School of Food and Biological Engineering, Jiangsu University, Zhenjiang, 212013, People's Republic of China.
School of Food Science and Technology, Jiang University, Wuxi, 214000, People's Republic of China.
Appl Microbiol Biotechnol. 2021 Jul;105(13):5565-5575. doi: 10.1007/s00253-021-11392-x. Epub 2021 Jul 3.
Most of the oleaginous microorganisms cannot assimilate xylose in the presence of glucose, which is the major bottleneck in the bioconversion of lignocellulose to biodiesel. Our present study revealed that overexpression of xylose isomerase (XI) gene xylA or xylulokinase (XK) gene xks1 increased the xylose consumption by 25 to 37% and enhanced the lipid content by 8 to 28% during co-fermentation of glucose and xylose. In xylA overexpressing strain Mc-XI, the activity of XI was 1.8-fold higher and the mRNA level of xylA at 24 h and 48 h was 11- and 13-fold higher than that of the control, respectively. In xks1 overexpressing strain Mc-XK, the mRNA level of xks1 was 4- to 11-fold of that of the control strain and the highest XK activity of 950 nmol min mg at 72 h which was 2-fold higher than that of the control. Additionally, expression of a translational fusion of xylA and xks1 further enhanced the xylose utilization rate by 45%. Our results indicated that overexpression of xylA and/or xks1 is a promising strategy to improve the xylose and glucose co-utilization, alleviate the glucose repression, and produce lipid from lignocellulosic biomass in the oleaginous fungus M. circinelloides. KEY POINTS: • Overexpressing xylA or xks1 increased the xylose consumption and the lipid content. • The xylose isomerase activity and the xylA mRNA level were enhanced in strain Mc-XI. • Co-expression of xylA and xks1 further enhanced the xylose utilization rate by 45%.
大多数油脂微生物在葡萄糖存在的情况下不能同化木糖,这是木质纤维素生物转化为生物柴油的主要瓶颈。本研究表明,过表达木糖异构酶(XI)基因 xylA 或木酮糖激酶(XK)基因 xks1 可分别提高 25%至 37%的木糖消耗和 8%至 28%的脂质含量,在葡萄糖和木糖共发酵过程中。在 xylA 过表达菌株 Mc-XI 中,XI 的活性提高了 1.8 倍,24 h 和 48 h 的 xylA mRNA 水平分别比对照提高了 11 倍和 13 倍。在 xks1 过表达菌株 Mc-XK 中,xks1 的 mRNA 水平比对照菌株高 4 至 11 倍,72 h 时最高 XK 活性为 950 nmol min mg,比对照高 2 倍。此外,xylA 和 xks1 的翻译融合表达进一步提高了 45%的木糖利用率。我们的结果表明,过表达 xylA 和/或 xks1 是提高木质纤维素生物量中木糖和葡萄糖共利用、减轻葡萄糖抑制、生产油脂的有前途的策略。关键点:
过表达 xylA 或 xks1 可提高木糖消耗和脂质含量。
在 Mc-XI 菌株中,木糖异构酶活性和 xylA mRNA 水平增强。
xylA 和 xks1 的共表达进一步提高了 45%的木糖利用率。