Rhizobium meliloti produces a family of sulfated lipooligosaccharides exhibiting different degrees of plant host specificity.
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Summary
It is suggested that the production of a series of active signal molecules with different degrees of specificity might be important in controlling the symbiosis of R. meliloti with several different host plants or under different environmental conditions.
- Type
- article
- Published
- 1992-01-01
- Cited by
- 230
- References
- 3
- Access
- Open access
- OpenAlex
- https://openalex.org/W2011273061
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6359229
Keywords
Melilotus, Medicago sativa, Rhizobium, Biology, Vicia faba
References
Cited by
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- Production of nodulation factors by Rhizobium meliloti: fermentation, purification and characterization of glycolipids
- Two types of calcium signalling in legume-rhizobia symbiosis
- A host-specific bacteria-to-plant signal molecule (Nod factor) enhances germination and early growth of diverse crop plants
- The mode of action of cell wall-degrading enzymes and their interference with Nod factor signalling in Medicago sativa root hairs
- Root Hair Deformation Activity of Nodulation Factors and Their Fate on Vicia sativa
- A genetic approach to study rhizobial Nod factor and mycorrhizal fungi activated signaling
- Nitrogen-fixing leguminous symbioses
- Phenomic and genomic diversity of a bacterial species in a local population
- In vitro sulfotransferase activity of NodH, a nodulation protein of Rhizobium meliloti required for host-specific nodulation
- Lipo-chitooligosaccharide Nodulation Signals from Rhizobium meliloti Induce Their Rapid Degradation by the Host Plant Alfalfa
- Bacterial‐induced calcium oscillations are common to nitrogen‐fixing associations of nodulating legumes and non‐legumes
- Factores de Nodulación. Experiencia en Cuba
- Chitin oligosaccharides can induce cortical cell division in roots of Vicia sativa when delivered by ballistic microtargeting.
- Growth factor modulation of substrate-specific morphological patterns in Aplysia bag cell neurons.
- The Rhizobium-plant symbiosis.
- Flavone-enhanced accumulation and symbiosis-related biological activity of a diglycosyl diacylglycerol membrane glycolipid from Rhizobium leguminosarum biovar trifolii
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