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Experimental determination of zinc isotope fractionation in complexes with the phytosiderophore 2′-deoxymugeneic acid (DMA) and its structural analogues, and implications for plant uptake mechanisms

机译:与植物铁载体2'-脱氧诱变酸(DMA)及其结构类似物配合物的锌同位素分馏的实验测定及其对植物吸收机制的影响

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摘要

The stable isotope signatures of zinc and other metals are increasingly used to study plant and soil processes. Complexation with phytosiderophores is a key reaction and understanding the controls of isotope fractionation is central to such studies. Here, we investigated isotope fractionation during complexation of Zn2+ with the phytosiderophore 2′-deoxymugeneic acid (DMA), and with three commercially available structural analogues of DMA: EDTA, TmDTA, and CyDTA. We used ion exchange chromatography to separate free and complexed zinc, and identified appropriate cation exchange resins for the individual systems. These were Chelex-100 for EDTA and CyDTA, Amberlite CG50 for TmDTA and Amberlite IR120 for DMA. With all the ligands we found preferential partitioning of isotopically heavy zinc in the complexed form, and the extent of fractionation was independent of the Zn:ligand ratio used, indicating isotopic equilibrium and that the results were not significantly affected by artifacts during separation. The fractionations (in ‰) were +0.33 ± 0.07 (1σ, n = 3), + 0.45 ± 0.02 (1σ, n = 2), + 0.62 ± 0.05 (1σ, n = 3) and +0.30 ± 0.07 (1σ, n = 4) for EDTA, TmDTA, CyDTA, and DMA, respectively. Despite the similarity in Zn-coordinating donor groups, the fractionation factors are significantly different and extent of fractionation seems proportional to the complexation stability constant. The extent of fractionation with DMA agreed with observed fractionations in zinc uptake by paddy rice in field experiments, supporting the possible involvement of DMA in zinc uptake by rice.
机译:锌和其他金属的稳定同位素特征越来越多地用于研究植物和土壤过程。与植物铁载体的络合是关键反应,了解同位素分馏的控制是此类研究的核心。在这里,我们研究了在Zn2 +与植物铁载体2'-脱氧诱变酸(DMA)以及与DMA的三种市售结构类似物络合过程中的同位素分馏。EDTA,TmDTA和CyDTA。我们使用离子交换色谱法分离了游离的锌和络合的锌,并确定了适用于各个系统的阳离子交换树脂。对于EDTA和CyDTA,它们是Chelex-100;对于TmDTA,它们是Amberlite CG50;对于DMA,它们是Amberlite IR120。在所有配体中,我们发现以络合物形式优先分配同位素重金属锌,并且分馏程度与所使用的Zn:配体比率无关,表明同位素平衡,分离过程中的伪影对结果没有明显影响。分数(以‰为单位)为+0.33±0.07(1σ,n = 3),+ 0.45±0.02(1σ,n = 2),+ 0.62±0.05(1σ,n = 3)和+0.30±0.07(1σ, n = 4)分别用于EDTA,TmDTA,CyDTA和DMA。尽管锌配位供体基团相似,但分馏因子明显不同,且分馏程度似乎与络合稳定性常数成正比。 DMA分级分离的程度与田间实验中观察到的水稻吸收锌的分级一致,这支持DMA可能参与水稻吸收锌。

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    Kirk, Guy J. D.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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