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The fraction of cells that resume growth after acetic acid addition is a strain-dependent parameter of acetic acid tolerance in Saccharomyces cerevisiae

机译:添加乙酸后恢复生长的细胞分数是酿酒酵母中乙酸耐受性的应变依赖性参数

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摘要

High acetic acid tolerance of Saccharomyces cerevisiae is a relevant phenotype in industrial biotechnology when using lignocellulosic hydrolysates as feedstock. A screening of 38 S.cerevisiae strains for tolerance to acetic acid revealed considerable differences, particularly with regard to the duration of the latency phase. To understand how this phenotype is quantitatively manifested, four strains exhibiting significant differences were studied in more detail. Our data show that the duration of the latency phase is primarily determined by the fraction of cells within the population that resume growth. Only this fraction contributed to the exponential growth observed after the latency phase, while all other cells persisted in a viable but non-proliferating state. A remarkable variation in the size of the fraction was observed among the tested strains differing by several orders of magnitude. In fact, only 11 out of 107cells of the industrial bioethanol production strain Ethanol Red resumed growth after exposure to 157mM acetic acid at pH 4.5, while this fraction was 3.6x106 (out of 107cells) in the highly acetic acid tolerant isolate ATCC 96581. These strain-specific differences are genetically determined and represent a valuable starting point to identify genetic targets for future strain improvement.
机译:当使用木质纤维素水解产物作为原料时,酿酒酵母对乙酸的高耐受性是工业生物技术中的相关表型。筛查38株啤酒酵母对乙酸的耐受性显示出很大的差异,特别是在潜伏期的持续时间方面。为了理解该表型如何定量表达,对表现出显着差异的四种菌株进行了更详细的研究。我们的数据表明,潜伏期的持续时间主要取决于种群中恢复生长的细胞比例。在潜伏期后观察到,只有这一部分促进了指数增长,而所有其他细胞均以存活但不增殖的状态持续存在。在测试菌株之间观察到馏分大小的显着变化,它们相差几个数量级。实际上,工业生物乙醇生产菌株Ethanol Red在107个细胞中只有11个在pH值为4.5的157mM乙酸中暴露后恢复了生长,而在耐高乙酸的分离株ATCC 96581中,这一比例是3.6x106(107个细胞中)。菌株特异性差异是由遗传决定的,是鉴定未来菌株改良的遗传目标的有价值的起点。

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