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Bidirectional Comparisons Revealed Functional Patterns in Interaction between Salmonella enterica and Plants

GND
1252277237
ORCID
0000-0002-9613-0752
Zugehörigkeit
Julius Kühn Institute (JKI), Institute for Epidemiology and Pathogen Diagnostics, Germany
Han, Min;
GND
1172101132
Zugehörigkeit
Julius Kühn Institute (JKI), Institute for Epidemiology and Pathogen Diagnostics, Germany
Zarkani, Azhar A.;
GND
1243105232
Zugehörigkeit
Julius Kühn Institute (JKI), Institute for Epidemiology and Pathogen Diagnostics, Germany
Duan, Yongming;
GND
1286249287
Zugehörigkeit
Julius Kühn Institute (JKI), Institute for Epidemiology and Pathogen Diagnostics, Germany
Grimm, Maja;
ORCID
0000-0002-5082-9912
Zugehörigkeit
INRAE Val de Loire, Université de Tours, L’Unité Mixte de Recherche Infectiologie et Santé Publique (UMR ISP), France
Trotereau, Jérôme;
Zugehörigkeit
INRAE Val de Loire, Université de Tours, L’Unité Mixte de Recherche Infectiologie et Santé Publique (UMR ISP), 37380 Nouzilly, France
Virlogeux-Payant, Isabelle;
GND
1172103542
ORCID
0000-0002-0869-6423
Zugehörigkeit
Julius Kühn Institute (JKI), Institute for Epidemiology and Pathogen Diagnostics, Germany
Schikora, Adam

Plants may harbor the human pathogen Salmonella enterica. Interactions between S. enterica and different plant species have been studied in individual reports. However, disparities arising from the distinct experimental conditions may render a meaningful comparison very difficult. This study explored interaction patterns between different S. enterica strains including serovars Typhimurium 14028s and LT2 and serovar Senftenberg, and different plants (Arabidopsis, lettuce, and tomato) in one approach. Better persistence of S. enterica serovar Typhimurium strains was observed in all tested plants, whereas the resulting symptoms varied depending on plant species. Genes encoding pathogenesis-related proteins were upregulated in plants inoculated with Salmonella. Furthermore, transcriptome of tomato indicated dynamic responses to Salmonella, with strong and specific responses already 24 h after inoculation. By comparing with publicly accessible Arabidopsis and lettuce transcriptome results generated in a similar manner, constants and variables were displayed. Plants responded to Salmonella with metabolic and physiological adjustments, albeit with variability in reprogrammed orthologues. At the same time, Salmonella adapted to plant leaf-mimicking media with changes in biosynthesis of cellular components and adjusted metabolism. This study provides insights into the Salmonella-plant interaction, allowing for a direct comparison of responses and adaptations in both organisms.

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