Analysis of Nod-factor-induced calcium signaling in root hairs of symbiotically defective mutants of Lotus japonicus.
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Summary
It is proposed that increased bacterial numbers within infection foci in root hairs leads to accumulation of Nod factor to sufficient levels to activate the calcium flux, and this may drive infection thread growth.
- Type
- article
- Published
- 2006-08-01
- Cited by
- 184
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W1979607668
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5029076
Keywords
Nod factor, Calcium, Root hair, Lotus japonicus, Calcium in biology
References
- A Putative Ca2+ and Calmodulin-Dependent Protein Kinase Required for Bacterial and Fungal Symbioses
- Role of the Differentiation of Root Epidermal Cells in Nod Factor (from Rhizobium meliloti)-Induced Root-Hair Depolarization of Medicago sativa
- A plant regulator controlling development of symbiotic root nodules
- A Ca2+/calmodulin-dependent protein kinase required for symbiotic nodule development: Gene identification by transcript-based cloning.
- Rhizobium meliloti lipooligosaccharide nodulation factors: different structural requirements for bacterial entry into target root hair cells and induction of plant symbiotic developmental responses.
- Calcium spiking in plant root hairs responding to Rhizobium nodulation signals.
- A receptor kinase gene of the LysM type is involved in legumeperception of rhizobial signals
- Lipochito‐oligosaccharides re‐initiate root hair tip growth in Vicia sativa with high calcium and spectrin‐like antigen at the tip
- Regulation of Plant Symbiosis Receptor Kinase through Serine and Threonine Phosphorylation*
- Root, root hair, and symbiotic mutants of the model legume Lotus japonicus.
- Pharmacological Evidence That Multiple Phospholipid Signaling Pathways Link Rhizobium Nodulation Factor Perception in Medicago truncatula Root Hairs to Intracellular Responses, Including Ca2+ Spiking and Specific ENOD Gene Expression1
- Rhizobium meliloti Nod factors elicit cell-specific transcription of the ENOD12 gene in transgenic alfalfa.
- Six nonnodulating plant mutants defective for Nod factor-induced transcriptional changes associated with the legume-rhizobia symbiosis.
- NSP1 of the GRAS Protein Family Is Essential for Rhizobial Nod Factor-Induced Transcription
- Plant recognition of symbiotic bacteria requires two LysM receptor-like kinases
- Deregulation of a Ca2+/calmodulin-dependent kinase leads to spontaneous nodule development
- Rapid alkalinization in alfalfa root hairs in response to rhizobial lipochitooligosaccharide signals
- Rhizobium-lnduced calcium spiking in Lotus japonicus.
- Calcium, kinases and nodulation signalling in legumes
- A receptor kinase gene regulating symbiotic nodule development
Cited by
- Régulation de la symbiose endomycorhizienne par le phosphate
- CYCLOPS, a mediator of symbiotic intracellular accommodation
- Lotus japonicus Clathrin Heavy Chain1 Is Associated with Rho-Like GTPase ROP6 and Involved in Nodule Formation1[OPEN]
- Genome-wide characterization of GRAS family genes in Medicago truncatula reveals their evolutionary dynamics and functional diversification
- Transport de l'auxine et développement du nodule actinorhizien chez l'arbre tropical Casuarina glauca
- The central roles of iron and calcium for plant/microbe interaction and shaping microbial communities in the soil
- Advances in the identification of novel factors required in soybean nodulation, a process critical to sustainable agriculture and food security
- SUNERGOS1, a Lotus japonicus gene required for proper accommodation of rhizobial infection
- Rhizobial infection in nodulation
- Phosphoprotein analysis of soybean root hairs in response to Bradyrhizobium japonicum inoculation
- The analysis and modelling of chaotic calcium oscillations
- REGULATION OF CALCIUM INFLUX AND REACTIVE OXYGEN SPECIES PRODUCTION DURING INFECTION OF LEGUMES BY RHIZOBIA
- Defining the mechanisms of specificity in the symbiosis signalling pathway of Medicago truncatula
- Lipo-chitooligosaccharidic nodulation factors and their perception by plant receptors
- Influence of arbuscular mycorrhizal fungi and the expression of K+/Cs+ transporters on the accumulation of caesium by plants
- Two types of calcium signalling in legume-rhizobia symbiosis
- Interactions between plants and arbuscular mycorrhizal fungi.
- Genetic Analysis of Arbuscular Mycorrhiza Development in Lotus japonicus
- Functional Characterisation of Two Channels Proteins Involved in Leguminous Symbiosis
- Rhizobial infection does not require cortical expression of upstream common symbiosis genes responsible for the induction of Ca2+ spiking
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