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Contamination by trace metals and their trophic transfer to the biota in a Mediterranean coastal system affected by gull guano

机译:受鸥鸟粪影响的地中海沿岸系统中微量金属的污染及其营养转移到生物区系

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Transitional environments are vulnerable interface systems, ecologically connected with adjacent systems by several biotic or abiotic flows. The coastal system of the Marinello ponds (Tyrrhenian Sea, Italy) is affected by a colony of yellow-legged gulls Larus michahellis (Naumann, 1840), resident on the cliff beside the ponds. To investigate the role of the gull colony as a potential source of allochthonous non-essential trace metals (As, Cd, Pb and total mercury, THg) and the consequent metal trophic transfer to the biota in the ponds, we collected guano, surface sediment and biota from 3 ponds with different levels of avian input. The highest concentrations were observed in guano and surface sediment of the seabird-influenced pond, suggesting that trace metals have undergone biotransport mediated by seabirds. To test for biomagnification, the trophic pathways of the ponds were first identified by δ~(13)C and δ~(15)N, revealing the existence of important differences in accordance with the importance of guano input. Trophic transfer along the food chains was metal-specific. Only THg was found to biomagnify based on significant positive linear regression of logTHg versus δ~(15)N in organisms. In contrast, As, Cd and Pd significantly biodiluted through the food chains. Regression line slopes were homogeneous among ponds, suggesting that metal transfer along food chains occurs independently of the background contamination levels. Our findings provide new insights about the role of seabirds in contaminant dynamics in transitional environments in light of the high abundance of seabirds and the current lack of knowledge about seabird-mediated ecological processes in the Mediterranean area.
机译:过渡环境是易受攻击的接口系统,通过几种生物或非生物流与相邻系统生态连接。 Marinello池塘(意大利第勒尼海)的沿海系统受到一群黄腿鸥Larus michahellis(Naumann,1840)的影响,栖息在池塘旁的悬崖上。为了研究海鸥菌落作为异源非必需微量金属(As,Cd,Pb和总汞,THg)的潜在来源以及随之而来的金属营养转移到池塘中生物区系中的作用,我们收集了鸟粪,表层沉积物和3个池塘中不同禽类输入水平的生物群。在受海鸟影响的池塘的鸟粪和表层沉积物中观察到最高浓度,表明痕量金属已经历了海鸟介导的生物转运。为了测试生物放大倍数,首先用δ〜(13)C和δ〜(15)N识别池塘的营养路径,揭示出根据鸟粪输入的重要性存在重要差异。沿着食物链的营养传递是特定于金属的。根据生物体内logTHg对δ〜(15)N的显着正线性回归,仅发现THg具有生物放大作用。相比之下,砷,镉和钯通过食物链被显着生物稀释。池塘之间的回归线斜率是均匀的,这表明沿食物链的金属转移与背景污染水平无关。鉴于海鸟数量众多以及目前对地中海地区海鸟介导的生态过程缺乏了解,我们的发现为过渡环境中海鸟在污染物动力学中的作用提供了新的见解。

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