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  • Salmonella Establishment in...
    Jechalke, Sven; Schierstaedt, Jasper; Becker, Marlies; Flemer, Burkhardt; Grosch, Rita; Smalla, Kornelia; Schikora, Adam

    Frontiers in microbiology, 05/2019, Volume: 10
    Journal Article

    Human pathogenic bacteria, such as , are able to colonize crop plants. So far, not much is known about biotic and abiotic factors influencing this colonization in field soil. This understanding, however, is imperative for the provision of safe fresh produce to the consumer. In this study, we investigated the effects of soil type, organic fertilization, plant species and the way of entry into the plant production system, on the survival of in soil as well as the colonization of plants. The selected serovar Typhimurium strain 14028s, Typhimurium strain LT2 and Senftenberg were able to persist in soil for several weeks. persistence in soil was prolonged in loamy, if compared to sandy soil, and when applied together with organic fertilizer. The leaves of lettuce and corn salad were colonized by providing evidence for internalization from the soil the root. Colonization rates were affected by soil type, plant species and strain. Overall, was detected in leaves of 0.5-0.9% of the plants, while lettuce was more frequently colonized than corn salad. Plants grown in sandy soil were more often colonized than plants grown in loamy soil. After spray inoculation, could be detected on and in leaves for several weeks by cultivation-depending methods, confirmed by confocal microscopy using GFP-labeled Typhimurium 14028s. On the one hand, transcriptome data from Typhimurium 14028s assessed in response to lettuce medium or lettuce root exudates showed an upregulation of genes associated with biofilm formation and virulence. On the other hand, lettuce inoculated with Typhimurium 14028s showed a strong upregulation of genes associated with plant immune response and genes related to stress response. In summary, these results showed that organic fertilizers can increase the persistence of in soil and that soil type and plant species play a crucial role in the interactions between human pathogens and crop plants. This understanding is therefore a starting point for new strategies to provide safe food for the consumer.