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Comparison of Scheffersomyces stipitis strains CBS 5773 and CBS 6054 with regard to their xylose metabolism: implications for xylose fermentation

机译:Scheffersomyces stipitis菌株CBS 5773和CBS 6054在木糖代谢方面的比较:对木糖发酵的影响

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摘要

The various strains of Scheffersomyces stipitis (Pichia stipitis) differ substantially with respect to their ability to ferment xylose into ethanol. Two P. stipitis strains CBS 5773 and CBS 6054 have been most often used in literature but comparison of their performance in xylose fermentation under identical conditions has not been reported so far. Conversion of xylose (22 g/L) by each of these P. stipitis strain was analyzed under anaerobic and microaerobic conditions. Ethanol yields of ∼0.41 g/g were independent of strain and conditions used. Glycerol and acetate were formed in constant yields of 0.006 g/g and 0.02 g/g, respectively. Xylitol formation decreased from ∼0.08 g/g to ∼0.05 g/g upon switch from anaerobic to microaerobic conditions. Specific activities of enzymes of the two-step oxidoreductive xylose conversion pathway (xylose reductase and xylitol dehydrogenase) matched for both strains within limits of error. When xylose was offered at 76 g/L under microaerobic reaction conditions, ethanol yields were still high (0.37–0.39 g/g) for both strains even though the xylitol yields (0.12–0.13 g/g) were increased as compared to the conditions of low xylose concentration. P. stipitis strains CBS 5773 and CBS 6054 are therefore identical by the criteria selected and show useful performance during conversion of xylose into ethanol, irrespective of the supply of oxygen.
机译:裂殖酵母(毕赤酵母)的各种菌株在将木糖发酵成乙醇的能力方面有很大不同。在文献中最常使用两种树干毕赤酵母菌株CBS 5773和CBS 6054,但迄今为止尚未报道过在相同条件下木糖发酵性能的比较。在厌氧和微需氧条件下,分析了这些毕赤酵母菌株中木糖的转化率(22 g / L)。乙醇产量约为0.41 g / g,与所使用的菌株和条件无关。甘油和乙酸盐的形成率分别为0.006 g / g和0.02 g / g。从厌氧条件转换为微需氧条件后,木糖醇的形成从约0.08 g / g降低至约0.05 g / g。两步氧化还原木糖转化途径的酶(木糖还原酶和木糖醇脱氢酶)的比活在误差范围内与两种菌株相匹配。当在微需氧反应条件下以76 g / L提供木糖时,两种菌株的乙醇收率仍然很高(0.37–0.39 g / g),即使与条件相比木糖醇收率(0.12-0.13 g / g)有所增加木糖浓度低。因此,按照所选择的标准,树干毕赤酵母菌株CBS 5773和CBS 6054是相同的,并且在木糖转化为乙醇的过程​​中表现出有用的性能,而与氧气的供应无关。

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