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Development of an electrostatic model predicting copper toxicity to plants

机译:建立预测铜对植物毒性的静电模型

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The focus of the present study was to investigate the mechanisms for the alleviation of Cu toxicity in plants by coexistent cations (e.g. Al3+, Mn2+, Ca2+, Mg2+, H+, Na+, and K+) and the development of an electrostatic model to predict 50% effect activities (EA50s) accurately. The alleviation of Cu2+ toxicity was evaluated in several plants in terms of (i) the electrical potential at the outer surface of the plasma membrane (PM) (Ψ0°) and (ii) competition between cations for sites at the PM involved in the uptake or toxicity of Cu2+, the latter of which is invoked by the Biotic Ligand Model (BLM) as the sole explanation for the alleviation of toxicity. The addition of coexistent cations into the bulk-phase medium reduces the negativity of Ψ0° and hence decreases the activity of Cu2+ at the PM surface. Our analyses suggest that the alleviation of toxicity results primarily from electrostatic effects (i.e. changes in both the Cu2+ activity at the PM surface and the electrical driving force across the PM), and that BLM-type competitive effects may be of lesser importance in plants. Although this does not exclude the possibility of competition, the data highlight the importance of electrostatic effects. An electrostatic model was developed to predict Cu2+ toxicity thresholds (EA50s), and the quality of its predictive capacity suggests its potential utility in risk assessment of copper in natural waters and soils.
机译:本研究的重点是研究通过共存阳离子(例如Al 3 + ,Mn 2 + ,Ca )减轻植物中Cu毒性的机制。 2 + ,Mg 2 + ,H + ,Na + 和K + )和建立静电模型以准确预测50%的效应活动(EA50s)。通过以下方法评估了几种植物对Cu 2 + 毒性的缓解作用:(i)质膜(PM)外表面的电势(Ψ 0 < (sup>°)和(ii)阳离子之间在PM处与Cu 2 + 的吸收或毒性有关的位点之间的竞争,后者由生物配体模型( BLM)作为缓解毒性的唯一解释。将共存阳离子添加到体相介质中会降低Ψ 0 °的负电性,从而降低Cu 2 + 的活度。 PM表面。我们的分析表明,毒性的减轻主要源于静电效应(即,PM表面Cu 2 + 活性的变化和PM上的电驱动力的变化),以及BLM型竞争性对植物的影响可能不太重要。尽管这并不排除竞争的可能性,但数据突出了静电效应的重要性。建立了静电模型来预测Cu 2 + 毒性阈值(EA50s),其预测能力的质量表明其可用于天然水和土壤中铜的风险评估。

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