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首页> 外文期刊>Environmental Science & Technology >Extending the Biotic Ligand Model to Account for Positive and Negative Feedback Interactions between Cadmium and Zinc in a Freshwater Alga
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Extending the Biotic Ligand Model to Account for Positive and Negative Feedback Interactions between Cadmium and Zinc in a Freshwater Alga

机译:扩展生物配体模型以解决淡水藻类中镉和锌之间的正负反馈相互作用

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摘要

Low concentrations of essential trace metals such as zinc (Zn) were recently shown to strongly modulate cadmium (Cd) uptake in the freshwater alga Chlamydomonas reinhardtii. Here we studied the mechanisms of Cd and Zn acquisition by this alga, using metal uptake kinetics experiments. Cadmium uptake rates fitted a three transport site model characterized by the affinity constants K_(Cd-1)~(Cd) = 10~(5.0), K_(Cd-2)~(Cd) = 10~(7.6), and K_(Cd-3)~(Cd) = 10~(8.8). Similar uptake kinetics were obtained for Zn with K_(Zn-1)~(Zn) = 10~(5.0), K_(Zn-2)~(Zn)= 10~(7.4), and K_(Zn-3)~(Zn)> 109. Competitive binding experiments suggest that Zn and Cd share the same three transport systems. The capacities of the transport systems were modulated by as much as 10-fold following preacdimation to high or low Zn~(2+) and Cd~(2+) concentrations. We conclude that the strong protective effect of Zn on Cd accumulation is mainly due to the reduction of the maximal uptake rate of the high-affinity Zn-2 (or Cd-2) transport system. A biotic ligand model was developed to incorporate the effects of both chemical speciation and physiological regulation of Cd transport systems. The model successfully predicts the experimentally measured steady-state Cd content of G reinhardtii in the presence of low or high [Zn~(2+)].
机译:最近显示低浓度的必需微量金属,例如锌(Zn),可强烈调节淡水藻类衣藻(Chlamydomonas reinhardtii)中镉(Cd)的吸收。在这里,我们使用金属吸收动力学实验研究了这种藻类吸收Cd和Zn的机理。镉的吸收率拟合了三个转运位点模型,其特征在于亲和常数K_(Cd-1)〜(Cd)= 10〜(5.0),K_(Cd-2)〜(Cd)= 10〜(7.6)和K_ (Cd-3)〜(Cd)= 10〜(8.8)。对于K_(Zn-1)〜(Zn)= 10〜(5.0),K_(Zn-2)〜(Zn)= 10〜(7.4)和K_(Zn-3)〜的Zn,获得了相似的吸收动力学。 (Zn)>109。竞争性结合实验表明Zn和Cd共享相同的三个传输系统。预先调节至高或低的Zn〜(2+)和Cd〜(2+)浓度后,传输系统的容量最多可调节10倍。我们得出结论,锌对Cd积累的强保护作用主要是由于高亲和力Zn-2(或Cd-2)运输系统的最大吸收速率降低。开发了生物配体模型,以结合化学形态和Cd转运系统的生理调节作用。该模型成功地预测了在低或高[Zn〜(2+)]的情况下实验性测定的G莱茵态稳态Cd含量。

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  • 来源
    《Environmental Science & Technology》 |2012年第21期|12129-12136|共8页
  • 作者单位

    Institut National de la Recherche Scientinque, Centre Eau Terre Environnement (INRS-ETE), 490 de la Couronne, G1K 9A9, Quebec, Canada;

    Institut National de la Recherche Scientinque, Centre Eau Terre Environnement (INRS-ETE), 490 de la Couronne, G1K 9A9, Quebec, Canada;

    Institut National de la Recherche Scientinque, Centre Eau Terre Environnement (INRS-ETE), 490 de la Couronne, G1K 9A9, Quebec, Canada;

  • 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);
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  • 正文语种 eng
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