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Biology subjects

Lyng, M.

Publications and source records attributed to Lyng, M..

2 recordsLinked to original sources

Taxonomy of Pseudomonas spp determines interactions with Bacillus subtilis

Bacilli and pseudomonads are among the most well-studied microorganisms commonly found in soil, and frequently co-isolated. Despite this, no systematic approach has been employed to assess the pairwise compatibility of members from these genera. Here, we screened 720 fluorescent soil isolates for their effects on Bacillus subtilis pellicle formation in two types of media and found a predictor for interaction outcome in Pseudomonas taxonomy. Interactions were context-dependent and both medium composition and culture conditions strongly influenced interactions. Negative interactions were associated with Pseudomonas capeferrum, Pseudomonas entomophila and Pseudomonas protegens, and 2,4-diacetylphloroglucinol was confirmed as a strong (but not exclusive) inhibitor of B. subtilis. Non-inhibiting strains were closely related to Pseudomonas trivialis and Pseudomonas lini, but in this case, cocultures with increased B. subtilis pellicle formation were spatially segregated. Our study is the first to propose an overall negative outcome from pairwise interactions between B. subtilis and fluorescent pseudomonads, hence cocultures comprising members from these groups are likely to require additional microorganisms for coexistence.

microbiology↗

Competition for iron shapes metabolic antagonism between Bacillus subtilis and Pseudomonas

Siderophores have long been implicated in sociomicrobiology as determinants of bacterial interrelations. For plant-associated genera like Bacillus and Pseudomonas, siderophores are well known for their biocontrol functions. Here, we explored the functional role of the Bacillus subtilis siderophore bacillibactin in an antagonistic interaction with Pseudomonas marginalis. The presence of bacillibactin strongly influenced the outcome of the interaction in an iron-dependent manner. The bacillibactin producer B. subtilis restricts colony spreading of P. marginalis by repressing the transcription of histidine kinase-encoding gene gacS, thereby abolishing production of secondary metabolites such as pyoverdine and viscosin. By contrast, lack of bacillibactin restricted B. subtilis colony growth in a mechanism reminiscent of a siderophore tug-of-war for iron. Our analysis revealed that the Bacillus-Pseudomonas interaction is conserved across fluorescent Pseudomonas spp., expanding our understanding of the interplay between two genera of the most well-studied soil microbes.

microbiology↗