microaerobic fermentation
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Molecules ◽  
2021 ◽  
Vol 26 (23) ◽  
pp. 7173
Author(s):  
Tao Cheng ◽  
Xiuhong Liang ◽  
Yaqun Wang ◽  
Ningning Chen ◽  
Dexin Feng ◽  
...  

Lactate and isoprene are two common monomers for the industrial production of polyesters and synthetic rubbers. The present study tested the co-production of D-lactate and isoprene by engineered Escherichia coli in microaerobic conditions. The deletion of alcohol dehydrogenase (adhE) and acetate kinase (ackA) genes, along with the supplementation with betaine, improved the co-production of lactate and isoprene from the substrates of glucose and mevalonate. In fed-batch studies, microaerobic fermentation significantly improved the isoprene concentration in fermentation outlet gas (average 0.021 g/L), compared with fermentation under aerobic conditions (average 0.0009 g/L). The final production of D-lactate and isoprene can reach 44.0 g/L and 3.2 g/L, respectively, through fed-batch microaerobic fermentation. Our study demonstrated a dual-phase production strategy in the co-production of isoprene (gas phase) and lactate (liquid phase). The increased concentration of gas-phase isoprene could benefit the downstream process and decrease the production cost to collect and purify the bio-isoprene from the fermentation outlet gas. The proposed microaerobic process can potentially be applied in the production of other volatile bioproducts to benefit the downstream purification process.


2020 ◽  
Author(s):  
Christoph Schilling ◽  
Mattheos A.G. Koffas ◽  
Volker Sieber ◽  
Jochen Schmid

AbstractTranscriptional perturbation using inactivated CRISPR-nucleases (dCas) is a common method in eukaryotic organisms. While rare examples of dCas9 based tools for prokaryotes have been described, multiplexing approaches are limited due to the used effector nuclease. For the first time, a dCas12a derived tool for the targeted activation and repression of genes was developed. Therefore, a previously described SoxS activator domain was linked to dCas12a to enable programmable activation of gene expression. Proof of principle of transcriptional regulation was demonstrated based on fluorescence reporter assays using the alternative host organism Paenibacillus polymyxa as well as Escherichia coli. Single target and multiplex CRISPR interference targeting the exopolysaccharide biosynthesis of P. polymyxa was shown to emulate polymer compositions of gene knock-outs. Simultaneous expression of 11 gRNAs targeting multiple lactate dehydrogenases and a butanediol dehydrogenase resulted in decreased lactate formation, as well as an increased butanediol production in microaerobic fermentation processes. Even though Cas12a is more restricted in terms of its genomic target sequences compared to Cas9, its ability to efficiently process its own guide RNAs in vivo makes it a promising tool to orchestrate sophisticated genetic reprogramming of bacterial cells or to screen for engineering targets in the genome. The developed tool will accelerate metabolic engineering efforts in the alternative host organism P. polymyxa and might be also applied for other bacterial cell factories.


2020 ◽  
Vol 104 (13) ◽  
pp. 5773-5785
Author(s):  
Kathiresan Pandi ◽  
Ashish Singh Chauhan ◽  
Jaya A. Gupta ◽  
Anurag S. Rathore

2016 ◽  
Vol 16 (5) ◽  
pp. fow058 ◽  
Author(s):  
Nurzhan Kuanyshev ◽  
Diletta Ami ◽  
Lorenzo Signori ◽  
Danilo Porro ◽  
John P. Morrissey ◽  
...  

2012 ◽  
Vol 167 (4) ◽  
pp. 909-917 ◽  
Author(s):  
Manar Arica Alattar ◽  
Terrence R. Green ◽  
Jordan Henry ◽  
Vitalie Gulca ◽  
Mikias Tizazu ◽  
...  

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