Abstract Natural genetic competence renders bacteria able to take up and, in case there is sufficient homology to the recipient’s chromosome, integrate exogenously supplied DNA. Well studied in Bacillus subtilis, genetic competence is—in several aspects—known to be differently regulated in Bacillus licheniformis. We now report on the identification of a novel, chromosomally encoded homolog of a competence inhibitor in B. licheniformis (ComI) that has hitherto only been described as a plasmid borne trait in the ancestral B. subtilis NCIB3610. Bioinformatical analysis that included 80 Bacillus strains covering 20 different species revealed a ComI encoding gene in all of the examined B. licheniformis representatives, and was identified in few ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
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...
Bacteria are small, single-cell organisms that need to survive in rapidly changing environmental con...
The genome of Bacillus licheniformis DSM13 consists of a single chromosome that has a size of 4,222,...
Abstract Quorum sensing molecules (QSMs) are involved in the regulation of complicated processes hel...
The transformation-deficient strain E26, isolated as a pHV60 insertion mutant, was used to isolate c...
We characterized a segment of chromosomal DNA from Bacillus subtilis that was required for the devel...
P>Natural competence for genetic transformation, i.e. the ability to take up DNA and stably integrat...
The degree of biodiversity among Bacillus licheniformis plasmids and their relation to other Bacillu...
Many bacteria take up DNA from their environment as part of the process of natural transformation. D...
Natural competence is the ability of certain microbes to take up exogenous DNA from the environment ...
Natural competence is the ability of certain microbes to take up exogenous DNA from the environment ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
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...
Bacteria are small, single-cell organisms that need to survive in rapidly changing environmental con...
The genome of Bacillus licheniformis DSM13 consists of a single chromosome that has a size of 4,222,...
Abstract Quorum sensing molecules (QSMs) are involved in the regulation of complicated processes hel...
The transformation-deficient strain E26, isolated as a pHV60 insertion mutant, was used to isolate c...
We characterized a segment of chromosomal DNA from Bacillus subtilis that was required for the devel...
P>Natural competence for genetic transformation, i.e. the ability to take up DNA and stably integrat...
The degree of biodiversity among Bacillus licheniformis plasmids and their relation to other Bacillu...
Many bacteria take up DNA from their environment as part of the process of natural transformation. D...
Natural competence is the ability of certain microbes to take up exogenous DNA from the environment ...
Natural competence is the ability of certain microbes to take up exogenous DNA from the environment ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Natural isolates of Bacillus subtilis are often difficult to transform due to their low genetic comp...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
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...