Bioscience, Biotechnology, and Biochemistry
Online ISSN : 1347-6947
Print ISSN : 0916-8451

This article has now been updated. Please use the final version.

Defects in D-Rhamnosyl Residue Biosynthetic Genes Affect Lipopolysaccharide Structure, Motility, and Cell-Surface Hydrophobicity in Pseudomonas syringae Pathovar glycinea Race 4
Kazuhiro CHIKU, Kazuhiko TSUNEMI, Masanobu YAMAMOTO, Mayumi OHNISHI-KAMEYAMA, Mitsuru YOSHIDA, Tadashi ISHII, Fumiko TAGUCHI, Masako IWAKI, Yuki ICHINOSE, Hiroshi ONO
Author information
JOURNAL FREE ACCESS Advance online publication
Supplementary material

Article ID: 120736

Details
Abstract
D-rhamnose (D-Rha) residue is a major component of lipopolysaccharides (LPSs) in strains of the phytopathogen Pseudomonas syringae pathovar glycinea. To investigate the effects of a deficiency in GDP-D-rhamnose biosynthetic genes on LPS structure and pathogenicity, we generated three mutants defective in D-Rha biosynthetic genes, encoding proteins GDP-D-mannose 4,6-dehydratase (GMD), GDP-4-keto-6-deoxy-D-mannose reductase (RMD), and a putative α-D-rhamnosyltransferase (WbpZ) in P. syringae pv. glycinea race 4. The Δgmd, Δrmd, and ΔwbpZ mutants had a reduced O-antigen polysaccharide consisting of D-Rha residues as compared with the wild type (WT). The swarming motility of the Δgmd, Δrmd, and ΔwbpZ mutant strains decreased and hydrophobicity and adhesion ability increased as compared with WT. Although the mutants had truncated O-antigen polysaccharides, and altered surface properties, they showed virulence to soybean, as WT did.
Content from these authors

This article cannot obtain the latest cited-by information.

© 2013 by Japan Society for Bioscience, Biotechnology, and Agrochemistry
feedback
Top