Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic competence levels. Here we describe two methods that stimulate natural transformation. The first method uses plasmid pGSP12, which expresses the competence transcription factor ComK and stimulates competence development about 100-fold. The second method stimulates Campbell-type recombination of DNA ligation mixtures in B. subtilis by the addition of polyethylene glycol. We employed these novel methods to study the regulation of the synthetases for the lipopeptide antibiotics mycosubtilin (myc) and surfactin (srfA) in B. subtilis strain ATCC 6633. By means of lacZ reporter fusions, it was shown that the expression of srfA is > 100 times lower i...
srfA is a locus required for the production of the lipopeptide antibiotic surfactin. This locus is a...
In Bacillus subtilis, genetic competence, sporulation and antibiotic production are controlled by qu...
International audienceSynthetic engineering of bacteria aims at genetically modifying existing strai...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Using promoter exchange and gene knock-out strategies, two mutant strains, the so-called BBG116 and ...
International audienceUsing promoter exchange and gene knock-out strategies, two mutant strains, the...
Using promoter exchange and gene knock-out strategies, two mutant strains, the so-called BBG116 and ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
srfA is a locus required for the production of the lipopeptide antibiotic surfactin. This locus is a...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
srfA is a locus required for the production of the lipopeptide antibiotic surfactin. This locus is a...
In Bacillus subtilis, genetic competence, sporulation and antibiotic production are controlled by qu...
International audienceSynthetic engineering of bacteria aims at genetically modifying existing strai...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Using promoter exchange and gene knock-out strategies, two mutant strains, the so-called BBG116 and ...
International audienceUsing promoter exchange and gene knock-out strategies, two mutant strains, the...
Using promoter exchange and gene knock-out strategies, two mutant strains, the so-called BBG116 and ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
srfA is a locus required for the production of the lipopeptide antibiotic surfactin. This locus is a...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
srfA is a locus required for the production of the lipopeptide antibiotic surfactin. This locus is a...
In Bacillus subtilis, genetic competence, sporulation and antibiotic production are controlled by qu...
International audienceSynthetic engineering of bacteria aims at genetically modifying existing strai...