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Metallomics approach to trace element analysis in Ustilago maydis using cellular fractionation, atomic absorption spectrometry, and size exclusion chromatography with ICP-MS detection

机译:使用细胞分级分离,原子吸收光谱法和尺寸排阻色谱和ICP-MS检测的乌斯梯亚哥(Ustilago maydis)中微量元素分析的金属学方法

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Huitlacoche is the ethnic name of the young fruiting bodies of Ustilago, maydis, a common parasite of maize. In Mexico and other Latin American countries, this fungus has been traditionally appreciated as a local delicacy. In this work a metallomics approach was used with the determination of eight elements in huitlacoche by electrothermal atomic absorption spectrometry as one facet of this approach. The results obtained indicated relatively lower concentrations of commonly analyzed metals, as referred to the data reported for other mushroom types. This effect was ascribed to different accessibilities of elements, depending on fungus substrate (lower from plant than from soil). Subcellular fractionation was accomplished by centrifugation of cell homogenates suspended in Tris-HCl buffer. Recoveries of the fractionation procedure were in the range of 71-103%. For six elements (Cr, Cu, Fe, Mn, Ni, and Pb), the mean relative contributions in cytosol, cell walls, and mixed membrane fraction were 50.7, 48.2, and 1.1% respectively. To attain the molecular weight distribution of compounds containing target elements as an additional aspect of the metallomics approach, the fungus extract (1% sodium dodecyl sulfate in Tris-HCl, 30 mmol L-1, pH 7.0) was analyzed by size exclusion chromatography with UV and ICP-MS detection. With spectrophotometric detection (280 nm), the elution of high molecular weight compounds was observed in the form of one peak (MW > 10 kDa), and several lower peaks appeared at higher retention times (MW < 10 kDa). On ICP-MS chromatograms, a coelution of Co-59, Cu-63, Fe-57, Hg-202, Ni-60, and Se-80 with the first peak on the UV chromatogram was clearly observed, indicating that a fraction of each element incorporated with high molecular weight compounds (12.7, 19.8, 33.7, 100, 19.4, and 45.8%, respectively, based on the peak area measurements). From a comparison of Se-80 and S-33 chromatograms (for sulfur analysis, the extract was obtained in the absence of SIDS), both elements coeluted with the first UV peak, but their lower molecular weight compounds were apparently different. These findings may contribute to a better understanding of the accumulation of elements in mushrooms.
机译:Huitlacoche是乌斯蒂拉戈(Ustilago)年轻子实体的种族名称,maydis是玉米的常见寄生虫。在墨西哥和其他拉丁美洲国家,这种真菌传统上被视为当地美食。在这项工作中,采用金属组学方法通过电热原子吸收光谱法测定huitlacoche中的8种元素,是该方法的一个方面。获得的结果表明,相对于其他蘑菇类型报道的数据,通常分析的金属浓度相对较低。这种作用归因于不同的元素可及性,具体取决于真菌的基质(来自植物的比来自土壤的要低)。亚细胞分级分离是通过离心悬浮在Tris-HCl缓冲液中的细胞匀浆来完成的。分馏程序的回收率在71-103%的范围内。对于六种元素(Cr,Cu,Fe,Mn,Ni和Pb),其在细胞溶胶,细胞壁和混合膜组分中的平均相对贡献分别为50.7、48.2和1.1%。为了获得包含目标元素的化合物的分子量分布(作为金属学方法的另一个方面),通过尺寸排阻色谱法分析了真菌提取物(Tris-HCl中的1%十二烷基硫酸钠,30 mmol L-1,pH 7.0)。紫外线和ICP-MS检测。使用分光光度法检测(280 nm),可以观察到一个峰(MW> 10 kDa)形式的高分子量化合物的洗脱,在较高的保留时间(MW <10 kDa)处出现了几个较低的峰。在ICP-MS色谱上,可以清楚地观察到Co-59,Cu-63,Fe-57,Hg-202,Ni-60和Se-80的共洗脱峰,其中UV色谱图中有第一个峰。每个元素都掺有高分子量化合物(根据峰面积测量值分别为12.7、19.8、33.7、100、19.4和45.8%)。通过比较Se-80和S-33色谱图(用于硫分析,提取物是在没有SIDS的情况下获得的),两种元素均与第一个UV峰共洗脱,但它们的低分子量化合物明显不同。这些发现可能有助于更好地了解蘑菇中元素的积累。

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