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Mixtures of Cu, Ni, and Zn Act Mostly Noninteractively on Pseudokirchneriella subcapitata Growth in Natural Waters

机译:铜,镍和锌的混合物在天然水域中主要以非交互方式作用于次生假单胞菌

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Freshwater biota are usually exposed to mixtures of different metals in the environment, which raises concern because risk-assessment procedures for metals are still mainly based on single-metal toxicity. Because microalgae are primary producers and therefore at the base of the food web, it is of utmost importance to understand the effects of metal mixtures on these organisms. Most studies that have investigated the combined interactive effects of mixtures on microalgae performed tests in only one specific water. The objective of the present study was to test if combined effects of mixtures to Pseudokirchneriella subcapitata were the same or different across natural waters showing diverse water-chemistry characteristics. This was done by performing experiments with ternary Cu-Ni-Zn mixtures in 3 natural waters and with binary Cu-Ni mixtures in 5 natural waters. We showed that the ternary mixture acted noninteractively on algal growth, except in one water in which the mixture acted antagonistically. We suggest that a low-cationic competition situation in the latter water could be the reason for the antagonistic interaction between the metals. On the other hand, the binary mixture acted noninteractively on algal growth in all tested waters. We showed that both the concentration addition and independent action models can serve as accurate models for toxicity of ternary Cu-Ni-Zn and binary Cu-Ni mixtures to P. subcapitata in most cases and as protective models in all cases. In addition, we developed a metal mixture bioavailability model, by combining the independent action model and the single-metal bioavailability models, that can be used to predict Cu-Ni-Zn and Cu-Ni toxicity to P. subcapitata as a function of metal concentration and water characteristics. (C) 2017 SETAC
机译:淡水生物区系通常在环境中暴露于不同金属的混合物,这引起了人们的关注,因为金属的风险评估程序仍主要基于单金属毒性。由于微藻是主要生产者,因此是食物网的基础,因此了解金属混合物对这些生物的影响至关重要。大多数研究混合物对微藻的综合相互作用的研究仅在一种特定水中进行了测试。本研究的目的是测试在天然水域中表现出不同水化学特征的混合物对假单胞菌的综合作用是否相同或不同。这是通过在3种天然水中的三元Cu-Ni-Zn混合物和在5种天然水中的二元Cu-Ni混合物进行实验来完成的。我们表明,三元混合物对藻类的生长起非交互作用,除了在一种水中,该混合物具有拮抗作用。我们建议在后者水中低阳离子竞争的情况可能是金属之间产生拮抗作用的原因。另一方面,在所有测试水中,二元混合物对藻类的生长均非交互作用。我们表明,在大多数情况下,浓度添加模型和独立作用模型均可以作为三元Cu-Ni-Zn和二元Cu-Ni混合物对小黑头病菌毒性的精确模型,并且在所有情况下均可以作为保护模型。此外,我们通过将独立作用模型和单金属生物利用度模型相结合,开发了金属混合物生物利用度模型,该模型可用于预测Cu-Ni-Zn和Cu-Ni对金属次生拟南芥的毒性。浓度和水的特性。 (C)2017年SETAC

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