Literature DB >> 11558277

[Comparative characteristics of lipopolysaccharides of various Pseudomonas fluorescens strains (Biovar I)].

G M Zdorovenko1, S N Veremeĭchenko.   

Abstract

From the biomass of five Pseudomonas fluorescens biovar I strains, including the P. fluorescens type strain IMV 4125 (ATCC 13525), lipopolysaccharides (LPS) were isolated (by extraction with a phenol-water mixture followed by repeated ultracentrifugation), as well as individual structural components of the LPS macromolecule: lipid A, the core oligosaccharide, and O-specific polysaccharide (O-PS). 3-Hydroxydecanoic, 2-hydroxydodecanoic, 3-hydroxydodecanoic, dodecanoic, hexadecanoic, octadecanoic, hexadecenoic, and octadecenoic fatty acids were present in lipid A of the LPS of all the strains studied. Glucosamine, ethanolamine, and phosphoethanolamine were revealed in the lipid A hydrophilic part of all of KDO, a trace amount of heptoses, ethanolamine, phosphoethanolamine, alanine, and phosphorus were identified as the main core components. Interstrain differences in the core oligosaccharide composition were revealed. Structural analysis showed that the O-PS of the type strain, as distinct from that of other strains, is heterogeneous and contains two types of repetitive units, including (1) three L-rhamnose residues (L-Rha), one 3-acetamide-3,6-dideoxy-D-galactose residue (D-Fuc3NAc) as a branching substitute of the L-rhamnan chain and (2) three L-Rha residues and two branching D-Fuc3NAc residues. The type strain is also serologically distinct from other biovar I strains due to the LPS O-chain structure, which is similar to those of the strains of the species Pseudomonas syringae, including the type strain. The data of structural analysis agree well with the results of immunochemical studies of LPS.

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Year:  2001        PMID: 11558277

Source DB:  PubMed          Journal:  Mikrobiologiia        ISSN: 0026-3656


  1 in total

1.  Remodeling of Lipid A in Pseudomonas syringae pv. phaseolicola In Vitro.

Authors:  Tim Gerster; Michelle Wröbel; Casey E Hofstaedter; Dominik Schwudke; Robert K Ernst; Stefanie Ranf; Nicolas Gisch
Journal:  Int J Mol Sci       Date:  2022-02-11       Impact factor: 5.923

  1 in total

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