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Discrimination of Milk from Different Animal Species by a Foodomics Approach Based on High-Resolution Mass Spectrometry

机译:基于高分辨率质谱法通过俄罗斯植物方法辨别不同动物物种的歧视

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An untargeted foodomics strategy based on ultra-high-performance liquid chromatography coupled with quadrupole orbitrap and chemometrics was used to observe subtle differences in the molecule profiles of raw milk from different animal species (cow milk, goat milk, and water buffalo milk), which could prevent the fraud activities in the dairy industry. In data-dependent acquisition (DIA), spectra for all precursor ions facilitated the comprehensive identification of unknown compounds in untargeted foodomics. Chemometrics techniques were used to analyze large amounts of complex data to observe the separation of different sample groups and find the potential markers of sample groups. Finally, five markers were putatively identified by the potential marker identification workflow. The quantification results showed that beta-carotene was found only in cow milk; ergocalciferol was found only in water buffalo milk; and the contents of nonanoic acid, decanoic acid, and octanoic acid were higher in goat milk than those in cow milk and water buffalo milk. The quantification of beta-carotene enabled the detection of cow milk with a sensitivity threshold of 5% (w/w). This work provided an efficient approach for the discrimination of cow milk, goat milk, and water buffalo milk. Compared with proteomics and genomics, the simpler analytical procedures, lower costs, and higher speed of this work make it of great benefit for routine operations.
机译:基于超高效液相色谱的未确定的oodOmics策略与四轴锻造和化学计量学相结合,观察来自不同动物物种(牛奶,山羊牛奶和水牛牛奶)的原料牛奶分子谱的微妙差异可以防止乳制品行业的欺诈活动。在数据依赖性采集(DIA)中,所有前体离子的光谱都促进了未确定的oofomics中未知化合物的综合鉴定。化学计量技术用于分析大量复杂数据以观察不同样品组的分离并找到样品组的潜在标志物。最后,通过潜在的标记识别工作流程识别五个标记。定量结果表明,仅在牛奶中发现了β-胡萝卜素; Ergocalciferol仅在水牛牛奶中发现;山羊牛奶中壬酸,癸酸和辛酸的含量高于牛奶和水牛牛奶的含量。 β-胡萝卜素的定量使得检测牛奶,灵敏度阈值为5%(w / w)。这项工作提供了一种有效的方法,可以辨别牛奶,山羊奶和水牛牛奶。与蛋白质组学和基因组学相比,这项工作的更简单的分析程序,降低成本和更高的速度使其具有常规操作的大益处。

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