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Current Opinion in Plant Biology|June 2, 2014
Opening the Ralstonia solanacearum type III effector tool box: insights into host cell subversion mechanismsLaurent Deslandes, Stephane GeninFrontiers in Plant Science|September 8, 2022
The paradoxes hidden behind the Droop model highlighted by a metabolic approachCaroline Baroukh, Francis Mairet, Olivier BernardMicrobiologyopen|February 25, 2022
Trophic preferences of the pathogen Ralstonia solanacearum and consequences on its growth in xylem sapCaroline Baroukh, Meriem Zemouri, Stéphane GeninPlant Physiology|July 1, 2026
A genome-scale metabolic model of a pathosystem sheds light on bacterial wiltLéo Gerlin, Stéphane Genin, Caroline BaroukhPlos Computational Biology|June 6, 2017
Dynamic metabolic modeling of heterotrophic and mixotrophic microalgal growth on fermentative wastesCaroline Baroukh, Violette Turon, Olivier BernardTrends in Plant Science|June 15, 2021
Polyamines: double agents in disease and plant immunityLéo Gerlin, Caroline Baroukh, Stéphane GeninThe New Phytologist|November 5, 2024
Unraveling the in planta population dynamics of the plant pathogen Ralstonia pseudosolanacearum by mathematical modelingCaroline Baroukh, Léo Gerlin, Antoine Escourrou, et al.Water Research|December 3, 2022
A universal dynamical metabolic model representing mixotrophic growth of Chlorella sp. on wastesBruno Assis Pessi, Caroline Baroukh, Anais Bacquet, et al.Source Code for Biology and Medicine|October 15, 2011
Genes2WordCloud: a quick way to identify biological themes from gene lists and free textCaroline Baroukh, Sherry L Jenkins, Ruth Dannenfelser, et al.Plos One|August 9, 2014
DRUM: a new framework for metabolic modeling under non-balanced growth. Application to the carbon metabolism of unicellular microalgaeCaroline Baroukh, Rafael Muñoz-Tamayo, Jean-Philippe Steyer, et al.Pageof 3