| Literature DB >> 21629774 |
Yangkai Duan1, Zhi Zhu, Ke Cai, Xiaoming Tan, Xuefeng Lu.
Abstract
Biodiesel is a renewable alternative to petroleum diesel fuel that can contribute to carbon dioxide emission reduction and energy supply. Biodiesel is composed of fatty acid alkyl esters, including fatty acid methyl esters (FAMEs) and fatty acid ethyl esters (FAEEs), and is currently produced through the transesterification reaction of methanol (or ethanol) and triacylglycerols (TAGs). TAGs are mainly obtained from oilseed plants and microalgae. A sustainable supply of TAGs is a major bottleneck for current biodiesel production. Here we report the de novo biosynthesis of FAEEs from glucose, which can be derived from lignocellulosic biomass, in genetically engineered Escherichia coli by introduction of the ethanol-producing pathway from Zymomonas mobilis, genetic manipulation to increase the pool of fatty acyl-CoA, and heterologous expression of acyl-coenzyme A: diacylglycerol acyltransferase from Acinetobacter baylyi. An optimized fed-batch microbial fermentation of the modified E. coli strain yielded a titer of 922 mg L(-1) FAEEs that consisted primarily of ethyl palmitate, -oleate, -myristate and -palmitoleate.Entities:
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Year: 2011 PMID: 21629774 PMCID: PMC3100327 DOI: 10.1371/journal.pone.0020265
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Constructed de novo biosynthetic pathway of fatty acid ethyl esters in E. coli.
PDH: pyruvate dehydrogenase; ACC: acetyl-CoA carboxylase; BCCP: biotin carboxyl carrier protein; BC: biotin carboxylase; CT: carboxyltransferase; PDC: pyruvate decarboxylase; ADH: alcohol dehydrogenase; TE: thioesterase; FadD: fatty acyl-CoA synthase; FadE: acyl-CoA dehydrogenase; WS/DGAT: wax synthase/acyl-coenzyme A: diacylglycerol acyltransferase.
FAEE production of E. coli mutant strain BL21 (ΔfadE)/pXT11/pMSD8/pMSD15 under varied fed-batch fermentation conditions described in Materials and Methods.
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| Maximum production of FAEE (mg L−1) |
| Initial culture medium | LB | 735 |
| 2LB | 922 | |
| 2LB+phosphates | 328 | |
| Feeding conditions | 75 g/0.22 ml min−1 | 588 |
| 100 g/0.22 ml min−1 | 922 | |
| 150 g/0.22 ml min−1 | 581 | |
| 200 g/0.11 ml min−1 | 464 | |
| Culture temperature | 30°C | 922 |
| 25°C | 652 | |
| Time for starting induction | 4 hr | 333 |
| 11 hr | 922 | |
| 16 hr | 682 |
Figure 2Analysis on fed-batch fermentations under the optimized conditions described in Materials and Methods.
(a) Cell growth, (b) Ethanol production, (c) FAEE production of three E. coli mutant strains, BL21 (DE3)/pXT11 and BL21 (DE3)/pMSD8/pMSD15/pXT11 and BL21 (ΔfadE)/pMSD8/pMSD15/pXT11. (d) Three paralleled experiments for FAEE production of the strain BL21 (ΔfadE)/pMSD8/pMSD15/pXT11.
Figure 3Composition of fatty acid ethyl esters with different carbon chain length and saturation degree during the optimized fed-batch fermentation of E. coli mutant strain BL21 (ΔfadE)/pMSD8/pMSD15/pXT11.
Plasmids constructed and used in this study.
| Plasmids | Relevant characteristic(s) | Source of reference(s) |
| pMSD8 | Apr; pFN476 derivative containing |
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| pMSD15 | Cmr; pACYA184 derivative containing |
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| pXL67 | Apr; pET28b derivative containing | Gift from Khosla |
| pXL72 | Kmr; pCR-Blunt vector derivative containing | Gift from Khosla |
| pKD46 | Apr; Vector expressing the Red genes (γ, β, and |
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| pKD4 | Apr Kmr; Template plasmid for |
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| pCP20 | Apr Cmr; Helper plasmid, |
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| pXT9 | Apr; pET28b derivative containing | This study |
| pXT10 | Apr; pET28b derivative containing | This study |
| pXT11 | Kmr; pET28b derivative containing | This study |