Matrix in River Water, Sediments, and Biofilms Mitigates Mercury Toxicity to Medaka (Oryzias Latipes)

青鳉属 生物利用度 环境化学 甲基汞 毒性 Mercury(编程语言) 化学 环境毒理学 氧化应激 基质(化学分析) 生态毒性 生态毒理学 生物累积 生物 生物化学 色谱法 药理学 基因 有机化学 程序设计语言 计算机科学
作者
Min Jing,Jing Lin,Junyan Tao,Haiyu Yan,Jen‐How Huang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:57 (50): 21337-21347 被引量:2
标识
DOI:10.1021/acs.est.3c05408
摘要

Impacts of an environmental matrix on mercury (Hg) bioavailability and toxicity to medaka (Oryzias latipes) were investigated in matrix-free controls and treatments with a stepwise increased environmental matrix of river water, sediments, and biofilms. Generally, river water enhanced but the presence of sediments and biofilms reduced Hg bioavailability to medaka up to 105 times, so that Hgtotal concentrations/amounts among different environmental media cannot mirror Hg availability and toxicity to medaka. On average, 12.9 and 12.4% of Hg in medaka was, respectively, methylated to methylmercury (MeHg) in matrix-free and -containing treatments, indicating no influence of the environmental matrix on Hg methylation in medaka. All oxidative stress, inflammatory injury, and malformation parameters correlated strongly and significantly with Hgtotal and MeHg concentrations in medaka, notably with steeper slopes in matrix-free controls than in matrix-containing treatments, highlighting that the environmental matrix mitigated Hg and MeHg toxicity to medaka. Moreover, oxidative stress was more strongly mitigated than inflammatory injury according to the stronger decreases of the regression line slopes from matrix-free to -containing treatments. Here, we have newly identified that the potential of the environmental matrix to decrease Hg bioavailability and mitigate Hg toxicity to fish together could buffer Hg ecotoxicity in the aquatic environment.
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