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Co-Occurrence of Beauvericin and Enniatins in Edible Vegetable Oil Samples China

机译:中国食用植物油样品中白僵菌素和烯丙胺酸共存

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摘要

A total of 470 edible vegetable oil samples including peanut, soybean, rapeseed, sesame seed, corn, blend, and others collected from eight provinces of China were analyzed for the concentrations of beauvericin (BEA), enniatin A (ENA), A1 (ENA1), B (ENB), and B1 (ENB1) by ultraperformance liquid chromatography/electrospray ionization tandem mass spectrometry (UPLC/ESI-MS/MS). Concentrations of BEA, ENB, and ENB1 (average = 5.59 μg/kg, 5.16 μg/kg, and 4.61 μg/kg) in all positive samples were higher than those for ENA and ENA1 (average = 0.85 μg/kg and 1.88 μg/kg). Frequencies of BEA and ENNs in all analyzed samples were all higher than 50% with the exception of ENA1 (36.6%, 172/470). Levels of BEA and ENNs in all analyzed samples varied based on their sample types and geographical distributions (Kruskal–Wallis test, p < 0.05). The soybean and peanut oil samples were found to be more easily contaminated by BEA and ENNs than other oil samples. Concentrations of BEA and ENNs in samples obtained from Heilongjiang, Shandong and Guizhou were higher than those found in samples from other provinces. Besides, frequencies of mycotoxin co-contaminations were high and their co-contamination types also varied by oil types. BEA-ENA-ENA1-ENB-ENB1 was the most commonly found toxin combination type, almost in one third of the analyzed samples (30%, 141/470). Overall, these results indicate that co-occurrence of BEA and ENNs in analyzed Chinese edible vegetable oil samples is highly common, and it is vital to monitor them, both simultaneously and on a widespread level.
机译:分析了从中国八个省份收集的470种食用植物油样品(包括花生,大豆,油菜籽,芝麻,玉米,混合物和其他样品)中的白菜毒素(BEA),enenatin A(ENA),A1(ENA1)的浓度。 ),B(ENB)和B1(ENB1)通过超高效液相色谱/电喷雾电离串联质谱(UPLC / ESI-MS / MS)进行分析。所有阳性样品中的BEA,ENB和ENB1浓度(平均值= 5.59μg/ kg,5.16μg/ kg和4.61μg/ kg)均高于ENA和ENA1的浓度(平均值= 0.85μg/ kg和1.88μg/公斤)。除ENA1(36.6%,172/470)外,所有分析样品中的BEA和ENN频率均高于50%。所有分析样品中的BEA和ENNs水平根据其样品类型和地理分布而有所不同(Kruskal–Wallis检验,p <0.05)。发现豆油和花生油样品比其他油样品更容易被BEA和ENN污染。黑龙江,山东和贵州的样品中BEA和ENN的浓度高于其他省份的样品中的BEA和ENN的浓度。此外,霉菌毒素共污染的频率很高,并且它们的共污染类型也因油的种类而异。 BEA-ENA-ENA1-ENB-ENB1是最常见的毒素组合类型,几乎在三分之一的分析样品中(30%,141/470)。总体而言,这些结果表明,在分析过的中国食用植物油样品中,BEA和ENN并存的情况非常普遍,因此同时监测和广泛监测它们至关重要。

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