Toro-Valdivieso Constanza, Jugdaohsingh Ravin, Powell Jonathan J, Hoffman Joseph I, Forcada Jaume, Moore Charles, Blacklaws Barbara
Department of Veterinary Medicine, University of Cambridge, Madingley Rd, Cambridge CB3 0ES, UK.
Biominerals Research Laboratory, Department of Veterinary Medicine, University of Cambridge, Madingley Rd, Cambridge CB3 0ES, UK.
R Soc Open Sci. 2023 Mar 29;10(3):221237. doi: 10.1098/rsos.221237. eCollection 2023 Mar.
Heavy metals, including mercury (Hg) and cadmium (Cd), occur naturally or anthropogenically and are considered toxic to the environment and human health. However, studies on heavy metal contamination focus on locations close to industrialized settlements, while isolated environments with little human activity are often ignored due to perceived low risk. This study reports heavy metal exposure in Juan Fernandez fur seals (JFFS), a marine mammal endemic to an isolated and relatively pristine archipelago off the coast of Chile. We found exceptionally high concentrations of Cd and Hg in JFFS faeces. Indeed, they are among the highest reported for any mammalian species. Following analysis of their prey, we concluded that diet is the most likely source of Cd contamination in JFFS. Furthermore, Cd appears to be absorbed and incorporated into JFFS bones. However, it was not associated with mineral changes observed in other species, suggesting Cd tolerance/adaptations in JFFS bones. The high levels of silicon found in JFFS bones may counteract the effects of Cd. These findings are relevant to biomedical research, food security and the treatment of heavy metal contamination. It also contributes to understanding the ecological role of JFFS and highlights the need for surveillance of apparently pristine environments.
包括汞(Hg)和镉(Cd)在内的重金属,以自然或人为方式存在,被认为对环境和人类健康有毒害作用。然而,关于重金属污染的研究主要集中在工业化聚居区附近,而人类活动较少的偏远环境由于被认为风险较低,常常被忽视。本研究报告了胡安·费尔南德斯海狗(JFFS)体内的重金属暴露情况,这是一种生活在智利海岸外一个偏远且相对原始的群岛上的特有海洋哺乳动物。我们在JFFS的粪便中发现了异常高浓度的镉和汞。事实上,它们是所有哺乳动物物种中报告的最高浓度之一。在对其猎物进行分析后,我们得出结论,饮食是JFFS中镉污染最可能的来源。此外,镉似乎被吸收并融入了JFFS的骨骼。然而,它与在其他物种中观察到的矿物质变化无关,这表明JFFS的骨骼对镉具有耐受性/适应性。在JFFS骨骼中发现的高含量硅可能会抵消镉的影响。这些发现与生物医学研究、食品安全和重金属污染治理相关。它也有助于理解JFFS的生态作用,并强调了对看似原始的环境进行监测的必要性。