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Borowicz, M.

Publications and source records attributed to Borowicz, M..

4 recordsLinked to original sources

Beyond kin killing: Dickeya-derived phage-tail-like bacteriocin P2D1 targets phylogenetically distant Pseudomonas spp.

Tailocins, phage-tail-derived bacteriocins, are increasingly recognized as potent mediators of microbial antagonism, yet their ecological scope beyond kin-targeting remains poorly understood. Here, we investigated whether P2D1, a tailocin produced by the plant pathogen Dickeya dadantii 3937, can act against environmental bacteria phylogenetically distant from Dickeya spp. Screening 480 soil and rhizosphere isolates from three distinct plant-associated habitats in Poland, we identified nine Pseudomonas spp. strains susceptible to tailocin P2D1. Whole-genome sequencing and phenotype profiling revealed that these isolates spanned multiple clades, including taxa related to P. germanica, P. tensinigenes, and P. parakoreensis. The D. dadantii mutant lacking genes encoding tailocin sheath and tube proteins lost antagonistic activity against Pseudomonas isolates, confirming that tailocins alone mediate the observed killing. Plant tissue assays revealed that six of the P2D1-susceptible strains were non-pathogenic and could mitigate D. dadantii-induced soft rot on potato. In contrast, three isolates related to P. tensinigenes were able to cause rot on their own under permissive conditions. Together, these findings demonstrate that P2D1 tailocin extends its activity to ecologically co-occurring but taxonomically distant Pseudomonas, suggesting that conserved receptors underline cross-genus targeting. More broadly, our results add to the limited evidence for tailocin activity beyond kin killing and therefore challenge the prevailing paradigm of kin-restricted tailocin specificity. They further suggest that tailocins may influence microbial community assembly across taxonomic boundaries, while their in vivo roles remain understudied.

microbiology↗

Production of P2D1 tailocins by Dickeya dadantii 3937: a temporal relationship between the stressor onset, gene expression, and the concentration of active particles

Tailocins are bacteriocins resembling bacteriophage tails. Previously, we reported the production of P2D1 tailocins in the plant pathogen Dickeya dadantii 3937, the synthesis of which was upregulated upon treatment with mitomycin C. In the current study, we characterized the temporal relationship between the inducer onset, activation of expression of tailocin-related genes, the concentration of tailocin particles, and the titer of viable producer cells. Using a newly established RT-qPCR assay, we found that the expression of P2D1 structural genes peaks two hours after the addition of mitomycin C. Simultaneous measurement of the titer of tailocins showed that the maximum concentration of these particles in the culture supernatant was reached 6 hours post induction and remained stable till the termination of the experiment (18 hours). Progressing accumulation of tailocins between the second and the sixth-hour post mitomycin C treatment correlated with a sharp drop in the count of viable cells (ca. five orders of magnitude). This effect was related to the mechanism by which tailocins are released from the cells, which involves cell lysis. Our study is the first detailed analysis of the timing of events during P2D1 tailocin synthesis in Dickeya spp.

microbiology↗

Tailocin-mediated interactions in Soft Rot Pectobacteriaceae

Bacteria carry phage-derived elements within their genomes, some of which can produce phage-like particles (tailocins) used as weapons to kill kin strains in response to environmental conditions. This study investigates the production and activity of tailocins by plant pathogenic bacteria: Pectobacterium, Dickeya, and Musicola genera, which compete for niche, providing an attractive model to study the ecological role of tailocins. Microscopy revealed that most analyzed strains (88%) produced tailocins. Tailocin-mediated killing interactions were assessed across 351 strain pairs, showing that Dickeya spp. had a higher likelihood of killing neighbors (57.1%) than Pectobacterium spp. (21.6%). Additionally, Dickeya spp. strains exhibited broader phylogenetic killing, targeting both Pectobacterium spp. and Musicola sp., while Pectobacterium spp. tailocins were genus-specific. Mutual killing was observed in 33.9% of interactions, predominantly within Dickeya spp. Although tailocins were morphologically indistinguishable between producers, genomic analyses identified conserved clusters having distinct differences between Pectobacterium spp. and Dickeya spp tailocins. This suggests different origins of these particles. Induction experiments demonstrated that tailocin production was boosted by hydrogen peroxide, supporting the role of these particles in bacteria-bacteria competition during infection. Tailocins were detectable in infected potato tissue but not in river water, highlighting the particular ecological relevance of tailocins in plant environments.

microbiology↗

Soft rot pathogen Dickeya dadantii 3937 produces tailocins resembling the tails of Enterobacteria bacteriophage P2

Tailocins are nanomolecular machines with bactericidal activity. They are produced by bacteria to contribute to fitness in mixed communities, and hence, they play a critical role in their ecology in a variety of habitats. Here, we characterized the new tailocin produced by Dickeya dadantii strain 3937, a well-characterized member of plant pathogenic Soft Rot Pectobacteriaceae (SRP). Tailocins induced in D. dadantii were ca. 166 nm long tubes surrounded by contractive sheaths with baseplates having tail fibers at one end. A 22-kb genomic cluster involved in their synthesis and having high homology to the cluster coding for the tail of the Enterobacteriophage P2 was identified. The D. dadantii tailocins, termed dickeyocin P2D1 (phage P2-like dickeyocin 1), were resistant to inactivation by pH (3.5 - 12), temperature (4 - 50 {degrees}C), and elevated osmolarity (NaCl concentration: 0.01 - 1 M). P2D1 could kill a variety of different Dickeya spp. but not any strain of Pectobacterium spp. tested and were not toxic to Caenorhabditis elegans. TeaserTailocins are nanomolecular entities similar to syringes that are produced by various bacteria to fight other microorganisms present in the same environment.

microbiology↗