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四种海洋微藻对 2,2',4,4'-四溴二苯醚(BDE-47)的吸收和生物转化。

Uptake and biotransformation of 2,2',4,4'-tetrabromodiphenyl ether (BDE-47) in four marine microalgae species.

机构信息

Department of Biology, Hong Kong Baptist University, Hong Kong.

School of Biological Sciences, University of Hong Kong, Hong Kong.

出版信息

Sci Rep. 2017 Mar 13;7:44263. doi: 10.1038/srep44263.

Abstract

Hydroxylated- and methoxylated- polybrominated diphenyl ethers (OH-PBDEs and MeO-PBDEs) are more toxic than PBDEs and occur widely in the marine environment, and yet their origins remain controversial. In this study, four species of microalgae (Isochrysis galbana, Prorocentrum minimum, Skeletonema grethae and Thalassiosira pseudonana) were exposed to BDE-47, which is synthetic and is the predominant congener of PBDEs in the environment. By chemical analysis after incubation of 2 to 6 days, the efficiency of uptake of BDE-47 and, more importantly, the potential of undergoing biotransformation to form OH-PBDEs and MeO-PBDEs by the microalgae were investigated. Growth rates of these axenic microalgae were not affected upon exposure to environmentally relevant concentrations (0.2-20 μg BDE-47 L), and accumulation ranged from 0.772 ± 0.092 μg BDE-47 g lipid to 215 ± 54 μg BDE-47 g lipid within 2 days. Debromination of BDE-47 and formation of BDE-28 occurred in all microalgae species (0.01 to 0.87%), but biotransformation to OH-PBDEs was only found in I. galbana upon exposure to extremely high concentration. The results of this study showed that biotransformation of microalgae species is unlikely an explanation for the OH-PBDEs and MeO-PBDEs found in the marine environment.

摘要

羟基化和甲氧基化多溴二苯醚(OH-PBDEs 和 MeO-PBDEs)比多溴二苯醚(PBDEs)毒性更大,广泛存在于海洋环境中,但它们的来源仍存在争议。在本研究中,四种微藻(新月菱形藻、微小原甲藻、中肋骨条藻和拟塔胞藻)暴露于 BDE-47 中,BDE-47 是合成的,是环境中 PBDEs 的主要同系物。通过孵育 2 至 6 天后的化学分析,研究了微藻对 BDE-47 的吸收效率,更重要的是,研究了它们将 BDE-47 进行生物转化形成 OH-PBDEs 和 MeO-PBDEs 的潜力。这些无菌微藻的生长速度在暴露于环境相关浓度(0.2-20μg BDE-47 L)时没有受到影响,在 2 天内的积累范围从 0.772±0.092μg BDE-47 g 脂到 215±54μg BDE-47 g 脂。BDE-47 的脱溴和 BDE-28 的形成发生在所有微藻物种中(0.01 至 0.87%),但只有在暴露于极高浓度时,I. galbana 才会发生向 OH-PBDEs 的生物转化。本研究结果表明,微藻物种的生物转化不太可能是海洋环境中发现的 OH-PBDEs 和 MeO-PBDEs 的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0986/5347160/b72c1f15d256/srep44263-f1.jpg

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