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盐度、溶解有机碳和铜对黑鲷死亡率、渗透调节和铜生物积累的综合影响。

Comprehensive effects of salinity, dissolved organic carbon and copper on mortality, osmotic regulation and bioaccumulation of copper in Oryzias melastigma.

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environment Sciences, Beijing 100012, China; College of Water Sciences, Beijing Normal University, Beijing 100875, China; State Environmental Protection Key Laboratory of Estuarine and Coastal Environment, Chinese Research Academy of Environment Sciences, Beijing 100012, China.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environment Sciences, Beijing 100012, China; State Environmental Protection Key Laboratory of Estuarine and Coastal Environment, Chinese Research Academy of Environment Sciences, Beijing 100012, China.

出版信息

Sci Total Environ. 2024 Jun 1;927:172289. doi: 10.1016/j.scitotenv.2024.172289. Epub 2024 Apr 8.

Abstract

Cu, as an essential and toxic element, has gained widespread attention. Both salinity and dissolved organic carbon (DOC) are known to influence Cu toxicity in marine organisms. However, the intricate interplay between these factors and their specific influence on Cu toxicity remains ambiguous. So, this study conducted toxicity tests of Cu on Oryzias melastigma. The experiments involved three salinity levels (10, 20, and 30 ppt) and three DOC levels (0, 1, and 5 mg/L) to comprehensively investigate the underlying mechanisms of toxicity. The complex toxic effects were analyzed by mortality, NKA activity, net Na flux and Cu bioaccumulation in O. melastigma. The results indicate that Cu toxicity is notably influenced by both DOC and salinity. Interestingly, the discernible variation in Cu toxicity across different DOC levels diminishes as salinity levels increase. The presence of DOC enhances the impact of salinity on Cu toxicity, especially at higher Cu concentrations. Additionally, Visual MINTEQ was utilized to elucidate the chemical composition of Cu, revealing that DOC had a significant impact on Cu forms. Furthermore, we observed that fluctuations in salinity lead to the inhibition of Na/K-ATPase (NKA) activity, subsequently hindering the inflow of Na. The effects of salinity and DOC on the bioaccumulation of copper were not significant. The influence of salinity on Cu toxicity is mainly through its effect on the osmotic regulation and biophysiology of O. melastigma. Additionally, DOC plays a crucial role in the different forms of Cu. Moreover, DOC-Cu complexes can be utilized by organisms. This study contributes to understanding the mechanism of copper's biological toxicity in intricate marine environments and serves as a valuable reference for developing marine water quality criteria for Cu.

摘要

铜作为一种必需的有毒元素,引起了广泛关注。盐度和溶解有机碳(DOC)都被认为会影响海洋生物的铜毒性。然而,这些因素之间的复杂相互作用及其对铜毒性的具体影响仍不清楚。因此,本研究对 Oryzias melastigma 进行了铜毒性测试。实验涉及三个盐度水平(10、20 和 30 ppt)和三个 DOC 水平(0、1 和 5 mg/L),以全面研究毒性的潜在机制。通过死亡率、NKA 活性、净 Na 通量和 O. melastigma 中的 Cu 生物积累来分析复杂的毒性效应。结果表明,DOC 和盐度都显著影响铜毒性。有趣的是,随着盐度的增加,不同 DOC 水平下铜毒性的明显差异减小。DOC 的存在增强了盐度对铜毒性的影响,尤其是在较高的 Cu 浓度下。此外,还利用 Visual MINTEQ 阐明了 Cu 的化学组成,发现 DOC 对 Cu 形态有显著影响。此外,我们观察到盐度的波动会抑制 Na/K-ATPase(NKA)活性,从而阻碍 Na 的流入。盐度和 DOC 对铜生物积累的影响并不显著。盐度对铜毒性的影响主要是通过其对 O. melastigma 渗透调节和生物生理学的影响。此外,DOC 在铜的不同形态中起着关键作用。此外,DOC-Cu 配合物可以被生物体利用。本研究有助于理解复杂海洋环境中铜的生物毒性的机制,并为制定海洋水质标准提供了有价值的参考。铜。

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