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Evidence for enhanced bioavailability of trace elements in the marine ecosystem of Deception Island, a volcano in Antarctica

机译:南极洲火山岛欺骗岛海洋生态系统中微量元素生物利用度提高的证据

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This study assessed whether trace elements present at Deception Island, an active submarine volcano in the Antarctic Peninsula, show enhanced biological availability to the local marine community. Using a weak acid extraction method to dissolve organic material and leach associated but not constitutive trace elements of sediments, fifteen elements were measured from seafloor sediment, seawater particulates, and tissues of benthic (bivalves, brittle-stars, sea urchins) and pelagic (demersal and pelagic fishes, krill) organisms collected in the flooded caldera. The highest element concentrations were associated with seafloor sediment, the lowest with seawater particulates and organism tissues. In the case of Ag and Se, concentrations were highest in organism tissue, indicating contamination through the food chain and biomagnification of those elements. The elements Al, Fe, Mn, Sr, Ti, and to a lesser extent Zn, were the most concentrated of the trace elements for all sample types. This indicates that the whole ecosystem of Deception Island is contaminated with trace elements from local geother-mal activity, which is also reflected in the pattern of element contamination in organisms. Accordingly, element concentrations were higher in organisms collected at Deception Island compared to those from the neighboring non-active volcanic King George Island, suggesting that volcanic activity enhances bioavailability of trace elements to marine organisms. Trace element concentrations were highest in digestive tissue of organisms, suggesting that elements at Deception Island are incorporated into the marine food web mainly through a dietary route.
机译:这项研究评估了南极半岛一个活跃的海底火山欺骗岛上存在的微量元素是否显示出当地海洋生物的生物利用度提高。使用弱酸提取方法溶解有机物质并浸出与沉积物相关但不是组成性微量元素的方法,从海底沉积物,海水颗粒,底栖生物(双壳类,脆性恒星,海胆)和远洋物种(底栖动物)的组织中测量了15种元素和浮游鱼类,磷虾)生物收集在被淹没的破火山口中。最高元素浓度与海底沉积物有关,最低元素与海水颗粒和生物组织有关。在银和硒的情况下,生物组织中的浓度最高,表明通过食物链的污染和这些元素的生物放大作用。对于所有类型的样品,元素Al,Fe,Mn,Sr,Ti和少量Zn都是最集中的。这表明欺骗岛的整个生态系统都受到了当地地热活动的痕量元素的污染,这也反映在生物中元素的污染方式上。因此,在欺骗岛收集的生物中的元素浓度高于从附近的非活性火山金乔治岛收集的元素浓度,这表明火山活动增强了痕量元素对海洋生物的生物利用度。在生物的消化组织中,微量元素的浓度最高,这表明欺骗岛的元素主要通过饮食途径被纳入海洋食物网。

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