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Role of the acquisition of a type 3 secretion system in the emergence of novel pathogenic strains of Xanthomonas
Authors:Valérian Meline  Wesley Delage  Chrystelle Brin  Camille Li-Marchetti  Daniel Sochard  Matthieu Arlat  Céline Rousseau  Armelle Darrasse  Martial Briand  Guillaume Lebreton  Perrine Portier  Marion Fischer-Le Saux  Karine Durand  Marie-Agnès Jacques  Etienne Belin  Tristan Boureau
Institution:1. IRHS, INRA, Université d’Angers, Agrocampus-Ouest, SFR 4207 QuaSav, 49071 Beaucouzé, France;2. Platform PHENOTIC, IRHS, INRA, Université d’Angers, Agrocampus-Ouest, SFR 4207 QuaSav, 49071 Beaucouzé, France;3. INRA, UMR 441, Laboratoire des Interactions Plantes Micro-organismes (LIPM), F-31326 Castanet-Tolosan, France;4. IRHS, INRA, Université d’Angers, Agrocampus-Ouest, SFR 4207 QuaSav, 49071 Beaucouzé, France

CIRM-CFBP French Collection for Plant-associated Bacteria, IRHS, UMR 1345, INRA-ACO-UA, 42 rue Georges Morel, 49070 Beaucouzé Cedex, France;5. Platform PHENOTIC, IRHS, INRA, Université d’Angers, Agrocampus-Ouest, SFR 4207 QuaSav, 49071 Beaucouzé, France

Laboratoire Angevin de Recherche en Ingénierie des Systèmes (LARIS), Université d’Angers, F-49000 Angers, France

Abstract:Cases of emergence of novel plant-pathogenic strains are regularly reported that reduce the yields of crops and trees. However, the molecular mechanisms underlying such emergence are still poorly understood. The acquisition by environmental non-pathogenic strains of novel virulence genes by horizontal gene transfer has been suggested as a driver for the emergence of novel pathogenic strains. In this study, we tested such an hypothesis by transferring a plasmid encoding the type 3 secretion system (T3SS) and four associated type 3 secreted proteins (T3SPs) to the non-pathogenic strains of Xanthomonas CFBP 7698 and CFBP 7700, which lack genes encoding T3SS and any previously known T3SPs. The resulting strains were phenotyped on Nicotiana benthamiana using chlorophyll fluorescence imaging and image analysis. Wild-type, non-pathogenic strains induced a hypersensitive response (HR)-like necrosis, whereas strains complemented with T3SS and T3SPs suppressed this response. Such suppression depends on a functional T3SS. Amongst the T3SPs encoded on the plasmid, Hpa2, Hpa1 and, to a lesser extent, XopF1 collectively participate in suppression. Monitoring of the population sizes in planta showed that the sole acquisition of a functional T3SS by non-pathogenic strains impairs growth inside leaf tissues. These results provide functional evidence that the acquisition via horizontal gene transfer of a T3SS and four T3SPs by environmental non-pathogenic strains is not sufficient to make strains pathogenic. In the absence of a canonical effector, the sole acquisition of a T3SS seems to be counter-selective, and further acquisition of type 3 effectors is probably needed to allow the emergence of novel pathogenic strains.
Keywords:Chlorophyll Fluorescence Imaging  Emergence  non-pathogenic strains  type 3 secretion system  Xanthomonas
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