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Analysis of Major Phospholipid Species and Ergosterol in Fermenting Industrial Yeast Strains Using Atmospheric Pressure Ionization Ion-Trap Mass Spectrometry

机译:大气压电离离子阱质谱法分析工业酵母发酵过程中的主要磷脂种类和麦角甾醇

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Knowledge of the individual lipid species that are associated with ethanol tolerance in Saccharomyces cerevisiae is necessary to understand potential mechanisms of how this organism uses these molecules to mitigate the toxic effects of ethanol. Three industrial yeast strains with varying degrees of ethanol tolerance were examined utilizing normal phase high-performance liquid chromatography and atmospheric pressure ionization—ion-trap mass spectrometry methods to quantitatively determine phospholipid and ergosterol levels at numerous fermentation time points. Both high and low Brix fermentations were performed to assess the sugar utilization capabilities of the strains. The results indicated that the strain with the most robust fermentation characteristics had the highest phpsphatidylinositol levels and lowest phosphatidylcholine levels. Examination of the phospholipid structural data from tandem MS experiments indicated that the levels of several phospholipid species were unique to the slowest fermenting strain. The relation of ergosterol and other phospholipids to ethanol tolerance is also discussed.
机译:必须了解与酿酒酵母中的乙醇耐受性有关的单个脂质种类,以了解该生物如何利用这些分子减轻乙醇毒性作用的潜在机制。使用正相高效液相色谱法和大气压电离-离子阱质谱法检测了三种具有不同程度乙醇耐受性的工业酵母菌株,以定量测定许多发酵时间点的磷脂和麦角固醇水平。进行高糖度和低糖度发酵,以评估菌株的糖利用能力。结果表明,具有最强发酵特性的菌株具有最高的磷脂酰肌醇水平和最低的磷脂酰胆碱水平。串联质谱实验对磷脂结构数据的检查表明,几种磷脂种类的水平是最慢的发酵菌株所独有的。还讨论了麦角固醇和其他磷脂与乙醇耐受性的关系。

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