首页> 外文期刊>Environmental toxicology and chemistry >METAL-PHYTOPLANKTON INTERACTIONS: MODELING THE EFFECT OF COMPETING IONS (H~+, Ca~(2+), AND Mg~(2+)) ON URANIUM UPTAKE
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METAL-PHYTOPLANKTON INTERACTIONS: MODELING THE EFFECT OF COMPETING IONS (H~+, Ca~(2+), AND Mg~(2+)) ON URANIUM UPTAKE

机译:金属与浮游植物的相互作用:模拟竞争离子(H〜+,Ca〜(2+)和Mg〜(2+))对铀吸收的影响

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摘要

The influence of pH and hardness cation concentrations on uranium uptake by a green alga, Chlamydomonas reinhardtii, was investigated through short-term exposure experiments. Uranium uptake at pH 5 and at pH 7 was measured over a large concentration range (0.020-2.0 μM ~(233)U), and the effects of hardness cations were studied over environmentally pertinent concentration ranges (~0.05-2 μM) at a constant uranium concentration (0.25 μM). Calcium and magnesium inhibited uranyl uptake, but the influence of pH was more complex than anticipated. The equilibrium biotic ligand paradigm of metal bioavailability predicts that two distinct phenomena of antipathetic effect will influence uranium availability as pH is varied. Increasing pH reduces the concentration of protons, thus reducing competition for the physiologically active sites, whereas the concomitant complexation by carbonates and hydroxides reduces the free uranyl activity. Maximum uranium uptake rates observed at pH 7, however, were far greater than those observed at pH 5, suggesting a noncompetitive inhibition of metal transport by protons. Modeling on the basis of our results strongly suggests that cells grown and exposed at pH 7 have either a greater internalization rate of uranyl or a higher number of transport sites compared with cells grown and exposed at pH 5. We thus conclude that the simple proton-metal competition described by the biotic ligand model cannot successfully depict uranium-algae interactions. The development of an appropriate model incorporating the influence of protons to predict metal uptake and toxicity will be more challenging than anticipated.
机译:通过短期暴露实验,研究了pH和硬度阳离子浓度对绿藻莱茵衣藻(Chlamydomonas reinhardtii)吸收铀的影响。在较大的浓度范围(0.020-2.0μM〜(233)U)下测量了pH 5和pH 7下的铀吸收量,并在环境相关浓度范围(〜0.05-2μM)下研究了硬阳离子的影响。恒定铀浓度(0.25μM)。钙和镁抑制了铀的吸收,但pH的影响比预期的要复杂。金属生物利用度的平衡生物配体范例预测,随着pH值的变化,两种不同的抗病作用现象将影响铀的利用。 pH值的增加会降低质子的浓度,从而降低对生理活性位点的竞争,而碳酸盐和氢氧化物的伴随络合会降低游离的铀酰活性。然而,在pH值为7时观察到的最大铀吸收速率远大于pH值为5时观察到的最大铀吸收速率,这表明质子对金属传输的非竞争性抑制。根据我们的研究结果进行的建模强烈表明,与在pH 5下生长和暴露的细胞相比,在pH 7下生长和暴露的细胞具有更高的铀酰内在化率或更高的转运位点数量。我们得出结论。生物配体模型描述的金属竞争无法成功描述铀-藻类的相互作用。结合质子影响来预测金属吸收和毒性的合适模型的开发将比预期的更具挑战性。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2007年第2期|242-248|共7页
  • 作者单位

    Institut National de la Recherche Scientifique-Eau, Terre et Environnement, Universite du Quebec, 490 de la Couronne, Quebec,Quebec G1K 9A9, Canada;

    Ecole des Mines de Paris, 35 rue Saint-Honore, 77305 Fontainebleau, France;

    Laboratoire de Radioecologie et Ecotoxicolngie, Institut de Radioprotection et Surete Nucleaire, Cadarache, Bat 186, BP 3,13115 Saint-Paul-lez-Durance, Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    uranium; phytoplankton; pH; bioavailability; biotic ligand model;

    机译:铀;浮游植物pH值生物利用度生物配体模型;
  • 入库时间 2022-08-17 13:35:31

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