Soybean RIN4 represents a mechanistic link between plant immune and symbiotic signaling
Toth, K.; Kim, D.; Cho, S.-H.; Nguyen, C. T.; Hartanto, C.; Michno, J.-M.; Stec, A. O.; Stupar, R. M.; Stacey, G.
Show abstract
The legume-rhizobium symbiosis represents a unique and beneficial interaction between legumes and nitrogen-fixing soil bacteria, called rhizobia. The initiation and development of this symbiosis is complex and begins with recognition of key molecular signals, produced by the plant and its symbiont, which determine symbiotic compatibility. Current data suggest that the invading symbiont initially triggers plant immune responses that are subsequently suppressed. Hence, there is growing evidence that features of plant immunity may be relevant to symbiotic establishment. RIN4 is a key immune regulator in plants, regulating basal immunity and it is also targeted by pathogen effector proteins that either confer susceptibility or resistance, depending on the presence of the appropriate resistance protein. Surprisingly, we found that RIN4 was rapidly phosphorylated upon rhizobial inoculation of soybean root hairs. RNAi silencing and mutant studies indicate that RIN4 expression is essential for effective nodulation of soybean. RIN4 phosphorylation occurs within a fifteen amino acid motif, which is highly conserved within the Fabales (legumes) and Rosales orders, which comprise species capable of nitrogen-fixing endosymbiosis with rhizobia. RIN4 proteins mutated in this conserved phosphorylation site failed to support efficient soybean nodulation. Phosphorylation of this site is mediated by the symbiotic receptor-like kinase, SymRK, a well-studied member of the symbiotic signaling pathway. The data implicate RIN4 phosphorylation as a key mediator of rhizobial compatibility, interconnecting symbiotic and immune signaling pathways. SignificanceThe nitrogen fixing legume-rhizobium symbiosis is a cornerstone of sustainable agriculture, with ongoing efforts to transfer this unique ability to non-leguminous crop plants. Plants are surrounded by a myriad of microbes in the soil, and, therefore, require constant surveillance in order to distinguish between a pathogen or symbiont. Plants monitor for specific molecular signals that indicate pathogen or symbiont presence. We show that RIN4, a key immune regulator, plays an essential role in promoting the development of the symbiotic nitrogen-fixing relationship between soybean and its compatible symbiont Bradyrhizobium japonicum. Therefore, RIN4 is likely a key player in mediating the appropriate response upon infection by friend or foe.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- ENHANCED GRAVITROPISM 2 encodes a STERILE ALPHA MOTIVE containing protein that controls root growth angle in barley and wheat 97%
- ZmPILS6 is an auxin efflux carrier required for maize root morphogenesis 97%
- THESEUS1 modulates cell wall stiffness and abscisic acid production in Arabidopsis thaliana 96%
Similar papers in this journal
- CALCIUM-DEPENDENT PROTEIN KINASE32 regulates cellulose biosynthesis through post-translational modification of cellulose synthase 95%
- A high confidence Physcomitrium patens plasmodesmata proteome by iterative scoring and validation reveals diversification of cell wall proteins during evolution 95%
- The establishment of Populus x Laccaria bicolor ectomycorrhiza requires the inactivation of MYC2 coordinated defense response with a key role for root terpene synthases 94%
Similar papers in this journal
- Conservation and divergence of regulatory architecture in nitrate-responsive plant gene circuits 96%
- Evolutionary variation in MADS-box dimerization affects floral development and protein degradation dynamics in maize 95%
- Evolutionary conserved protein motifs drive attachment of the plant nucleoskeleton at nuclear pores 95%
Similar papers in this journal
Similar papers in this journal
- The PELOTA-HBS1 Complex Orchestrates mRNA Translation Surveillance and PDK1-mediated Plant Growth and Development 96%
- Mechanism of nucleus-chloroplast communication by alternative promoter usage and stromules to establish photomorphogenesis in Arabidopsis 94%
- The evolution of stomatal traits along the trajectory towards C4 photosynthesis 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.