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A new mutation breeding method for Streptomyces albulus by an atmospheric and room temperature plasma
TLDR
It is shown that the ARTP plasma jet has a strong mutagenic effect on Streptomyces albulus, and the e-PL yield was improved. Expand
Improved 1, 2, 4-butanetriol production from an engineered Escherichia coli by co-expression of different chaperone proteins
TLDR
The potential application of chaperone proteins in microorganism engineering to get high production of target compounds as an effective and valuable tool is shown. Expand
budC knockout in Klebsiella pneumoniae for bioconversion from glycerol to 1,3‐propanediol
TLDR
The results of the mutant fed‐batch fermentation showed that the 1,3‐PDO concentration, productivity per cell dry weight, and conversion rate showed increasing by 10%, 15%, and 11% compared with the parent strain, which implies that K. pneumoniae possesses a pathway of the 2, 3‐BD cycle as a replenishment pathway. Expand
Advances in 2-phenylethanol production from engineered microorganisms.
TLDR
The metabolic engineering strategies applied to microorganisms for increasing bioproduction of 2-PE are reviewed, current problems are addressed, and further improvements are proposed. Expand
Ethanol fermentation from non-detoxified lignocellulose hydrolysate by a multi-stress tolerant yeast Candida glycerinogenes mutant.
TLDR
C. glycerinogenes UG-21 with high tolerance to elevated temperature, acetic acid, and furfural was obtained and applied in lignocellulose-based ethanol production and exhibited highly-efficient degradation ability tofurfural. Expand
Optimization of medium constituents for ε-poly-L-lysine fermentation with response surface methodology.
TLDR
Single-factor experiments were applied to screen optimal carbon and nitrogen sources that affect the yield of a ε-PL-producing strain, Streptomyces violaceusniger, and showed that the main factors that affect ɛ-PL production were glucose, carbon source; peptone, organic nitrogen source; and (NH(4)SO(4), inorganic nitrogen source. Expand
Modification of an engineered Escherichia coli by a combined strategy of deleting branch pathway, fine-tuning xylose isomerase expression, and substituting decarboxylase to improve 1,2,4-butanetriol
TLDR
This work provided some effective strategies for improving BT production by balancing the carbon flux redistribution and reducing power regeneration. Expand
The role of budABC on 1,3-propanediol and 2,3-butanediol production from glycerol in Klebsiella pneumoniae CICIM B0057
TLDR
Reduced BudA and BudB activity decreased the BDO concentration by 35% and led to a 10% increase in the yield of 1,3-PD, which suggests the activities of BudAand BudB could be key factors in the production of BDO from glycerol in Klebsiella. Expand
Gene expression profiles of Candida glycerinogenes under combined heat and high-glucose stresses.
TLDR
The wider responsive gene spectrum and the activated expression of ribosomal function related genes might be key and prerequisite factors for the excellent tolerance to the combined stress of C. glycerinogenes. Expand
Role of CgHOG1 in Stress Responses and Glycerol Overproduction of Candida glycerinogenes
TLDR
The results suggested that CgHOG1 plays important roles in morphogenesis and multi-stress tolerance, and the growth and glycerol overproduction under osmotic stress are heavily dependent on Cg HOG1 kinase. Expand
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