Chemical genetics reveals cross-activation of plant developmental signaling by the immune peptide-receptor pathway
Herrmann, A.; Sepuru, K. M.; Endo, H.; Nakagawa, A.; Kusao, S.; Bai, P.; Ziadi, A.; Kato, H.; Sato, A.; Liu, J.; Shan, L.; Kimura, S.; Itami, K.; Uchida, N.; Hagihara, S.; Torii, K. U.
Show abstract
Cells sense and integrate multiple signals to coordinate development and defence. A receptor-kinase signaling pathway for plant stomatal development shares components with the immunity pathway. The mechanism ensuring their signal specificities remains unclear. Using chemical genetics, here we report the identification of a small molecule, kC9, that triggers excessive stomatal differentiation by inhibiting the canonical ERECTA receptor-kinase pathway. kC9 binds to and inhibits the downstream MAP kinase MPK6, perturbing its substrate interaction. Strikingly, activation of immune signaling by a bacterial flagellin peptide nullified kC9s effects on stomatal development. This cross-activation of stomatal development by immune signaling depends on the immune receptor FLS2 and occurs even in the absence of kC9 if the ERECTA-family receptor population becomes suboptimal. Furthermore, proliferating stomatal-lineage cells are vulnerable to the immune signal penetration. Our findings suggest that the signal specificity between development and immunity can be ensured by MAP Kinase homeostasis reflecting the availability of upstream receptors, thereby providing a novel view on signal specificity.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Arabidopsis SHORTROOT network coordinates shoot apical meristem development with auxin dependent lateral organ initiation 96%
- Tuning of self-renewing capacity in theArabidopsis stomatal lineage by hormonaland nutrition regulation of asymmetric celldivisions 96%
- Single-molecule analysis reveals the phosphorylation of FLS2 governs its spatiotemporal dynamics and immunity 95%
Similar papers in this journal
- A bacterial effector uncovers a metabolic pathway involved in resistance to bacterial wilt disease 95%
- Direct acetylation of the conserved threonine of an immune regulator by bacterial effectors activates RPM1-dependent immunity in Arabidopsis 95%
- Brassinosteroid recruits FERONIA to safeguard cell expansion in Arabidopsis 94%
Similar papers in this journal
- Wounding and insect feeding trigger two independent MAPK pathways with distinct regulation and kinetics 96%
- Ectopic assembly of an auxin efflux control machinery shifts developmental trajectories 96%
- Constitutive activation of leucine-rich repeat receptor kinase signaling pathways by BAK1-interacting receptor-like kinase 3 chimera 95%
Similar papers in this journal
- Reduced light access promotes hypocotyl growth via autophagy-mediated recycling 95%
- A hierarchical transcriptional network activates specific CDK inhibitors that regulate G2 to control cell size and number in Arabidopsis 95%
- Humidity-driven ABA depletion determines plant-pathogen competition for leaf water 95%
Similar papers in this journal
- Identification of RACK1A as a component of the auxin-ethylene crosstalk regulating apical hook development in Arabidopsis thaliana 96%
- Preventing Inappropriate Signals Pre- and Post-Ligand Perception by a Toggle-Switch Mechanism of ERECTA 95%
- Clathrin-mediated endocytosis of ERECTA family receptors is essential for proper stomatal development in Arabidopsis 95%
"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.