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by Cheng, R and Wang, L and Li, J and Fu, R and Wang, S and Zhang, J
Journal of Applied Microbiology, ISSN 1364-5072, 12/2019, Volume 127, Issue 6, pp. 1716 - 1726
Journal Article
Journal of Bacteriology, ISSN 0021-9193, 07/2018, Volume 200, Issue 13, p. e00665-17
Sinorhizobium meliloti enters into beneficial symbiotic interactions with Medicago species of legumes. Bacterial exopolysaccharides play critical signaling... 
Symbiosis | Exopolysaccharide | Antimicrobial activity | PLANT | STRUCTURAL-CHARACTERIZATION | MICROBIOLOGY | antimicrobial activity | exopolysaccharide | NODULE INVASION | MUTANTS | CALCOFLUOR-BINDING EXOPOLYSACCHARIDE | MEDICAGO-TRUNCATULA | symbiosis | MOLECULAR-WEIGHT SUCCINOGLYCAN | RHIZOBIUM-MELILOTI | ANTIBACTERIAL PEPTIDE | ALFALFA
Journal Article
JOURNAL OF BACTERIOLOGY, ISSN 0021-9193, 10/2007, Volume 189, Issue 19, pp. 7077 - 7088
Sinorhizobium meliloti is a gram-negative soil bacterium capable of forming a symbiotic nitrogen-fixing relationship with its plant host, Medicago sativa.... 
LEGUME SYMBIOSIS | CALCOFLUOR-BINDING EXOPOLYSACCHARIDE | GENE-CLUSTER | SYMBIOTICALLY IMPORTANT EXOPOLYSACCHARIDE | ACYL HOMOSERINE LACTONES | STRUCTURAL-CHARACTERIZATION | MICROBIOLOGY | FORM INEFFECTIVE NODULES | NITROGEN-FIXING RHIZOBIA | MOLECULAR-WEIGHT SUCCINOGLYCAN | BIOFILM FORMATION
Journal Article
Journal of Bacteriology, ISSN 0021-9193, 05/2013, Volume 195, Issue 9, p. 2032
  Sinorhizobium meliloti NRG247 has a Fix+ phenotype on Medicago truncatula A20 and is Fix- on M. truncatula A17, and the phenotype is reversed with S.... 
Genotype & phenotype | Polymerization | Bacteria | Mass spectrometry | Chromatography | Molecular weight
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