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利用笼养鱼类、X 射线吸收光谱和稳定同位素分析评估水生生态系统中硒的营养传递。

Evaluating the trophic transfer of selenium in aquatic ecosystems using caged fish, X-ray absorption spectroscopy and stable isotope analysis.

机构信息

Toxicology Centre, University of Saskatchewan, 44 Campus Drive, Saskatoon, SK, Canada S7N 5B3.

出版信息

Ecotoxicol Environ Saf. 2011 Oct;74(7):1855-63. doi: 10.1016/j.ecoenv.2011.06.015. Epub 2011 Jul 16.

Abstract

This research evaluated the dominant exposure pathways with regard to the bioaccumulation and trophic transfer of selenium (Se) in caged small-bodied fish inhabiting the receiving waters of a uranium-processing mill in northern Saskatchewan, Canada. A 21-day cage study was conducted using wild naïve lake chub (Couesius plumbeus) collected from a reference lake and caged in a reference and an exposure lake downstream of the mill discharge. Caged fish were fed commercially produced Chironomus spp. diets of 1.5 (basal - commercial food) and 5.5 (lab reared in Se-spiked water) μgSe/g (dry weight) at a feeding ration of 10 percent percent body weight/day. Lake chub fed the Se-spiked diet and caged in the reference lake showed increased whole-body Se concentrations compared to chub fed the basal diet after 21 days. Lake chub caged in the exposure lake from both the elevated Se and basal diet groups had significantly greater whole-body Se concentrations compared to the reference lake, and were not significantly different from each other. The use of stable carbon (C), nitrogen (N), and sulphur (S) isotope analyses indicated that alternate benthic food sources native to the exposure lake were likely consumed in conjunction with the controlled diets. Stable isotope analysis of both wild and caged lake chub indicated that the N and S isotopic signatures decreased with increasing Se exposure, which was reflective of the differences in isotopic signatures of the food sources. Dose-dependent substitution of Se for S in methionine as a consequence of dietary Se exposure was illustrated by a decreasing whole-body S isotope signature and an increasing proportion of selenomethionine-like compounds (as measured by synchrotron-based X-ray absorption spectroscopy) with increasing Se exposure. Speciation results from caged lake chub indicated that Se substituted for S in methionine was the dominant Se species found in caged lake chub exposed to dietary sources of Se.

摘要

本研究评估了加拿大萨斯喀彻温省北部一座铀加工厂废水接收水域中,栖息的小型笼养鱼类体内硒(Se)的生物累积和营养传递的主要暴露途径。利用从参照湖泊中采集的野生天真湖拟鲤(Couesius plumbeus)进行了为期 21 天的笼养研究,将其分别置于参照湖和工厂排放口下游的暴露湖的笼中。以 10%体重/天的投喂率,投喂商业生产的大摇蚊(Chironomus spp.)饲料,饲料 Se 浓度分别为 1.5μgSe/g(干重)(基础-商业食物)和 5.5μgSe/g(在 Se 污染水中饲养)。在第 21 天,与投喂基础饲料的鱼相比,投喂 Se 污染饲料的湖拟鲤的全身 Se 浓度增加。与参照湖相比,来自高 Se 和基础饲料组的暴露湖笼养湖拟鲤的全身 Se 浓度均显著增加,且彼此之间无显著差异。稳定的碳(C)、氮(N)和硫(S)同位素分析表明,暴露湖中的替代底栖食物源可能与控制饮食一起被消耗。野生和笼养湖拟鲤的稳定同位素分析表明,随着 Se 暴露的增加,N 和 S 同位素特征值降低,这反映了食物源同位素特征值的差异。由于膳食 Se 暴露,甲硫氨酸中 Se 替代 S 的剂量依赖性,表现为全身 S 同位素特征值降低,以及更多的硒代蛋氨酸样化合物比例增加(通过基于同步加速器的 X 射线吸收光谱法测量)。笼养湖拟鲤的形态分析结果表明,暴露于膳食 Se 源的笼养湖拟鲤中发现的主要 Se 物种是 Se 替代甲硫氨酸的产物。

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