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金属混合物经水相暴露后对海葵(Aiptasia pallida)的金属积累和亚致死效应。

Metal accumulation and sublethal effects in the sea anemone, Aiptasia pallida, after waterborne exposure to metal mixtures.

机构信息

Department of Biology, Valdosta State University, Valdosta, GA, USA.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2013 Sep;158(3):150-8. doi: 10.1016/j.cbpc.2013.07.001. Epub 2013 Jul 9.

Abstract

The marine environment is subjected to contamination by a complex mixture of metals from various anthropogenic sources. Measuring the biological responses of organisms to a complex mixture of metals allows for examination of metal-specific responses in an environmentally realistic exposure scenario. To address this issue, the sea anemone, Aiptasia pallida was exposed to a control and a metal mixture (copper, zinc, nickel, and cadmium) at three exposure levels (10, 50, and 100 μg/L) for 7 days. Anemones were then transferred to metal-free seawater for an additional 7 days after the metal exposure to assess metal depuration and recovery. Metal accumulation, activity of the enzymes catalase, glutathione reductase, and carbonic anhydrase, as well as, cell density of the symbiotic zooxanthellae were measured over 14 days. Metal accumulation in A. pallida occurred in a concentration dependent manner over the 7-day exposure period. Altered enzyme activity and tentacle retraction of the host, as well as decreased zooxanthellae cell density were observed responses over the 7 days, after exposure to a metal concentration as low as 10 μg/L. Metal depuration and physiological recovery were dependent on both the metal and the exposure concentration. Understanding how A. pallida and their symbionts are affected by metal exposures in the laboratory may allow better understanding about the responses of symbiotic cnidarians in metal polluted aquatic environments.

摘要

海洋环境受到各种人为来源的金属的复杂混合物的污染。测量生物体对金属复杂混合物的生物反应可以在环境现实暴露场景中检查金属的特异性反应。为了解决这个问题,将海葵 Aiptasia pallida 暴露于对照和金属混合物(铜、锌、镍和镉)中,暴露水平为 3 个(10、50 和 100μg/L),持续 7 天。在金属暴露后,将海葵转移到无金属海水中 7 天,以评估金属净化和恢复情况。在 14 天内测量了金属积累、过氧化氢酶、谷胱甘肽还原酶和碳酸酐酶的活性以及共生虫黄藻的细胞密度。在 7 天的暴露期间,A. pallida 中的金属积累呈浓度依赖性方式发生。在暴露于低至 10μg/L 的金属浓度后,观察到宿主的酶活性改变、触须收缩以及共生虫黄藻细胞密度降低等反应。金属净化和生理恢复取决于金属和暴露浓度。了解 A. pallida 及其共生体如何在实验室中受到金属暴露的影响,可能有助于更好地了解金属污染水生环境中共生刺胞动物的反应。

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