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鉴定高硒谷物作物中的硒糖和其他低分子量硒代谢物。

Identification of selenosugars and other low-molecular weight selenium metabolites in high-selenium cereal crops.

机构信息

Istituto Superiore di Sanità, Department of Food Safety and Veterinary Public Health, Rome, Italy.

出版信息

Metallomics. 2012 Aug;4(9):968-78. doi: 10.1039/c2mt20085f.

DOI:10.1039/c2mt20085f
PMID:22802147
Abstract

Several novel selenium containing compounds were characterized in staple crops (wheat, rice and maize) grown on soils naturally rich in selenium. A dedicated method based on the coupling of liquid chromatography with multiplexed detection (ICP-MS, ESI-Orbitrap MS(/MS)) was developed for the speciation of low-molecular weight (<5 kDa) selenium metabolites. Nine species present in different proportions as a function of the crop type were identified by cation-exchange HPLC-ESI-Orbitrap MS on the basis of the accurate molecular mass and MS/MS spectra. The natural origin of these species was then validated by varying extraction conditions and by using hydrophilic interaction LC (HILIC)-ESI-Orbitrap MS(/MS). Among the identified compounds, Se-containing monosaccharides (hexose moiety, m/z 317 and m/z 358) or Se-containing disaccharides (hexose-pentose moiety, m/z 407 and m/z 408) were the first selenosugars reported in edible plants. It is also the first report of the presence of 2,3-dihydroxypropionyl-selenolanthionine (m/z 345) in rice. Because these crops can be an important source of selenium in animal and human nutrition, the understanding of the origin and the fate of these species during metabolic processes will be of great interest.

摘要

在天然富硒土壤中种植的主要农作物(小麦、水稻和玉米)中,对几种新型含硒化合物进行了特征描述。建立了一种基于液相色谱与多检测方法(ICP-MS、ESI-Orbitrap MS(/MS))联用的专门方法,用于低分子量(<5 kDa)硒代谢物的形态分析。基于准确的分子量和 MS/MS 图谱,通过阳离子交换 HPLC-ESI-Orbitrap MS 鉴定了不同作物类型下以不同比例存在的 9 种硒形态。然后通过改变提取条件和使用亲水作用色谱(HILIC)-ESI-Orbitrap MS(/MS)对这些形态的天然来源进行了验证。在鉴定的化合物中,含硒单糖(己糖部分,m/z 317 和 m/z 358)或含硒二糖(己糖-戊糖部分,m/z 407 和 m/z 408)是首次在可食用植物中报道的硒糖。这也是首次在水稻中发现 2,3-二羟基丙酰基-硒代硫氨酸(m/z 345)。由于这些农作物可能是动物和人类营养中硒的重要来源,因此了解这些形态在代谢过程中的来源和命运将具有重要意义。

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