| Literature DB >> 29720171 |
Jinfeng Sun1,2, Kangming Tian3, Jie Wang3, Zixing Dong3, Xiaoguang Liu3, Kugenthiren Permaul4, Suren Singh4, Bernard A Prior5, Zhengxiang Wang6,7.
Abstract
BACKGROUND: Lignocellulosic ethanol could offer a sustainable source to meet the increasing worldwide demand for fuel. However, efficient and simultaneous metabolism of all types of sugars in lignocellulosic hydrolysates by ethanol-producing strains is still a challenge.Entities:
Keywords: Escherichia coli; Ethanol; Lignocellulosic hydrolysate; Thermo-regulated glucose utilization
Mesh:
Substances:
Year: 2018 PMID: 29720171 PMCID: PMC5930954 DOI: 10.1186/s12934-018-0915-x
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Strains and plasmids used in this study
| Strains or plasmids | Genotype/relevant characteristics | Source or references |
|---|---|---|
| Strains | ||
| | Wild isolate | [ |
| | B0013, Δ | [ |
| | B0013-1030, | [ |
| | B0013-1030H, Δ | This study |
| | B0013-1031H, pEtac-PA | This study |
| | B0013-1030H, ∆ | This study |
| | B0013-2020H ∆ | This study |
| | B0013-2021H, pEtac-PA | This study |
| Plasmid | ||
| pMD19-T | TaKaRa | |
| pPL-kan | [ | |
| pT-kan-cIts857-pR–pL- | This study | |
| pT- | This study | |
| pEtac-PA | [ | |
a xylH* represents reversely mutated xylH ([20])
Fig. 1Construction and characterization of regulated glucose-utilizing E. coli B0013-2021H. A Modified metabolic pathways of E. coli B0013 and its derivatives; B development flowchart of E. coli B0013-2021H and relatives; C growth characterization of E. coli B0013-2021H on glucose at different temperatures. The cells were cultivated on M9 plates with 5 g/l of glucose at 34 or 42 °C. a: E. coli B0013; b: B0013-1031H; c: B0013-2020H; d: B0013-2021H; D (a) ptsG mRNA fold change quantified by real-time quantitative PCR; (b) Expression level of phosphoenolpyruvate:glucose phosphotransferase in E. coli B0013-2021H at different incubation temperatures; E growth characterization of E. coli B0013-2021H and B0013-1031H. The cells grew in M9 medium supplemented with 5 g/l of glucose at 34, 37 or 42 °C and 200 rpm for 12 h. The cell densities were determined at 600 nm
Fig. 2Ethanol fermentation by E. coli B0013-2021HPA. In 500-ml shaking flasks containing 100 ml of M9 medium with 5 g/l of xylose and 50 g/l of glucose, the cultures were cultivated at 34 °C and 200 rpm during aerobic phase and ethanol fermentation was carried out statically at 42 °C using a “two-phase-two-temperature” strategy. Solid line: B0013-2021HPA; dotted line: B0013-1031HPA. Solid square: xylose; solid circle: glucose; triangle: ethanol; circle: cell mass
Fig. 3Ethanol fermentation of E. coli B0013-2021HPA from corncob hydrolysate in a 7-l bioreactor. Pre-cultured cells of B0013-2021HPA (a) were inoculated into 3 l of modified M9 medium supplemented with 300 ml of corncob hydrolysate. Using a “two-phase-two-temperature” strategy as mentioned in “Methods”, cell growth phase was controlled at 34 °C under aerobic conditions and ethanol fermentation was conducted at 42 °C under oxygen-limited conditions. As for B0013-1031HPA (b), temperature was set at 37 °C, its optimal temperature, for the two phases. Solid circle: glucose; solid triangle: galactose; solid diamond: arabinose; solid square: xylose; triangle: ethanol; circle: cell mass; dotted arrow: temperature switching point (from 34 to 42 °C), 45 min ahead of transition to oxygen-limited condition; arrow: time point of addition of 300 ml of the corncob hydrolysate
Consumption rates of sugars and ethanol productivity by B0013-2021HPA and B0013-1031HPA in a 7-l bioreactor
| Strains | Consumption rate of sugarsa [g/(l·h)] | Productivity of ethanolb [g/(l·h)] | ||
|---|---|---|---|---|
| Whole process | Cell growth | Fermentation | ||
| B0013-2021HPA | 5.90 | 3.52 | 8.28 | 4.06 |
| B0013-1031HPA | 4.74 | 3.67 | 5.81 | 2.85 |
a Consumption rate of sugars was calculated based on the sugars consumed during aerobic phase or fermentation phase
b Productivity of ethanol was calculated based on the time during fermentation phase