Competence is one of the most successful survival strategies in bacteria. This powerful tactic synchronizes the production of antimicrobial compounds which eliminates competitors, providing genomic material availability for subsequent DNA uptake. Yet, competence regulation in streptococci is only partially understood. Particularly, the molecular mechanisms explaining how activation is restricted to a subpopulation (bimodality) and to a limited window of time (shut-off) are unknown. In this thesis, we aimed to decipher those complex mechanisms in the major commensal species Streptococcus salivarius. Combining molecular biology, biochemistry, microscopy and mathematical simulations, we unveil new regulatory pathways mastering ComRS, the major...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
Competence for natural transformation extensively contributes to genome evolution and the rapid adap...
Competence is a mechanism of stable DNA acquisition that is widespread among bacteria. In streptococ...
Competence is one of the most efficient bacterial evolutionary and adaptative strategies by synchron...
Competence is one of the most efficient bacterial evolutionary and adaptative strategies by synchron...
In bacteria, phenotypic heterogeneity in an isogenic population compensates for the lack of genetic ...
Competence for DNA transformation is a major strategy for bacterial adaptation and survival. Yet, th...
Competence for DNA transformation is a major strategy for bacterial adaptation and survival. Yet, th...
Entry in competence state and subsequent extracellular DNA uptake generally provokes a concomitant s...
In bacteria, phenotypic heterogeneity in an isogenic population compensates for the lack of genetic ...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
peer reviewedCompetence for DNA transformation is a major strategy for bacterial adaptation and sur...
In many streptococci, competence for natural DNA transformation is regulated by the Rgg-type regulat...
Competence allows bacteria to internalize exogenous DNA fragments for the acquisition of new phenoty...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
Competence for natural transformation extensively contributes to genome evolution and the rapid adap...
Competence is a mechanism of stable DNA acquisition that is widespread among bacteria. In streptococ...
Competence is one of the most efficient bacterial evolutionary and adaptative strategies by synchron...
Competence is one of the most efficient bacterial evolutionary and adaptative strategies by synchron...
In bacteria, phenotypic heterogeneity in an isogenic population compensates for the lack of genetic ...
Competence for DNA transformation is a major strategy for bacterial adaptation and survival. Yet, th...
Competence for DNA transformation is a major strategy for bacterial adaptation and survival. Yet, th...
Entry in competence state and subsequent extracellular DNA uptake generally provokes a concomitant s...
In bacteria, phenotypic heterogeneity in an isogenic population compensates for the lack of genetic ...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
peer reviewedCompetence for DNA transformation is a major strategy for bacterial adaptation and sur...
In many streptococci, competence for natural DNA transformation is regulated by the Rgg-type regulat...
Competence allows bacteria to internalize exogenous DNA fragments for the acquisition of new phenoty...
Small distortions in transcriptional networks might lead to drastic phenotypical changes, especially...
Competence for natural transformation extensively contributes to genome evolution and the rapid adap...
Competence is a mechanism of stable DNA acquisition that is widespread among bacteria. In streptococ...