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Wesolowski, W.

Publications and source records attributed to Wesolowski, W..

2 recordsLinked to original sources

Antibacterial activity of a newly identified phage-derived endolysin and its parental bacteriophage against clinical uropathogenic Escherichia coli

The increasing prevalence of antibiotic-resistant uropathogenic Escherichia coli highlights the need for antibacterial strategies that can complement or extend beyond conventional antibiotic treatment. Bacteriophages and phage-derived lytic enzymes represent promising alternatives because of their distinct mechanisms of bacterial killing and their potential activity against drug-resistant pathogens. In this study, we characterized the newly discovered UPEC-infecting bacteriophage vB-EcoS_57-3 and the endolysin 57_3Lys, encoded by this phage, combining genomic, structural, and functional approaches. The phage demonstrated lytic activity against clinical UPEC isolates and retained antibacterial potential under conditions relevant to the urinary tract. Genomic and sequence analyses revealed distinctive features of 57_3Lys associated with signal-anchor-release endolysins and suggested a less common mode of intracellular translocation and activation. Functional experiments supported the involvement of the bacterial secretion machinery in endolysin-mediated lysis. Notably, the purified enzyme also displayed antibacterial activity against intact clinical E. coli cells, despite the intrinsic barrier presented by the Gram-negative cell envelope. Although this activity developed slowly, it significantly reduced both bacterial culture turbidity and viable cell number. Together, these findings provide new insights into the antimicrobial strategies based on the phages and their phage lytic enzymes, supporting further exploration of vB-EcoS_57-3 and 57_3Lys as potential tools against antibiotic-resistant UPEC.

microbiology↗

The intensity of supplementary feeding in an urban environment impacts overwintering Mallards Anas platyrchynhos as wintering conditions get harsher

Although urbanization poses various threats to avifauna, some bird species, including Mallards, are attracted to towns and cities as their winter habitats due to favourable temperatures and abundant anthropogenic food. In this study, we investigated how population dynamics changed in relation to winter harshness and intensity of supplementary feeding. The results indicated that the number of Mallards increased with the feeding intensity but the pattern differed in response to worsening of wintering conditions on water bodies with distinct supplementary feeding intensity. The ponds with low feeding intensity were occupied by fewer but more stable populations, suggesting the presence of natural food resources there, available for small number of individuals, regardless of winter conditions. On the ponds with medium feeding intensity, we observed a bell-shaped relationship between the number of ducks and ice cover. Unpredictable anthropogenic food on those ponds might not provide sufficient food resources, forcing birds to relocate when wintering conditions worsen. In such conditions, the ponds with a high feeding intensity attracted more ducks. We demonstrated that the wintering population of Mallards in urban areas is not solely influenced by ambient temperature but is also significantly affected by the intensity of supplementary feeding.

ecology↗