的回归得出的营养放大倍数(TMF)> 1。湖泊鳟鱼中毒杀芬同源物的对数生物累积因子(BAFs)(ng / g脂质/ ng / L溶解)范围为4.54至9.7,并且与对数辛醇-水分配系数显着相关。在苏必利尔湖中观察到的总毒杀芬和同类物B9-1679的TMF与北极湖中的相似,以及之前在大湖地区的研究表明,毒杀芬在大型,寒冷的中上层食物网中的生物蓄积行为相似水系统。然而,西斯基威特湖和安大略省西北部湖泊的鳟鱼湖中的毒杀芬浓度低于苏必利尔湖,这可能是因为食物链较短以及对浮游动物或其他中上层无脊椎动物的依赖。

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