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在软水中,日粮钠对暴露于日粮和水体中铜的幼年虹鳟鱼铜积累的影响。

The influence of dietary Na on Cu accumulation in juvenile rainbow trout exposed to combined dietary and waterborne Cu in soft water.

作者信息

Kjoss Victoria A, Grosell Martin, Wood Chris M

机构信息

Department of Biology, McMaster University, 1280 Main St. West, Hamilton, Ontario L8S 4K1, Canada.

出版信息

Arch Environ Contam Toxicol. 2005 Nov;49(4):520-7. doi: 10.1007/s00244-004-0243-5. Epub 2005 Sep 30.

Abstract

Fish inhabiting metal-contaminated environments can take up metals such as Cu via the gills as well as via the gut. Previous research on rainbow trout (Oncorhynchus mykiss) has indicated that dietary Na can reduce the accumulation of waterborne Cu; however, in hard water, dietary Na does not reduce the accumulation of dietary Cu. In this study, we exposed juvenile rainbow trout in soft water with slightly elevated [Cu] for 28 days to control or high levels of dietary Cu (6 and 580 microg Cu/g food, respectively) at low (1.5%), intermediate (3%), or high (4.5%) levels of dietary Na, for a total of six experimental groups. A separate gastrointestinal sampling experiment demonstrated that these levels resulted in moderately elevated Na concentrations in the gastrointestinal fluid, which declined between 6 h and 12 h post-feeding. Growth and condition indices were not affected by the dietary Cu and Na exposure. Among the control dietary Cu groups, those that received the highest amount of dietary Na had significantly higher whole-body [Cu] on days 18 and 28. In contrast, among the high-Cu groups, fish that were fed the highest amount of Na tended to have significantly lower whole-body [Cu] on days 9 and 18. Tissue Na concentrations did not differ among any of the groups, and unidirectional Na flux measurements demonstrated that Na homeostasis was not impaired by dietary or waterborne Cu. Our results suggest that elevated dietary Na stimulates Cu uptake via the gut under low-Cu conditions, thereby increasing whole-body [Cu], whereas under Cu-loaded conditions, downregulation of Cu uptake at the gills, and/or competitive inhibition of gut Cu uptake as a result of increased dietary Na, leads to decreased whole-body [Cu].

摘要

栖息在金属污染环境中的鱼类可以通过鳃以及肠道吸收铜等金属。先前对虹鳟(Oncorhynchus mykiss)的研究表明,日粮中的钠可以减少水中铜的积累;然而,在硬水中,日粮中的钠并不能减少日粮中铜的积累。在本研究中,我们将幼年虹鳟暴露于软水(铜含量略有升高)中28天,分别给予低(1.5%)、中(3%)或高(4.5%)水平的日粮钠,同时设置对照或高水平的日粮铜(分别为6和580微克铜/克食物),共六个实验组。一项单独的胃肠取样实验表明,这些水平导致胃肠液中的钠浓度适度升高,在喂食后6小时至12小时之间下降。生长和状况指数不受日粮铜和钠暴露的影响。在对照日粮铜组中,摄入最高量日粮钠的组在第18天和第28天的全身铜含量显著更高。相比之下,在高铜组中,喂食最高量钠的鱼在第9天和第18天的全身铜含量往往显著更低。各实验组之间的组织钠浓度没有差异,单向钠通量测量表明,日粮或水中的铜不会损害钠的体内平衡。我们的结果表明,在低铜条件下,日粮中钠的增加会刺激肠道对铜的吸收,从而增加全身铜含量,而在铜负荷条件下,鳃对铜吸收的下调和/或日粮钠增加导致的肠道铜吸收的竞争性抑制会导致全身铜含量降低。

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