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首页> 外文期刊>LWT-Food Science & Technology >Assessment of metabolic changes in Acinetobacter johnsonii and Pseudomonas fluorescens co-culture from bigeye tuna (Thunnus obesus) spoilage by ultra-high-performance liquid chromatography-tandem mass spectrometry
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Assessment of metabolic changes in Acinetobacter johnsonii and Pseudomonas fluorescens co-culture from bigeye tuna (Thunnus obesus) spoilage by ultra-high-performance liquid chromatography-tandem mass spectrometry

机译:通过超高效液相色谱 - 串联质谱法对大学金枪鱼(Thunnus Obesus)腐败的johnsonii和荧光荧光荧光文化的代谢变化评估

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Acinetobacter johnsonii and Pseudomonas fluorescens are specific spoilage microorganisms (SSO) of aquatic products, and their metabolites are effective indicators for analyzing these two SSOs. However, the metabolome of a coculture of A. johnsonii and P. fluorescens is still unclear. The aim of this study was to investigate the metabolomic changes in A. johnsonii, P. fluorescens, and their co-culture by screening for metabolic markers. PCA and PLS-DA revealed that A, P, and AP groups were different from each other, indicating a significantly varying metabolic profile among them. Based on UHPLC information, 540 metabolites with significant differences, were identified in the ESI+ and ESI- modes, which covered 79 metabolic pathways. The different metabolites were mainly related to the pathways, such as taurine and hypotaurine metabolism:M, bile secretion:OS, and arginine biosynthesis:M were in the A vs AP group, while PPAR signaling pathway:OS, tropane, piperidine, and pyridine alkaloid biosynthesis:M, longevity regulating pathway-worm:OS, choline metabolism in cancer:HD, biosynthesis of phenylpropanoids:M, and amoebiasis:HD were in the P vs AP group. Therefore, this study may provide significant information regarding the metabolic mechanisms of A. johnsonii, P. fluorescens, and their co-cultures, which may provide insights on their role in deteriorating the quality of aquatic products.
机译:johnsonii和假霉素荧光素是水生产品的特异性腐败微生物(SSO),它们的代谢物是用于分析这两个SSO的有效指标。然而,A. Johnsonii和P.荧光的聚集糖的代谢物仍然不清楚。本研究的目的是通过筛选代谢标志物,调查A. Johnsonii,P.荧光和它们的共同培养的代谢组变化。 PCA和PLS-DA揭示了A,P和AP组彼此不同,表明它们之间的显着变化的代谢概况。基于UHPLC信息,在ESI +和ESI模式中鉴定了540种具有显着差异的代谢物,其覆盖了79个代谢途径。不同的代谢物主要与牛磺酸和牛磺酸龙鱼代谢等途径有关:M,胆碱分泌:OS和精氨酸生物合成:M在A VS AP组中,而PPAR信号通路:OS,稀醇,哌啶和吡啶生物碱生物合成:M,寿命调节途径 - 蠕虫:OS,癌症中的胆碱代谢:HD,苯丙醇的生物合成:M和Amoebiasis:HD在P VS AP组中。因此,本研究可以提供关于A. Johnsonii,P.荧光的代谢机制及其共同文化的重要信息,这可能在恶化水产品质量方面提供了对其作用的见解。

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