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Identification of Azoxystrobin Glutathione Conjugate Metabolites in Maize Roots by LC-MS

机译:液相色谱-质谱法鉴定玉米根中的嘧菌酯谷胱甘肽共轭代谢产物

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摘要

Xenobiotic detoxification in plant as well as in animals has mostly been studied in relationship to the deactivation of the toxic residues of the compound that, surely for azoxystrobin, is represented by its β-methoxyacrylate portion. In maize roots treated for 96 h with azoxystrobin, the fungicide accumulated over time and detoxification compounds or conjugates appeared timewise. The main detoxified compound was the methyl ester hydrolysis product (azoxystrobin free acid, 390.14 m/z) thought to be inactive followed by the glutathione conjugated compounds identified as glutathione conjugate (711.21 m/z) and its derivative lacking the glycine residue from the GSH (654.19 m/z). The glycosylated form of azoxystrobin was also found (552.19 m/z) in a minor amount. The identification of these analytes was done by differential untargeted metabolomics analysis using Progenesis QI for label free spectral counting quantification and MS/MS confirmation of the compounds was carried out by either Data Independent Acquisition (DIA) and Data Dependent Acquisition (DDA) using high resolution LC-MS methods. Neutral loss scanning and comparison with MS/MS spectra of azoxystrobin by DDA and MSe confirmed the structures of these new azoxystrobin GSH conjugates.
机译:植物和动物中的异种生物排毒主要是与该化合物的毒性残基的失活有关的,该化合物肯定是由嘧菌酯组成的,由其β-甲氧基丙烯酸酯部分代表。在用嘧菌酯处理96小时的玉米根中,杀菌剂会随时间累积,并且排毒化合物或结合物会及时出现。主要的解毒化合物是被认为是无活性的甲酯水解产物(氨氧化雌激素游离酸,390.14 m / z),其次是被鉴定为谷胱甘肽共轭物的谷胱甘肽共轭化合物(711.21 m / z)及其衍生物,缺少GSH的甘氨酸残基(654.19 m / z)。还发现了少量的嘧菌酯的糖基化形式(552.19 m / z)。这些分析物的鉴定是通过使用Progenesis QI进行的无标靶代谢组学差异分析进行的,用于无标记光谱计数定量,并通过数据独立采集(DIA)和数据相关采集(DDA)使用高分辨率的化合物对化合物进行MS / MS确认LC-MS方法。用DDA和MSe进行中性损失扫描并与嘧菌酯的MS / MS谱图进行比较,证实了这些新型嘧菌酯GSH缀合物的结构。

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