P>The structure of the extant transcriptional control network of the TOL plasmid pWW0 born by Pseudomonas putida mt-2 for biodegradation of m-xylene is far more complex than one would consider necessary from a mere engineering point of view. In order to penetrate the underlying logic of such a network, which controls a major environmental cleanup bioprocess, we have developed a dynamic model of the key regulatory node formed by the Ps/Pr promoters of pWW0, where the clustering of control elements is maximal. The model layout was validated with batch cultures estimating parameter values and its predictive capability was confirmed with independent sets of experimental data. The model revealed how regulatory outputs originated in the diverg...
The biodegradative capacity of bacteria in their natural habitats is affected by water availability....
Metabolically versatile bacteria have evolved diverse strategies to adapt to different environmental...
Toluene degradation in Pseudomonas putida KT2440 pWW0 plasmid is subjected to catabolite repression....
International audienceBackgroundThe genetic network of the TOL plasmid pWW0 of the soil bacterium Ps...
International audienceThe XylR/Pu regulatory node of the m-xylene biodegradation pathway of Pseudomo...
The XylR/Pu regulatory node of the m-xylene biodegradation pathway of Pseudomonas putida mt-2 is on...
The molecular and genetic events responsible for the growth kinetics of a microorganism can be exten...
Bioprocesses performance is monitored using microbial growth kinetics models. However most of them a...
The majority of models describing the kinetic properties of a microorganism for a given substrate ar...
The majority of models describing the kinetic properties of a microorganism for a given substrate ar...
The activation of the Pm promoter of the meta operon of the TOL plasmid of Pseudomonas putida by its...
<p>The TOL pathway encompasses two different operons, the <i>upper</i> operon, (<i>xylUWCMABN</i>), ...
The regulation of the tou operon of Pseudomonas stutzeri OX1, for degradation of toluene and o-xylen...
A novel modeling approach for the description of bioprocesses is proposed, linking microbial growth ...
The TOL plasmid pWW53 encodes a catabolic pathway for the metabolism of toluene. It bears an upper-p...
The biodegradative capacity of bacteria in their natural habitats is affected by water availability....
Metabolically versatile bacteria have evolved diverse strategies to adapt to different environmental...
Toluene degradation in Pseudomonas putida KT2440 pWW0 plasmid is subjected to catabolite repression....
International audienceBackgroundThe genetic network of the TOL plasmid pWW0 of the soil bacterium Ps...
International audienceThe XylR/Pu regulatory node of the m-xylene biodegradation pathway of Pseudomo...
The XylR/Pu regulatory node of the m-xylene biodegradation pathway of Pseudomonas putida mt-2 is on...
The molecular and genetic events responsible for the growth kinetics of a microorganism can be exten...
Bioprocesses performance is monitored using microbial growth kinetics models. However most of them a...
The majority of models describing the kinetic properties of a microorganism for a given substrate ar...
The majority of models describing the kinetic properties of a microorganism for a given substrate ar...
The activation of the Pm promoter of the meta operon of the TOL plasmid of Pseudomonas putida by its...
<p>The TOL pathway encompasses two different operons, the <i>upper</i> operon, (<i>xylUWCMABN</i>), ...
The regulation of the tou operon of Pseudomonas stutzeri OX1, for degradation of toluene and o-xylen...
A novel modeling approach for the description of bioprocesses is proposed, linking microbial growth ...
The TOL plasmid pWW53 encodes a catabolic pathway for the metabolism of toluene. It bears an upper-p...
The biodegradative capacity of bacteria in their natural habitats is affected by water availability....
Metabolically versatile bacteria have evolved diverse strategies to adapt to different environmental...
Toluene degradation in Pseudomonas putida KT2440 pWW0 plasmid is subjected to catabolite repression....