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Control of Competence for DNA Transformation in Streptococcus suis by Genetically Transferable Pherotypes
- Source :
- PLoS ONE, Vol 9, Iss 6, p e99394 (2014), PLoS ONE, PLoS ONE 9 (2014) 6, PLoS ONE, 9(6)
- Publication Year :
- 2014
-
Abstract
- Here we show that S. suis, a major bacterial pathogen of pigs and emerging pathogen in humans responds to a peptide pheromone by developing competence for DNA transformation. This species does not fall within any of the phylogenetic clusters of streptococci previously shown to regulate competence via peptide pheromones suggesting that more species of streptococci may be naturally competent. Induction of competence was dependent on ComX, a sigma factor that controls the streptococcal late competence regulon, extracellular addition of a comX-inducing peptide (XIP), and ComR, a regulator of comX. XIP was identified as an N-terminally truncated variant of ComS. Different comS alleles are present among strains of S. suis. These comS alleles are not functionally equivalent and appear to operate in conjuction with a cognate ComR to regulate comX through a conserved comR-box promoter. We demonstrate that these ‘pherotypes’ can be genetically transferred between strains, suggesting that similar approaches might be used to control competence induction in other lactic acid bacteria that lack ComR/ComS homologues but possess comX and the late competence regulon. The approaches described in this paper to identify and optimize peptide-induced competence may also assist other researchers wishing to identify natural competence in other bacteria. Harnessing natural competence is expected to accelerate genetic research on this and other important streptococcal pathogens and to allow high-throughput mutation approaches to be implemented, opening up new avenues for research.
- Subjects :
- Streptococcus suis
Gene Transfer
medicine.disease_cause
haemophilus-influenzae
Sigma factor
pneumoniae
Peptide sequence
Genetics
Horizontal Gene Transfer
Mutation
Multidisciplinary
DNA Transformation Competence
horizontal gene-transfer
Gram Positive Bacteria
Bacteriologie
Natural competence
Bacteriology, Host Pathogen Interaction & Diagnostics
thermophilus
regulator
Horizontal gene transfer
Medicine
Research Article
Evolutionary Processes
Science
Molecular Sequence Data
Biology
system
Microbiology
bacterial transformation
Molecular Genetics
Bacterial Proteins
expression
medicine
Amino Acid Sequence
Host-Microbe Interactomics
Molecular Biology
Host Pathogen Interaction & Diagnostics
Evolutionary Biology
Bacterial Evolution
peptide pheromone
Biology and Life Sciences
Bacteriology
biology.organism_classification
Organismal Evolution
Host Pathogen Interactie & Diagnostiek
Regulon
Bacteriologie, Host Pathogen Interactie & Diagnostiek
Microbial Evolution
WIAS
activation
Transcription Factors
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 9
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....56b2911006b423dece4dc0ab21af5a08