Exo-oligosaccharides of Rhizobium sp strain NGR234 are required for symbiosis with various legumes

被引:54
作者
Staehelin, Christian
Forsberg, Lennart S.
D'Haeze, Wim
Gao, Mu-Yun
Carlson, Russell W.
Xie, Zhi-Ping
Pellock, Brett J.
Jones, Kathryn M.
Walker, Graham C.
Streit, Wolfgang R.
Broughton, William J.
机构
[1] Zhongshan Univ, Sch Life Sci, State Key Lab Biocontrol, Guangzhou 510275, Peoples R China
[2] Univ Geneva, LBMPS, CH-1211 Geneva 4, Switzerland
[3] Univ Georgia, Complex Carbohydrate Res Ctr, Athens, GA 30602 USA
[4] MIT, Dept Biol, Cambridge, MA 02139 USA
[5] Univ Duisburg Essen, D-47057 Duisburg, Germany
关键词
D O I
10.1128/JB.00365-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Rhizobia are nitrogen-fixing bacteria that establish endosymbiotic associations with legumes. Nodule formation depends on various bacterial carbohydrates, including lipopolysaccharides, K-antigens, and exopolysaccharides (EPS). An acidic EPS from Rhizobium sp. strain NGR234 consists of glucosyl (Gic), galactosyl (Gal), glucuronosyl (GlcA), and 4,6-pyruvylated galactosyl (PvGal) residues with beta-1,3, beta-1,4, beta-1,6, alpha-1,3, and alpha-1,4 glycoside linkages. Here we examined the role of NGR234 genes in the synthesis of EPS. Deletions within the exoF, exoL, exoP, exoQ, and exoY genes suppressed accumulation of EPS in bacterial supernatants, a finding that was confirmed by chemical analyses. The data suggest that the repeating subunits of EPS are assembled by an ExoQ/ExoP/ExoF-dependent mechanism, which is related to the Wzy polymerization system of group 1 capsular polysaccharides in Escherichia coli. Mutation of exoK (NGR Omega exoK), which encodes a putative glycanase, resulted in the absence of low-molecular-weight forms of EPS. Analysis of the extracellular carbohydrates revealed that NGR Omega exoK is unable to accumulate exo-oligosaccharides (EOSs), which are O-acetylated nonasaccharide subunits of EPS having the formula Gal(Glc)(5)(GlcA)(2)PvGal. When used as inoculants, both the exo-deficient mutants and NGR Omega exoK were unable to form nitrogen-fixing nodules on some hosts (e.g., Albizia lebbeck and Leucaena leucocephala), but they were able to form nitrogen-fixing nodules on other hosts (e.g., Vigna unguiculata). EOSs of the parent strain were biologically active at very low levels (yield in culture supernatants, similar to 50 mu g per liter). Thus, NGR234 produces symbiotically active EOSs by enzymatic degradation of EPS, using the extracellular endo-beta-1,4-glycanase encoded by exoK (glycoside hydrolase family 16). We propose that the derived EOSs (and not EPS) are bacterial components that play a crucial role in nodule formation in various legumes.
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收藏
页码:6168 / 6178
页数:11
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