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Identification of differential metabolites in liquid diet fermented with Bacillus subtilis using gas chromatography time of flight mass spectrometry

机译:气相色谱飞行时间质谱法鉴定枯草芽孢杆菌发酵液体饮食中的代谢物

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Growth and health responses of pigs fed fermented liquid diet are not always consistent and causes for this issue are still not very clear. Metabolites produced at different fermentation time points should be one of the most important contributors. However, currently no literatures about differential metabolites of fermented liquid diet are reported. The aim of this experiment was to explore the difference of metabolites in a fermented liquid diet between different fermentation time intervals. A total of eighteen samples that collected from Bacillus subtilis fermented liquid diet on days 7, 21 and 35 respectively were used for the identification of metabolites by gas chromatography time of flight mass spectrometry (GC-TOF-MS). Fifteen differential metabolites including melibiose, sortitol, ribose, cellobiose, maltotriose, sorbose, isomaltose, maltose, fructose, d-glycerol-1-phosphate, 4-aminobutyric acid, beta-alanine, tyrosine, pyruvic acid and pantothenic acid were identified between 7-d samples and 21-d samples. The relative level of melibiose, ribose, maltotriose, d-glycerol-1-phosphate, tyrosine and pyruvic acid in samples collected on day 21 was significantly higher than that in samples collected on day 7 (P < 0.01), respectively. Eight differential metabolites including ribose, sorbose, galactinol, cellobiose, pyruvic acid, galactonic acid, pantothenic acid and guanosine were found between 21-d samples and 35-d samples. Samples collected on day 35 had a higher relative level of ribose than that in samples collected on day 21 (P < 0.01). In conclusion, many differential metabolites which have important effects on the growth and health of pigs are identified and findings contribute to explain the difference in feeding response of fermented liquid diet.
机译:饲喂发酵流质饮食的猪的生长和健康反应并不总是一致的,导致这一问题的原因还不是很清楚。在不同发酵时间点产生的代谢产物应该是最重要的贡献者之一。然而,目前没有关于发酵流质饮食的不同代谢产物的文献报道。该实验的目的是探讨发酵液饮食中不同发酵时间间隔之间代谢物的差异。分别在第7、21和35天分别从枯草芽孢杆菌发酵流质饮食中收集的18个样品用于通过气相色谱飞行时间质谱(GC-TOF-MS)鉴定代谢物。鉴定出7种之间的15种差异代谢物,包括麦立比糖,sortitol,核糖,纤维二糖,麦芽三糖,山梨糖,异麦芽糖,麦芽糖,果糖,d-甘油-1-磷酸,4-氨基丁酸,β-丙氨酸,酪氨酸,丙酮酸和泛酸-d样本和21-d样本。在第21天收集的样品中蜜利比糖,核糖,麦芽三糖,d-甘油-1-磷酸,酪氨酸和丙酮酸的相对水平分别显着高于第7天收集的样品(P <0.01)。在21天至35天的样品中发现了8种差异代谢物,包括核糖,山梨糖,半乳糖醇,纤维二糖,丙酮酸,半乳糖酸,泛酸和鸟苷。与第21天采集的样品相比,第35天采集的样品的核糖相对水平更高(P <0.01)。总之,鉴定出许多对猪的生长和健康有重要影响的差异代谢物,这些发现有助于解释发酵流质饮食的摄食反应差异。

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