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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >The determination of ferric iron in plants by HPLC using the microbial iron chelator desferrioxamine E
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The determination of ferric iron in plants by HPLC using the microbial iron chelator desferrioxamine E

机译:微生物铁螯合剂去铁草胺E高效液相色谱法测定植物中的三价铁

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摘要

Common methods for plant iron determination are based on atomic absorption spectroscopy, radioactive measurements or extraction with Subsequent spectrophotometry. However, accuracy is often a problem due to background, contamination and interfering compounds. We here describe a novel method for the easy determination of ferric iron in plants by chelation with a highly effective microbial siderophore and separation by high performance liquid chromatography (HPLC). After addition of colourless desferrioxamine E (DFE) to plant fluids, the Soluble iron is trapped as a brown-red ferrioxamine E (FoxE) complex which is subsequently separated by HPLC on a reversed phase column. The formed FoxE complex can be identified due to its hlgand-to-metal charge transfer band at 435 nm. Alternatively, elution of both, DFE and FoxE can be followed as separate peaks at 220 nm wavelength with characteristic retention times. The extraordinarily high stability constant of DFE with ferric iron of K = 10(32) enables extraction of iron from a variety of ferrous and ferric iron compounds and allows quantitation after separation by HPLC without interference by coloured by-products. Thus, iron bound to protein, amino acids, citrate and other organic acid ligands and even insoluble ferric hydroxides and phosphates can be solubilized in the presence desferrioxamine E. The "Ferrioxamine E method" can be applied to all kinds of plant fluids (apoplasmic, xylem, phloem. intracellular) either at physiological pH or even at acid pH values. The FoxE complex is stable down to pH 1 allowing protein removal by perchloric acid treatment and HPLC separation in the presence of trifluoroacetic acid containing eluents.
机译:植物铁含量测定的常用方法是基于原子吸收光谱法,放射性测量或随后的分光光度法提取。但是,由于背景,污染和干扰化合物,精度经常是一个问题。我们在这里描述了一种通过与高效微生物铁载体螯合并通过高效液相色谱(HPLC)进行分离来轻松确定植物中三价铁的新方法。向植物液中添加无色去铁胺E(DFE)后,将可溶性铁捕获为棕红色铁氧胺E(FoxE)络合物,随后将其通过HPLC在反相柱上分离。由于形成的FoxE复合物在435 nm处有杂配物到金属的电荷转移带,因此可以识别。另外,DFE和FoxE的洗脱都可以作为具有特征性保留时间的220 nm波长处的单独峰进行跟踪。 DFE与K = 10(32)的三价铁具有极高的稳定性常数,可从多种亚铁和三价铁化合物中提取铁,并在通过HPLC分离后进行定量分析,而不会受到有色副产物的干扰。因此,在去铁胺E的存在下,可以溶解与蛋白质,氨基酸,柠檬酸和其他有机酸配体结合的铁,甚至不溶的氢氧化铁和磷酸盐。“铁氧胺E方法”可以应用于各种植物液(无质,木质部,韧皮部(细胞内的韧皮部)在生理pH下或什至在酸性pH值下。 FoxE络合物在pH值低至1时都稳定,可在存在三氟乙酸的洗脱液中通过高氯酸处理和HPLC分离去除蛋白质。

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