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Xylose fermentation efficiency and inhibitor tolerance of the recombinant industrial Saccharomyces cerevisiae strain NAPX37

机译:重组工业酿酒酵母菌株NAPX37的木糖发酵效率和抑制剂耐受性

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Industrial yeast strains with good xylose fermentation ability and inhibitor tolerance are important for economical lignocellulosic bioethanol production. The flocculating industrial Saccharomyces cerevisiae strain NAPX37, harboring the xylose reductase-xylitol dehydrogenase (XR-XDH)-based xylose metabolic pathway, displayed efficient xylose fermentation during batch and continuous fermentation. During batch fermentation, the xylose consumption rates at the first 36 h were similar (1.37 g/L/h) when the initial xylose concentrations were 50 and 75 g/L, indicating that xylose fermentation was not inhibited even when the xylose concentration was as high as 75 g/L. The presence of glucose, at concentrations of up to 25 g/L, did not affect xylose consumption rate at the first 36 h. Strain NAPX37 showed stable xylose fermentation capacity during continuous ethanol fermentation using xylose as the sole sugar, for almost 1 year. Fermentation remained stable at a dilution rate of 0.05/h, even though the xylose concentration in the feed was as high as 100 g/L. Aeration rate, xylose concentration, and MgSO4 concentration were found to affect xylose consumption and ethanol yield. When the xylose concentration in the feed was 75 g/L, a high xylose consumption rate of 6.62 g/L/h and an ethanol yield of 0.394 were achieved under an aeration rate of 0.1 vvm, dilution rate of 0.1/h, and 5 mM MgSO4. In addition, strain NAPX37 exhibited good tolerance to inhibitors such as weak acids, furans, and phenolics during xylose fermentation. These findings indicate that strain NAPX37 is a promising candidate for application in the industrial production of lignocellulosic bioethanol.
机译:具有良好的木糖发酵能力和抑制剂耐受性的工业酵母菌株对于经济的木质纤维素生物乙醇生产很重要。具有木糖还原酶-木糖醇脱氢酶(XR-XDH)的木糖代谢途径的絮凝工业酿酒酵母菌株NAPX37在分批和连续发酵过程中表现出有效的木糖发酵。在分批发酵过程中,当初始木糖浓度分别为50和75 g / L时,最初36 h的木糖消耗速率相似(1.37 g / L / h),这表明即使当木糖浓度为50时,木糖发酵也不会受到抑制。高达75克/升。在最初的36小时内,浓度高达25 g / L的葡萄糖的存在不会影响木糖的消耗速度。在以木糖为唯一糖的连续乙醇发酵过程中,菌株NAPX37表现出稳定的木糖发酵能力,持续了近1年。即使进料中的木糖浓度高达100 g / L,发酵也能以0.05 / h的稀释率保持稳定。发现曝气速率,木糖浓度和MgSO4浓度会影响木糖消耗和乙醇收率。当进料中的木糖浓度为75 g / L时,在0.1 vvm的曝气速率,0.1 / h的稀释速率和5的曝气速率下,木糖的高消耗率为6.62 g / L / h,乙醇产率为0.394。 mM MgSO4。另外,菌株NAPX37在木糖发酵过程中对抑制剂如弱酸,呋喃和酚具有良好的耐受性。这些发现表明,菌株NAPX37是在木质纤维素生物乙醇的工业生产中应用的有前途的候选者。

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