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Selenium incorporation in fish otoliths: effects of selenium and mercury from the water

机译:硒掺入鱼耳石中:水中硒和汞的影响

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To study fish migration using otolith microchemistry, it is important to understand the relationship between elements in the otoliths and in the surrounding water, including potential interactions with other elements. Selenium (Se) is a trace element with strong affinity for mercury (Hg). To test if Se is a reliable tracer for fish migration, the effects of dissolved Se and Hg concentrations on Se incorporation in fish otoliths were investigated experimentally. Brown bullheads (Ameiurus nebulosus) were reared in waters spiked with various concentrations of inorganic Se and Hg. Otolith Se:Ca increased nonlinearly with dissolved Se concentrations as there was no significant difference between fish reared in low and medium [Se] waters (Se:Ca for low [Se] waters, 7.64 x 10(-6); medium, 6.59 x 10(-6); high, 1.24 x 10(-5)). Our study also provided the first evidence of a negative effect of Hg on Se incorporation into otoliths (p = 0.01), a phenomenon most evident in high [Se] waters. Because of the influence of Hg, caution should be taken when inferring fish migration based on Se.
机译:要使用耳石微化学研究鱼类迁移,了解耳石和周围水中的元素之间的关系(包括与其他元素的潜在相互作用)非常重要。硒(Se)是对汞(Hg)具有强亲和力的微量元素。为了测试硒是否是鱼类迁移的可靠示踪剂,实验研究了溶解的硒和汞浓度对鱼耳石中硒掺入的影响。在掺有各种浓度的无机硒和汞的水中饲养棕头head(Ameiurus nebulosus)。耳石Se:Ca随溶解的Se浓度呈非线性增加,因为在低和中[Se]水域中饲养的鱼之间没有显着差异(低[Se]水域中Se:Ca为7.64 x 10(-6);中度为6.59 x 10(-6);高,1.24 x 10(-5))。我们的研究还提供了汞对硒掺入耳石中的负面影响的第一个证据(p = 0.01),这种现象在高[Se]水域中最为明显。由于汞的影响,在推断基于硒的鱼类迁移时应谨慎行事。

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