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三种海洋微藻对铜的吸收与内化:铜敏感型和耐铜型物种的比较

Uptake and internalisation of copper by three marine microalgae: comparison of copper-sensitive and copper-tolerant species.

作者信息

Levy Jacqueline L, Angel Brad M, Stauber Jennifer L, Poon Wing L, Simpson Stuart L, Cheng Shuk Han, Jolley Dianne F

机构信息

Centre for Environmental Contaminants Research, Land and Water, CSIRO, Private Mail Bag 7, Bangor, New South Wales 2234, Australia.

出版信息

Aquat Toxicol. 2008 Aug 29;89(2):82-93. doi: 10.1016/j.aquatox.2008.06.003. Epub 2008 Jun 8.

Abstract

Although it has been well established that different species of marine algae have different sensitivities to metals, our understanding of the physiological and biochemical basis for these differences is limited. This study investigated copper adsorption and internalisation in three algal species with differing sensitivities to copper. The diatom Phaeodactylum tricornutum was particularly sensitive to copper, with a 72-h IC50 (concentration of copper to inhibit growth rate by 50%) of 8.0 microg Cu L(-1), compared to the green algae Tetraselmis sp. (72-h IC50 47 microg Cu L(-1)) and Dunaliella tertiolecta (72-h IC50 530 microg Cu L(-1)). At these IC50 concentrations, Tetraselmis sp. had much higher intracellular copper (1.97+/-0.01 x 10(-13)g Cu cell(-1)) than P. tricornutum (0.23+/-0.19 x 10(-13)g Cu cell(-1)) and D. tertiolecta (0.59+/-0.05 x 10(-13)g Cu cell(-1)), suggesting that Tetraselmis sp. effectively detoxifies copper within the cell. By contrast, at the same external copper concentration (50 microg L(-1)), D. tertiolecta appears to better exclude copper than Tetraselmis sp. by having a slower copper internalisation rate and lower internal copper concentrations at equivalent extracellular concentrations. The results suggest that the use of internal copper concentrations and net uptake rates alone cannot explain differences in species-sensitivity for different algal species. Model prediction of copper toxicity to marine biota and understanding fundamental differences in species-sensitivity will require, not just an understanding of water quality parameters and copper-cell binding, but also further knowledge of cellular detoxification mechanisms.

摘要

尽管不同种类的海洋藻类对金属的敏感性差异已得到充分证实,但我们对这些差异的生理和生化基础的了解仍然有限。本研究调查了三种对铜敏感性不同的藻类对铜的吸附和内化情况。硅藻三角褐指藻对铜特别敏感,其72小时半数抑制浓度(IC50,即抑制生长率50%时的铜浓度)为8.0微克铜/升,相比之下,绿藻四爿藻(72小时IC50为47微克铜/升)和杜氏盐藻(72小时IC50为530微克铜/升)。在这些IC50浓度下,四爿藻的细胞内铜含量(1.97±0.01×10⁻¹³克铜/细胞)远高于三角褐指藻(0.23±0.19×10⁻¹³克铜/细胞)和杜氏盐藻(0.59±0.05×10⁻¹³克铜/细胞),这表明四爿藻能在细胞内有效解毒铜。相比之下,在相同的外部铜浓度(50微克/升)下,杜氏盐藻似乎比四爿藻更能有效排除铜,因为其铜内化速率较慢,在相同细胞外浓度下细胞内铜浓度较低。结果表明,仅使用细胞内铜浓度和净吸收速率无法解释不同藻类物种敏感性的差异。对海洋生物铜毒性的模型预测以及理解物种敏感性的根本差异,不仅需要了解水质参数和铜与细胞的结合情况,还需要进一步了解细胞解毒机制。

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