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Carbohydrate Polymers

dc.contributor.authorAnna Turska-Szewczuk, Anna
dc.contributor.authorDworaczek, Katarzyna
dc.contributor.authorBomba, Arkadiusz
dc.contributor.authorKubaczyńska, Maria
dc.contributor.authorDrzewiecka, Dominika
dc.contributor.authorIwan, Ewelina
dc.contributor.authorKamińska, Ewelina
dc.contributor.authorPękala-Safińska, Agnieszka
dc.date.accessioned2026-07-23T09:42:01Z
dc.date.available2026-07-23T09:42:01Z
dc.date.issued2026
dc.identifierhttps://dspace.piwet.pulawy.pl/xmlui/handle/123456789/965
dc.identifier.issn0144-8617
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0144861726006648?via%3Dihub
dc.description.abstractAeromonas species are important opportunistic pathogens in freshwater aquaculture, including Polish fish farms, where outbreak-associated isolates have been assigned to local provisional serogroups. Among these, PGO1 is frequently detected, but the structural and genetic diversity of the corresponding O-specific polysaccharides remains poorly understood. Here, we characterized Aeromonas sobria strain K221, a PGO1 isolate recovered from common carp during an outbreak of motile Aeromonas infection/septicaemia. The O-specific polysaccharide (OPS), isolated from LPS, was analysed by chemical methods and 1H/13C NMR spectroscopy, and its O-repeating unit was identified as a linear pentasaccharide containing β-GlcpNAc, 2-O-acetylated α-Rhap, and α-Abep resi- dues. Bioinformatic analysis of the O-antigen gene cluster (OGC) revealed gene content consistent with the OPS structure and supported functional assignment of the biosynthesis locus, including a putative α-1,3-CDP-abe- quosyltransferase. Both the OPS and its OGC differed from those of other recently characterized PGO1 strains, indicating that K221 represents a distinct variant within this serogroup. The occurrence of 2-substituted abe- quose, not previously reported in Aeromonas O-polysaccharides or as a 2-substituted residue in bacterial O- polysaccharides, highlights an unusual structure–biosynthesis relationship. These findings reveal greater struc- tural and genetic diversity within the Aeromonas PGO1 serogroup than previously recognized and expand current knowledge of bacterial O-specific carbohydrate polymers.en_US
dc.language.isoenen_US
dc.publisherElsevieren_US
dc.subjectAeromonasen_US
dc.subjectO-antigen polysaccharide structureen_US
dc.subjectO-antigen gene clusteren_US
dc.subjectAbequoseen_US
dc.subjectAbequosyltransferaseen_US
dc.subjectNMRen_US
dc.titleAbequose-containing O-antigen polysaccharide from Aeromonas sobria K221 (serogroup PGO1): structure, O-antigen gene cluster correlation, and Abe-transferase predictionen_US
dc.typeArticleen_US
dcterms.bibliographicCitation2026 vol. 388, 125547
dcterms.titleCarbohydrate Polymers
dc.identifier.doihttps://doi.org/10.1016/j.carbpol.2026.125547


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