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Monitoring of Brewing Yeast Propagation Under Aerobic and Anaerobic Conditions Employing Flow Cytometry

机译:利用流式细胞术监测好氧和厌氧条件下啤酒酵母的传播

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摘要

The vitality and viability of industrial strains of Saccharomyces cerevisiae was monitored during pilot plant experiments simulating yeast propagation under aerobic and anaerobic conditions. Industrial wort of 12°P original gravity was used as a growth substrate for yeast propagation. The work was carried out with three widely used Czech lager yeast industrial strains: strains 2, 7 and 95. Cell cycle, cell size, granularity, glycogen content, DNA and protein content were analyzed by flow cytometry. Significantly higher specific growth rates, higher content of yeast glycogen, earlier G2/M phase cells maximum, and faster cell protein creation was observed under aerobic conditions compared to anaerobic. Strains 7 and 95 showed losses in flocculation ability after aerobic propagation compared to anaerobic propagation. Under either aerobic or strictly anaerobic conditions, only strain 2 did not show a significant loss in flocculation ability.
机译:在模拟酵母在有氧和无氧条件下繁殖的中试植物实验期间,监测了酿酒酵母工业菌株的活力和生存力。最初重力为12°P的工业麦芽汁用作酵母繁殖的生长基质。这项工作是使用三种广泛使用的捷克大型啤酒工业菌株:菌株2、7和95。通过流式细胞仪分析细胞周期,细胞大小,粒度,糖原含量,DNA和蛋白质含量。与需氧条件相比,在需氧条件下观察到明显更高的比生长速率,更高的酵母糖原含量,更早的G2 / M期细胞以及更快的细胞蛋白质生成。与无氧繁殖相比,有氧繁殖后菌株7和95的絮凝能力下降。在有氧或严格厌氧条件下,只有菌株2的絮凝能力没有明显降低。

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