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基于批式和连续培养的木糖发酵酿酒酵母耐乙酸筛选策略。

Batch and continuous culture-based selection strategies for acetic acid tolerance in xylose-fermenting Saccharomyces cerevisiae.

机构信息

Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.

出版信息

FEMS Yeast Res. 2011 May;11(3):299-306. doi: 10.1111/j.1567-1364.2011.00719.x. Epub 2011 Feb 14.

Abstract

Acetic acid tolerance of Saccharomyces cerevisiae is crucial for the production of bioethanol and other bulk chemicals from lignocellulosic plant-biomass hydrolysates, especially at a low pH. This study explores two evolutionary engineering strategies for the improvement of acetic acid tolerance of the xylose-fermenting S. cerevisiae RWB218, whose anaerobic growth on xylose at pH 4 is inhibited at acetic acid concentrations >1 g L(-1) : (1) sequential anaerobic, batch cultivation (pH 4) at increasing acetic acid concentrations and (2) prolonged anaerobic continuous cultivation without pH control, in which acidification by ammonium assimilation generates selective pressure for acetic acid tolerance. After c. 400 generations, the sequential-batch and continuous selection cultures grew on xylose at pH≤4 with 6 and 5 g L(-1) acetic acid, respectively. In the continuous cultures, the specific xylose-consumption rate had increased by 75% to 1.7 g xylose g(-1) biomass h(-1) . After storage of samples from both selection experiments at -80 °C and cultivation without acetic acid, they failed to grow on xylose at pH 4 in the presence of 5 g L(-1) acetic acid. Characterization in chemostat cultures with linear acetic acid gradients demonstrated an acetate-inducible acetic acid tolerance in samples from the continuous selection protocol.

摘要

耐乙酸能力对利用木质纤维素植物生物质水解液生产生物乙醇和其他大宗化学品至关重要,尤其是在低 pH 值条件下。本研究探索了两种用于提高木糖发酵酿酒酵母 RWB218 耐乙酸能力的进化工程策略,该酵母在 pH4 下利用木糖进行厌氧生长时,乙酸浓度超过 1 g/L 就会受到抑制:(1)在递增的乙酸浓度下进行顺序厌氧、分批培养(pH4);(2)在无 pH 控制的条件下进行长时间的厌氧连续培养,其中通过铵同化酸化产生了对耐乙酸能力的选择性压力。经过大约 400 代,顺序批处理和连续选择培养可在 pH≤4 下利用 6 和 5 g/L 的乙酸生长。在连续培养中,特定的木糖消耗速率提高了 75%,达到 1.7 g 木糖/g 生物质/h。在将两个选择实验的样品分别在-80°C 下储存并在没有乙酸的情况下进行培养后,它们在存在 5 g/L 乙酸的情况下无法在 pH4 下利用木糖生长。在具有线性乙酸梯度的恒化器培养中进行的表征表明,连续选择方案的样品中存在乙酸诱导的耐乙酸能力。

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