运动发酵单胞菌
大肠杆菌
非生物胁迫
非生物成分
生物技术
生物
化学
微生物学
食品科学
生物化学
生态学
生物燃料
乙醇燃料
基因
作者
Jungwoo Yang,Ha Eun Kim,Young Hoon Jung,Jungyeon Kim,Do Hyoung Kim,Adrian R. Walmsley,Kyoung Heon Kim
标识
DOI:10.1186/s13068-020-01790-0
摘要
Abstract Background Pretreatment processes and subsequent enzymatic hydrolysis are prerequisites to utilize lignocellulosic sugar for fermentation. However, the resulting hydrolysate frequently hinders fermentation processes due to the presence of inhibitors and toxic products (e.g., ethanol). Thus, it is crucial to develop robust microbes conferring multi-stress tolerance. Results Zmo0994, a functionally uncharacterized protein from Zymomonas mobilis , was identified and characterized for the first time. A major effect of Zmo0994 was a significant enhancement in the tolerance to abiotic stresses such as ethanol, furfural, 5′-hydroxymethylfurfural and high temperature, when expressed in Escherichia coli . Through transcriptome analysis and in vivo experiments, the cellular mechanism of this protein was revealed as due to its ability to trigger genes, involved in aerobic respiration for ATP synthesis. Conclusions These findings have significant implications that might lead to the development of robust microbes for the highly efficient industrial fermentation processes.
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