Expression of competence genes in Bacillus subtilis
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Summary
A set of competence (com) mutants of Bacillus subtilis was constructed by using Tn917lacZ as a mutagen and it is concluded that expression of com genes is probably regulated transcriptionally and in a growth stage-specific manner.
- Type
- article
- Published
- 1987-07-01
- Cited by
- 235
- References
- 28
- OpenAlex
- https://openalex.org/W1962830614
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:45782272
Keywords
Biology, Bacillus subtilis, Mutant, Gene, Genetics
References
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- Macromolecular Synthesis in Bacillus subtilis During Development of the Competent State
- Citric Acid Cycle: Gene-Enzyme Relationships in Bacillus subtilis
- Effect of stage 0 sporulation mutations on subtilisin expression
- Identification of the promoter for a peptide antibiotic biosynthesis gene from Bacillus brevis and its regulation in Bacillus subtilis
- Isolation and characterization of Tn917lac-generated competence mutants of Bacillus subtilis
- REQUIREMENTS FOR TRANSFORMATION IN BACILLUS SUBTILIS
- Genetic aspects of bacterial endospore formation.
- Enrichment of Bacillus subtilis Transformants by Zonal Centrifugation
- Characterization of the spo0A locus and its deduced product.
- Transformation and transduction in Bacillus subtilis: evidence for separate modes of recombinant formation.
- New Ways to Study Developmental Genes in Spore-Forming Bacteria
- Properties of Bacillus subtilis 168 derivatives freed of their natural prophages.
- Symposium on bacterial spores: II. Genetics of sporulation in Bacillus subtilis Marburg.
- DNA-damage-inducible (din) loci are transcriptionally activated in competent Bacillus subtilis.
- Regulation of a promoter that is utilized by minor forms of RNA polymerase holoenzyme in Bacillus subtilis.
- Purification of Competent Cells in the Bacillus subtilis Transformation System
- New RNA polymerase sigma factor under spo0 control in Bacillus subtilis.
- Regulation of spo0H, an early sporulation gene in bacilli
- Interactions between exogenous deoxyribonucleic acid and membrane vesicles isolated from competent and noncompetent Bacillus subtilis
Cited by
- The DegS/DegU and ComP/ComA two-component systems are part of a network controlling degradative enzyme synthesis and competence in Bacillus subtilis.
- Mutational Analysis and Membrane Topology of ComP, a Quorum-Sensing Histidine Kinase of Bacillus subtilis Controlling Competence Development
- Exploring ComQXPA quorum-sensing diversity and biocontrol potential of Bacillus spp. isolates from tomato rhizoplane
- ComGA-RelA interaction and persistence in the Bacillus subtilis K-State
- Chance and Necessity in Bacillus subtilis Development
- Investigation of quorum sensing process in Bacillus licheniformis
- Competence Pheromones in Bacteria
- Maltose- und Maltodextrin-Verwertung in Bacillus subtilis
- MreB-Dependent Inhibition of Cell Elongation during the Escape from Competence in Bacillus subtilis
- Entwicklung neuartiger Wirt - Vektor Systeme mit breitem Wirtsspektrum zum funktionsbasierten Screening von Metagenombanken
- Critical roles of spo0A and spo0H in vegetative alkaline phosphatase production in Bacillus subtilis
- MecA dampens transitions to spore, biofilm exopolysaccharide and competence expression by two different mechanisms
- Role of sigma H in expression of the fumarase gene (citG) in vegetative cells of Bacillus subtilis 168
- A membrane protein with similarity to N-methylphenylalanine pilins is essential for DNA binding by competent Bacillus subtilis
- A ComGA‐dependent checkpoint limits growth during the escape from competence
- Sequential action of two-component genetic switches regulates the PHO regulon in Bacillus subtilis
- Cloning and characterization of a cluster of linked Bacillus subtilis late competence mutations
- A temporal signal, independent of agr, is required for hla but not spa transcription in Staphylococcus aureus
- Cloning and characterization of the regulatory Bacillus subtilis competence genes comA and comB
- Structure and expression of the cytochrome aa3 regulatory gene ctaA of Bacillus subtilis
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