Jin Yong-Su, Cruz Jose, Jeffries Thomas W
Department of Food Science, University of Wisconsin-Madison, 1550 Linden Drive, Madison, WI 53706, USA.
Appl Microbiol Biotechnol. 2005 Jul;68(1):42-5. doi: 10.1007/s00253-004-1854-5. Epub 2005 Jan 6.
Xylitol production by Pichia stipitis FPL-YS30, a xyl3-delta1 mutant that metabolizes xylose using an alternative metabolic pathway, was investigated under aerobic and oxygen-limited culture conditions. Under both culture conditions, FPL-YS30 (xyl3-delta1) produced a negligible amount of ethanol and converted xylose mainly into xylitol with comparable yields (0.30 and 0.27 g xylitol/g xylose). However, xylose consumption increased five-fold under aerobic compared to oxygen-limited conditions. This suggests that the efficiency of the alternative route of xylose assimilation is affected by respiration. As a result, the FPL-YS30 strain produced 26 g/l of xylitol, and exhibited a higher volumetric productivity (0.22 g xylitol l(-1) h(-1)) under aerobic conditions.
利用毕赤酵母FPL - YS30(一种xyl3 - delta1突变体,通过替代代谢途径代谢木糖)在好氧和限氧培养条件下生产木糖醇进行了研究。在这两种培养条件下,FPL - YS30(xyl3 - delta1)产生的乙醇量可忽略不计,并且将木糖主要转化为木糖醇,产率相当(0.30和0.27克木糖醇/克木糖)。然而,与限氧条件相比,好氧条件下木糖消耗量增加了五倍。这表明木糖同化替代途径的效率受呼吸作用影响。结果,FPL - YS30菌株产生了26克/升的木糖醇,并且在好氧条件下表现出更高的体积生产力(0.22克木糖醇l(-1) h(-1))。