Strain robustness and productivity are key traits for bio-based production. Stressors, such as inhibitory compounds present in the feedstock, osmotic, temperature, and toxic products, can inhibit cell growth and productivity. The production host is often exposed to multiple stressors during fermentation. Strain tolerance to environmental stressors is a complex phenotype involving unknown genes and uncharacterized mechanisms that leads to the difficulty of phenotypic improvement by rational engineering. To solve the problem that rational engineering cannot, a new strategy that can facilitate the generation of strains with multiple complex phenotypes rapidly was developed. “Genderless strain” - a sexual Escherichia coli strain, which is capab...
ABSTRACT Strain tolerance to toxic metabolites is an important trait for many biotechnological appli...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
Strain robustness and productivity are key traits for bio-based production. Stressors, such as inhib...
Background: There is a need to replace petroleum-derived with sustainable feedstocks for chemical pr...
BackgroundThere is a need to replace petroleum-derived with sustainable feedstocks for chemical prod...
Additional file 1: Figure S1. Viability of E. coli DH1 pTRC-cydC strains. E. coli DH1 cells over-exp...
Modern bioprocessing depends on superior cellular traits, many stemming from unknown genes and gene ...
Abstract Background Microbial production of chemicals from renewable carbon sources enables a sustai...
BackgroundMicrobial production of chemicals from renewable carbon sources enables a sustainable rout...
An 84 bp in-frame duplication (K370_A396dup) within the rpoC subunit of RNA polymerase was found in ...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
With tremendous advancements in the genomics era, engineered microbes are being used as biological f...
ABSTRACT Strain tolerance to toxic metabolites is an important trait for many biotechnological appli...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
Strain robustness and productivity are key traits for bio-based production. Stressors, such as inhib...
Background: There is a need to replace petroleum-derived with sustainable feedstocks for chemical pr...
BackgroundThere is a need to replace petroleum-derived with sustainable feedstocks for chemical prod...
Additional file 1: Figure S1. Viability of E. coli DH1 pTRC-cydC strains. E. coli DH1 cells over-exp...
Modern bioprocessing depends on superior cellular traits, many stemming from unknown genes and gene ...
Abstract Background Microbial production of chemicals from renewable carbon sources enables a sustai...
BackgroundMicrobial production of chemicals from renewable carbon sources enables a sustainable rout...
An 84 bp in-frame duplication (K370_A396dup) within the rpoC subunit of RNA polymerase was found in ...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
With tremendous advancements in the genomics era, engineered microbes are being used as biological f...
ABSTRACT Strain tolerance to toxic metabolites is an important trait for many biotechnological appli...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...