Impact of inter-species interactions between flower microbiota commensals and a floral pathogen on disease incidence and pathogen activity
Hassani, M. A.; Cui, Z.; LaReau, J. C.; Huntley, R. B.; Steven, B.; Zeng, Q.
Show abstract
Flowers are colonized by a diverse community of microorganisms that alter plant health and interact with floral pathogens. Erwinia amylovora is a flower-inhabiting bacterium and a pathogen that infects different plant species, including Malus x domestica (apple). Previously, we showed that the co-inoculation of two bacterial strains, Pseudomonas and Pantoea natural inhabitants of apple flowers, reduced disease incidence caused by this floral pathogen. Here, we decipher the ecological interactions between these two flower-associated bacteria and E. amylovora in field experimentation and in vitro co-cultures. The two flower microbiota strains did not competitively exclude E. amylovora from the stigma habitat, as both commensal bacteria and the pathogen co-existed on the apple flowers, proscribing microbial antibiosis or niche exclusion as predominant mechanisms of host protection. Inspection of the total and the active microbiota populations on flowers revealed that strain co-inoculations altered microbiota activity. Using synthetic stigma exudation medium, tripartite co-culture of the bacterial strains strongly acidified the growth milieu and led to a substantial alteration of gene expression in both the pathogen and the two microbiota members. Our study emphasizes the critical role of emergent properties mediated by inter-species interactions within the plant holobiont and their impact on plant health and pathogen behavior. ImportanceFire blight, caused by Erwinia amylovora, is one of the most important plant diseases of pome fruits. Plant-associated microbiota can influence plant disease occurrence through inter-species interactions. Previous studies have shown that plant microbiota commensals could suppress disease mainly by antagonizing of the pathogen growth, however, whether plant-associated microbiota could alter pathogen activity and behavior have not been well studied. Here, we show that the co-inoculation of two bacterial strains that naturally colonize the apple flowers reduce disease pressure. We further demonstrate that the interactions between these two microbiota commensals and the floral pathogen lead to a strong alteration of the pH and to the emergence of new gene expression patterns that may alter the pathogen behavior. Our findings emphasize the critical role of emergent properties mediated by inter-species interactions between plant microbiota and plant pathogens and their impact on plant health.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Xanthomonas infection transforms the apoplast into an accessible and habitable niche for Salmonella enterica 95%
- Glyphosate Effects on Growth and Biofilm Formation in Bee Gut Symbionts and Diverse Associated Bacteria 95%
- Integration of system phenotypes in microbiome networks to identify candidate synthetic communities: a study of the grafted tomato rhizobiome 95%
Similar papers in this journal
- Snowball: a novel gene family required for developmental patterning in fruiting bodies of mushroom-forming fungi (Agaricomycetes) 95%
- Transcriptional Landscape of Ectomycorrhizal Fungi and Their Host Provide Insight into N Uptake from Forest Soil 95%
- Hyperdiverse, bioactive, and interaction-specific metabolites produced only in co-culture suggest diverse competitors may fuel secondary metabolism of xylarialean fungi 94%
Similar papers in this journal
- Niche separation in cross-feeding sustains bacterial strain diversity across nutrient environments and may increase chances for survival in nutrient-limited leaf apoplasts 95%
- Two-way microscale interactions between immigrant bacteria and plant leaf microbiota as revealed by live imaging 95%
- Metabolite Interactions Mediate Beneficial Alliances Between Bacillus and Trichoderma for Effective Fusarium Wilt Control 94%
Similar papers in this journal
- Leaf side determines the relative importance of dispersal versus host filtering in the phyllosphere microbiome 95%
- RprR is a plant-responsive regulator of exopolysaccharide production, biofilm formation, and virulence in Ralstonia pseudosolanacearum 95%
- Cytokinin inhibits fungal development and virulence by targeting cellular trafficking 95%
Similar papers in this journal
- Csp1, A Cold-Shock Protein Homolog in Xylella fastidiosa Influences Pili Formation, Stress Response, and Gene Expression 95%
- Cell wall carbohydrate dynamics during the differentiation of infection structures by the apple scab fungus, Venturia inaequalis 95%
- NorA, HmpX, and NorB cooperate to reduce NO toxicity during denitrification and plant pathogenesis in Ralstonia solanacearum 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.