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  • Arabidopsis CLAVATA1 and CL... Arabidopsis CLAVATA1 and CLAVATA2 receptors contribute to Ralstonia solanacearum pathogenicity through a miR169-dependent pathway
    Hanemian, Mathieu; Barlet, Xavier; Sorin, Céline ... The New phytologist, July 2016, Volume: 211, Issue: 2
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    Bacterial wilt caused by Ralstonia solanacearum is one of the most destructive bacterial plant diseases. Although many molecular determinants involved in R. solanacearum adaptation to hosts and ...
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  • Towards standardization of ... Towards standardization of RNA quality assessment using user-independent classifiers of microcapillary electrophoresis traces
    Imbeaud, Sandrine; Graudens, Esther; Boulanger, Virginie ... Nucleic acids research, 01/2005, Volume: 33, Issue: 6
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    While it is universally accepted that intact RNA constitutes the best representation of the steady-state of transcription, there is no gold standard to define RNA quality prior to gene expression ...
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  • Spontaneous mutations in a ... Spontaneous mutations in a regulatory gene induce phenotypic heterogeneity and adaptation of Ralstonia solanacearum to changing environments
    Perrier, Anthony; Barlet, Xavier; Rengel, David ... Environmental microbiology, August 2019, Volume: 21, Issue: 8
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    Summary An evolution experiment with the bacterial plant pathogen Ralstonia solanacearum revealed that several adaptive mutations conferring enhanced fitness in plants arose in the efpR gene encoding ...
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  • Comparative transcriptomic ... Comparative transcriptomic studies identify specific expression patterns of virulence factors under the control of the master regulator PhcA in the Ralstonia solanacearum species complex
    Perrier, Anthony; Barlet, Xavier; Peyraud, Rémi ... Microbial pathogenesis, 03/2018, Volume: 116
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    The global regulator PhcA controls numerous traits associated to virulence and bacterial proliferation in strains of the plant pathogen Ralstonia solanacearum species complex. Here, we conducted a ...
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  • Impairment of Cellulose Syn... Impairment of Cellulose Synthases Required for Arabidopsis Secondary Cell Wall Formation Enhances Disease Resistance
    Hernández-Blanco, Camilo; Feng, Dong Xin; Hu, Jian ... The Plant cell, 03/2007, Volume: 19, Issue: 3
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    Cellulose is synthesized by cellulose synthases (CESAs) contained in plasma membrane-localized complexes. In Arabidopsis thaliana, three types of CESA subunits (CESA4/IRREGULAR XYLEM5 IRX5, ...
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  • Enhanced in planta Fitness ... Enhanced in planta Fitness through Adaptive Mutations in EfpR, a Dual Regulator of Virulence and Metabolic Functions in the Plant Pathogen Ralstonia solanacearum
    Perrier, Anthony; Peyraud, Rémi; Rengel, David ... PLoS pathogens, 12/2016, Volume: 12, Issue: 12
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    Experimental evolution of the plant pathogen Ralstonia solanacearum, where bacteria were maintained on plant lineages for more than 300 generations, revealed that several independent single mutations ...
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  • Transcriptional responses o... Transcriptional responses of Arabidopsis thaliana during wilt disease caused by the soil-borne phytopathogenic bacterium, Ralstonia solanacearum
    Hu, Jian; Barlet, Xavier; Deslandes, Laurent ... PloS one, 07/2008, Volume: 3, Issue: 7
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    Bacterial wilt is a common disease that causes severe yield and quality losses in many plants. In the present study, we used the model Ralstonia solanacearum-Arabidopsis thaliana pathosystem to study ...
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  • Biological control of bacte... Biological control of bacterial wilt in Arabidopsis thaliana involves abscissic acid signalling
    Feng, Dong Xin; Tasset, Céline; Hanemian, Mathieu ... The New phytologist, June 2012, Volume: 194, Issue: 4
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    • Means to control bacterial wilt caused by the phytopathogenic root bacteria Ralstonia solanacearum are limited. Mutants in a large cluster of genes (hrp) involved in the pathogenicity of ...
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  • Evolutionarily distant path... Evolutionarily distant pathogens require the Arabidopsis phytosulfokine signalling pathway to establish disease
    Rodiuc, Natalia; Barlet, Xavier; Hok, Sophie ... Plant, cell and environment, July 2016, Volume: 39, Issue: 7
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    Secreted peptides and their specific receptors frequently orchestrate cell‐to‐cell communication in plants. Phytosulfokines (PSKs) are secreted tyrosine‐sulphated peptide hormones, which trigger ...
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