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PMID: 7659753 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Structural requirements of synthetic and natural product lipo-chitin oligosaccharides for induction of nodule primordia on Glycine soja.

Plant physiology ·Vol. 108 ·No. 4 ·1995-08-00 ·Pages 1587-95

Stokkermans TJ, Ikeshita S, Cohn J, Carlson RW, Stacey G, Ogawa T, Peters NK

Abstract

Rhizobia synthesize a class of lipo-chitin oligosaccharides that induce root hair deformation and induce the initiation of nodule structures on legume roots. These lipo-chitin oligosaccharides are tetra- and penta-lipo-oligosaccharides of N-acetylglucosamine with an acyl substitution on the nonreducing end and are commonly known as Nod factors. In this study, we demonstrate that synthetic analogs of natural product Nod factors have the same biological activities. To determine structure-activity relationships, a collection of synthetic and natural product lipo-chitin oligosaccharides was assayed on Glycine soja. All biologically active lipo-chitin oligosaccharides induced both root hair deformation and nodule initiations on G. soja. The most active lipo-chitin oligosaccharides deformed root hairs at 10(-15) M and induced nodules at 1 ng of lipo-chitin oligosaccharide per spot inoculation. Plant responses demonstrate an interdependence of backbone length and the presence of substitutions on the reducing end. Lipo-chitin oligosaccharides containing four N-acetylglucosamine residues were active only without a reducing end modification, whereas lipo-chitin oligosaccharides containing five N-acetylglucosamine residues were active only with reducing end modification. The plant thus recognizes lipo-chitin oligosaccharides without reducing end substitutions despite the importance of these modifications for host range.

MeSH Terms
Carbohydrate Sequence Chitin/pharmacology Lipopolysaccharides/pharmacology Molecular Sequence Data Morphogenesis Oligosaccharides/pharmacology Plant Roots/cytology,drug effects,growth & development Rhizobiaceae/chemistry Soybeans/cytology,drug effects,growth & development Structure-Activity Relationship
Chemicals
Lipopolysaccharides Oligosaccharides lipid-linked oligosaccharides Chitin
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Stokkermans T J
Ohio State Biotechnology Center, Ohio State University, Columbus 43210-1002, USA.
Ikeshita S
Cohn J
Carlson R W
Stacey G
Ogawa T
Peters N K
References (27)
27 references, click to expand
  1. A plant flavone, luteolin, induces expression of Rhizobium meliloti nodulation genes.
    Science. 1986 Aug 29;233(4767):977-80 PMID: 3738520
  2. Chrysoeriol and Luteolin Released from Alfalfa Seeds Induce nod Genes in Rhizobium meliloti.
    Plant Physiol. 1990 Jan;92(1):116-22 PMID: 16667231
  3. Bradyrhizobium elkanii lipo-oligosaccharide signals induce complete nodule structures on Glycine soja Siebold et Zucc.
    Planta. 1994;193(3):413-20 PMID: 7764873
  4. Further studies of the ability of xyloglucan oligosaccharides to inhibit auxin-stimulated growth.
    Plant Physiol. 1992 May;99(1):180-5 PMID: 16668847
  5. A novel highly unsaturated fatty acid moiety of lipo-oligosaccharide signals determines host specificity of Rhizobium.
    Nature. 1991 Nov 14;354(6349):125-30 PMID: 1944592
  6. Symbiotic host-specificity of Rhizobium meliloti is determined by a sulphated and acylated glucosamine oligosaccharide signal.
    Nature. 1990 Apr 19;344(6268):781-4 PMID: 2330031
  7. Depolarization of alfalfa root hair membrane potential by Rhizobium meliloti Nod factors.
    Science. 1992 May 15;256(5059):998-1000 PMID: 10744524
  8. Characterization of a binding site for chemically synthesized lipo-oligosaccharidic NodRm factors in particulate fractions prepared from roots.
    Plant J. 1995 Feb;7(2):253-60 PMID: 7704048
  9. Structure-activity relationships for xyloglucan oligosaccharides with antiauxin activity.
    Plant Physiol. 1989 Mar;89(3):883-7 PMID: 16666636
  10. A Chalcone and Two Related Flavonoids Released from Alfalfa Roots Induce nod Genes of Rhizobium meliloti.
    Plant Physiol. 1989 Nov;91(3):842-7 PMID: 16667146
  11. Broad-host-range Rhizobium species strain NGR234 secretes a family of carbamoylated, and fucosylated, nodulation signals that are O-acetylated or sulphated.
    Mol Microbiol. 1992 Dec;6(23):3575-84 PMID: 1474899
  12. Solubilization of functional plasma membrane-localized hepta-beta-glucoside elicitor-binding proteins from soybean.
    Plant Physiol. 1993 Dec;103(4):1173-82 PMID: 8290628
  13. Stereoselective total synthesis of dodecagalacturonic acid, a phytoalexin elicitor of soybean.
    Carbohydr Res. 1990 Sep 19;205:147-59 PMID: 2276132
  14. A locus encoding host range is linked to the common nodulation genes of Bradyrhizobium japonicum.
    J Bacteriol. 1987 Jun;169(6):2631-8 PMID: 3584066
  15. Identification of a novel high-affinity binding site for N-acetylchitooligosaccharide elicitor in the membrane fraction from suspension-cultured rice cells.
    FEBS Lett. 1993 Aug 23;329(1-2):75-8 PMID: 8354412
  16. nolMNO genes of Bradyrhizobium japonicum are co-transcribed with nodYABCSUIJ, and nolO is involved in the synthesis of the lipo-oligosaccharide nodulation signals.
    J Biol Chem. 1993 Dec 25;268(36):27053-9 PMID: 8262943
  17. A 2-O-methylfucose moiety is present in the lipo-oligosaccharide nodulation signal of Bradyrhizobium japonicum.
    Proc Natl Acad Sci U S A. 1992 Sep 15;89(18):8789-93 PMID: 1528893
  18. Synthesis of (1----4)-linked galacturonic acid trisaccharides, a proposed plant wound-hormone and a stereoisomer.
    Carbohydr Res. 1990 Apr 25;200:363-75 PMID: 2379212
  19. Structure-activity relationships of oligo-beta-glucoside elicitors of phytoalexin accumulation in soybean.
    Plant Cell. 1991 Feb;3(2):127-36 PMID: 1840904
  20. The lipo-oligosaccharidic symbiotic signals of Rhizobium meliloti.
    Biochem Soc Trans. 1992 May;20(2):288-91 PMID: 1397613
  21. Developmental aspects of the Rhizobium-legume symbiosis.
    Plant Mol Biol. 1992 May;19(1):89-107 PMID: 1600171
  22. The structures and biological activities of the lipo-oligosaccharide nodulation signals produced by type I and II strains of Bradyrhizobium japonicum.
    J Biol Chem. 1993 Aug 25;268(24):18372-81 PMID: 8349712
  23. Perception of Rhizobium nodulation factors by tomato cells and inactivation by root chitinases.
    Proc Natl Acad Sci U S A. 1994 Mar 15;91(6):2196-200 PMID: 8134372
  24. Three unusual modifications, a D-arabinosyl, an N-methyl, and a carbamoyl group, are present on the Nod factors of Azorhizobium caulinodans strain ORS571.
    Proc Natl Acad Sci U S A. 1993 Feb 15;90(4):1551-5 PMID: 8434016
  25. Nodulation factors from Rhizobium tropici are sulfated or nonsulfated chitopentasaccharides containing an N-methyl-N-acylglucosaminyl terminus.
    Biochemistry. 1993 Oct 5;32(39):10430-5 PMID: 8399187
  26. nodZ, a unique host-specific nodulation gene, is involved in the fucosylation of the lipooligosaccharide nodulation signal of Bradyrhizobium japonicum.
    J Bacteriol. 1994 Feb;176(3):620-33 PMID: 8300517
  27. Rhizobium Lipooligosaccharides Rescue a Carrot Somatic Embryo Mutant.
    Plant Cell. 1993 Jun;5(6):615-620 PMID: 12271077
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
1995-08-00
Pages
1587-95
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC157539
Subset
IM
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