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使用单物种和多物种测试研究镍和铜对热带海洋及淡水微藻的影响。

The Effects of Nickel and Copper on Tropical Marine and Freshwater Microalgae Using Single and Multispecies Tests.

作者信息

McKnight Kitty S, Gissi Francesca, Adams Merrin S, Stone Sarah, Jolley Dianne, Stauber Jenny

机构信息

CSIRO Land and Water, Sydney, New South Wales, Australia.

CSIRO Oceans and Atmosphere, Sydney, New South Wales, Australia.

出版信息

Environ Toxicol Chem. 2023 Apr;42(4):901-913. doi: 10.1002/etc.5565. Epub 2023 Mar 10.

Abstract

Microalgae are key components of aquatic food chains and are known to be sensitive to a range of contaminants. Much of the available data on metal toxicity to microalgae have been derived from temperate single-species tests with temperate data used to supplement tropical toxicity data sets to derive guideline values. In the present study, we used single-species and multispecies tests to investigate the toxicity of nickel and copper to tropical freshwater and marine microalgae, including the free-swimming stage of Symbiodinium sp., a worldwide coral endosymbiont. Based on the 10% effect concentration (EC10) for growth rate, copper was two to four times more toxic than nickel to all species tested. The temperate strain of Ceratoneis closterium was eight to 10 times more sensitive to nickel than the two tropical strains. Freshwater Monoraphidium arcuatum was less sensitive to copper and nickel in the multispecies tests compared with the single-species tests (EC10 values increasing from 0.45 to 1.4 µg Cu/L and from 62 to 330 µg Ni/L). The Symbiodinium sp. was sensitive to copper (EC10 of 3.1 µg Cu/L) and less sensitive to nickel (EC50 >1600 µg Ni/L). This is an important contribution of data on the chronic toxicity of nickel to Symbiodinium sp. A key result from the present study was that three microalgal species had EC10 values below the current copper water quality guideline value for 95% species protection in slightly to moderately disturbed systems in Australia and New Zealand, indicating that they may not be adequately protected by the current copper guideline value. By contrast, toxicity of nickel to microalgae is unlikely to occur at exposure concentrations typically found in fresh and marine waters. Environ Toxicol Chem 2023;42:901-913. © 2023 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

微藻是水生食物链的关键组成部分,已知对多种污染物敏感。目前关于金属对微藻毒性的许多可用数据来自温带单物种试验,其中温带数据用于补充热带毒性数据集以得出指导值。在本研究中,我们使用单物种和多物种试验来研究镍和铜对热带淡水和海洋微藻的毒性,包括全球珊瑚内共生体虫黄藻的自由游动阶段。基于生长率的10%效应浓度(EC10),铜对所有测试物种的毒性比镍高两到四倍。温带的新月菱形藻菌株对镍的敏感性比两种热带菌株高八到十倍。在多物种试验中,淡水弓形单歧藻对铜和镍的敏感性低于单物种试验(EC10值从0.45增加到1.4μg Cu/L,从62增加到330μg Ni/L)。虫黄藻对铜敏感(EC10为3.1μg Cu/L),对镍不太敏感(EC50>1600μg Ni/L)。这是镍对虫黄藻慢性毒性数据的一项重要贡献。本研究的一个关键结果是,三种微藻物种的EC10值低于澳大利亚和新西兰轻度至中度受干扰系统中95%物种保护的现行铜水质指导值,这表明它们可能未受到现行铜指导值的充分保护。相比之下,在淡水和海水中通常发现的暴露浓度下,镍对微藻不太可能产生毒性。《环境毒理学与化学》2023年;42:901 - 913。© 2023作者。《环境毒理学与化学》由Wiley Periodicals LLC代表SETAC出版。

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