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南极大洋冷边远地区海洋生物中的微量元素营养动力学。

Trophodynamics of trace elements in marine organisms from cold and remote regions of southern hemisphere.

机构信息

Department of Animal Science, Facultad de Ciencias Veterinarias, Universidad de Concepción, Av. Vicente Méndez 595, Chillán, Chile.

Department of Animal Science, Facultad de Ciencias Veterinarias, Universidad de Concepción, Av. Vicente Méndez 595, Chillán, Chile; GEMA, Center for Genomics, Ecology & Environment, Universidad Mayor, Camino La Pirámide, 5750, Huechuraba, Santiago, Chile.

出版信息

Environ Res. 2022 Apr 15;206:112421. doi: 10.1016/j.envres.2021.112421. Epub 2021 Nov 25.

Abstract

Trace metals bioaccumulate in aquatic organisms and some of them biomagnify through food webs, posing a threat to the organisms or their human consumers. Although the trophodynamics of many trace metals is well known in the northern hemisphere, much less is known about metals in aquatic food webs from cold and remote coastal zones of the southern hemisphere. To fill this gap, we investigated the trophodynamics of Al, Co, Cr, Li, Mo, Ni, Sr, and V, which were measured in marine macroinvertebrates and fishes from inshore and offshore locations in each of the Chilean Patagonia and the Antarctic Peninsula area. In Patagonia, there was biodilution of these metals across the whole food web, while biomagnification of Li and Ni was significantly found across the lower food web at the offshore site. In Antarctica, significant biodilution of Al, Li, Ni, Mo, Sr and V occurred through the whole food web for the inshore site, but no tendency (biodilution or biomagnification) was found (p > 0.05) across the organisms at lower trophic levels for the offshore site. Our data suggest that the geographic location and species influences the trophodynamics of these trace elements and expand our understanding of metal fate in remote locations of the southern hemisphere.

摘要

痕量金属在水生生物中生物累积,其中一些通过食物网发生生物放大作用,对生物体或其人类消费者构成威胁。尽管许多痕量金属的营养动态在北半球已广为人知,但对南半球寒冷和偏远沿海地区水生食物网中的金属却知之甚少。为了填补这一空白,我们调查了在智利巴塔哥尼亚和南极半岛地区近海和远海地点的海洋大型无脊椎动物和鱼类中测量的 Al、Co、Cr、Li、Mo、Ni、Sr 和 V 的营养动态。在巴塔哥尼亚,整个食物网中这些金属的生物稀释作用明显,而 Li 和 Ni 的生物放大作用在远海的较低食物网中显著。在南极洲,近海地点整个食物网中 Al、Li、Ni、Mo、Sr 和 V 的生物稀释作用明显,但远海地点较低营养级别的生物体内没有发现任何趋势(生物稀释或生物放大)(p>0.05)。我们的数据表明,地理位置和物种影响这些痕量元素的营养动态,并扩大了我们对南半球偏远地区金属命运的理解。

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