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                <term xml:lang="en">Ralstonia solanacearum</term>
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                <term xml:lang="en">Arabidopsis thaliana</term>
                <term xml:lang="en">biological control</term>
                <term xml:lang="en">defense signalling</term>
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                <term xml:lang="en">PLANT-PATHOGEN INTERACTIONS</term>
                <term xml:lang="en">SYSTEMIC ACQUIRED-RESISTANCE</term>
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                <term xml:lang="en">SALICYLIC-ACID</term>
                <term xml:lang="en">DISEASE RESISTANCE</term>
                <term xml:lang="en">PSEUDOMONAS-SOLANACEARUM</term>
                <term xml:lang="en">RALSTONIA-SOLANACEARUM</term>
                <term xml:lang="en">PHYTOALEXIN-DEFICIENT MUTANTS</term>
                <term xml:lang="fr">INSENSITIVE MUTANTS</term>
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              <p>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 R similar to solanacearum were successfully used in a previous study as endophytic biocontrol agents in challenge inoculation experiments on tomato. However, the molecular mechanisms controlling this resistance remained unknown. We developed a protection assay using Arabidopsis thaliana as a model plant and analyzed the events underlying the biological control by genetic, transcriptomic and molecular approaches. High protection rates associated with a significant decrease in the multiplication of R similar to solanacearum were observed in plants pre-inoculated with a similar to hrpB mutant strain. Neither salicylic acid, nor jasmonic acid/ethylene played a role in the establishment of this resistance. Microarray analysis showed that 26% of the up-regulated genes in protected plants are involved in the biosynthesis and signalling of abscissic acid (ABA). In addition 21% of these genes are constitutively expressed in the irregular xylem cellulose synthase mutants (irx), which present a high level of resistance to R similar to solanacearum. We propose that inoculation with the ?hrpB mutant strain generates a hostile environment for subsequent plant colonization by a virulent strain of R similar to solanacearum.</p>
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