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Fish eyes and brain as primary targets for mercury accumulation : a new insight on environmental risk assessment

机译:鱼眼和大脑是汞累积的主要目标:环境风险评估的新见解

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摘要

Fish eyes and brain are highly susceptible to environmental Hg exposure but this issue is still scarcely investigated, mainly regarding methylmercury (MeHg) accumulation. Yet, Hg levels in fish lens have not been previously examined under field conditions. Total Hg (tHg), MeHg and inorganic Hg (iHg) levels were assessed in the brain, eye wall and lens of the golden grey mullet (Liza aurata) from an Hg contaminated area, both in winter and summer, together with water and sediment levels. Sampling was performed at Aveiro lagoon (Portugal) where a confined area (LAR) is severely contaminated by Hg. Fish brain, eye wall and lens accumulated higher levels of tHg, MeHg and iHg at LAR than the reference site, reflecting faithfully environmental spatial differences. The brain and eye wall responded also to the winter-summer changes found in water and sediment, accumulating higher levels of MeHg (and tHg) in winter. Contrarily, lens was unable to reflect seasonal changes, probably due to its composition and structural stability over time. The three neurosensory structures accumulated preferentially MeHg than iHg (MeHg was higher than 77% of tHg). Lens exhibited a higher retention capacity of MeHg (mean around 1 µg g(-1) at LAR), accumulating higher levels than the other two tissues. Interestingly, MeHg and iHg levels were significantly correlated for the brain and eye wall but poorly associated within the two analysed eye components. The high levels of MeHg found in the brain, eye wall and lens could compromise their functions and this needs further research.
机译:鱼眼和大脑对环境汞的暴露高度敏感,但仍很少对此问题进行调查,主要是关于甲基汞(MeHg)的积累。但是,以前尚未在野外条件下检查鱼眼镜中的汞含量。在冬季和夏季,对来自汞污染地区的金灰鱼(Liza aurata)的大脑,眼壁和晶状体中的总汞(tHg),甲基汞和无机汞(iHg)进行了评估,同时还对水和沉积物进行了评估水平。在阿威罗泻湖(葡萄牙)进行采样,该地区的受限区域(LAR)受到汞的严重污染。鱼脑,眼壁和晶状体在LAR处积累的tHg,MeHg和iHg含量高于参考部位,忠实地反映了环境空间差异。脑和眼壁也对水和沉积物中的冬夏变化做出反应,在冬季积聚了较高的MeHg(和tHg)。相反,晶状体不能反映季节变化,这可能是由于其随时间变化的成分和结构稳定性。三个神经感觉结构优先积累的MeHg比iHg(MeHg高于tHg的77%)。晶状体表现出更高的MeHg保留能力(在LAR处平均约为1 µg g(-1)),其积累水平高于其他两个组织。有趣的是,MeHg和iHg水平与大脑和眼壁显着相关,但在两个分析的眼睛成分中却不很相关。在大脑,眼壁和晶状体中发现的高水平的甲基汞可能会损害其功能,这需要进一步研究。

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