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Zinc, magnesium, and calcium ion supplementation confers tolerance to acetic acid stress in industrial Saccharomyces cerevisiae utilizing xylose

机译:补充锌,镁和钙离子可提高利用木糖的工业酿酒酵母对乙酸胁迫的耐受性

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摘要

Lignocellulosic biomass is a potential substrate for ethanol production. However, pretreatment of lignocellulosic materials produces inhibitory compounds such as acetic acid, which negatively affect ethanol production by Saccharomyces cerevisiae. Supplementation of the medium with three metal ions (Zn2+, Mg2+, and Ca2+) increased the tolerance of S. cerevisiae toward acetic acid compared to the absence of the ions. Ethanol production from xylose was most improved (by 34%) when the medium was supplemented with 2 mM Ca2+, followed by supplementation with 3.5 mM Mg2+ (29% improvement), and 180 mu M Zn2+ (26% improvement). Higher ethanol production was linked to high cell viability in the presence of metal ions. Comparative transcriptomics between the supplemented cultures and the control suggested that improved cell viability resulted from the induction of genes controlling the cell wall and membrane. Only one gene, FIT2, was found to be up-regulated in common between the three metal ions. Also up-regulation of HXT1 and TKL1 might enhance xylose consumption in the presence of acetic acid. Thus, the addition of ionic nutrients is a simple and cost-effective method to improve the acetic acid tolerance of S. cerevisiae.
机译:木质纤维素生物质是乙醇生产的潜在底物。但是,木质纤维素材料的预处理会产生抑制性化合物,例如乙酸,会对啤酒酵母产生乙醇产生不利影响。与不添加离子相比,向培养基中添加三种金属离子(Zn2 +,Mg2 +和Ca2 +)可提高酿酒酵母对乙酸的耐受性。当向培养基中添加2 mM Ca2 +,然后添加3.5 mM Mg2 +(改善29%)和180μM Zn2 +(改善26%)时,木糖的乙醇产量得到最大改善(​​提高了34%)。在金属离子存在下,较高的乙醇产量与较高的细胞活力有关。补充的培养物和对照之间的转录组学比较表明,细胞活力的提高是由于诱导了控制细胞壁和细胞膜的基因的诱导。发现只有一种基因FIT2在三种金属离子之间共有上调。同样,在乙酸存在下,HXT1和TKL1的上调可能会增加木糖的消耗。因此,添加离子养分是提高啤酒酵母对乙酸的耐受性的简单且经济有效的方法。

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