Home/ Publications/ Phosphorylation-Regulated Activation of the Arabidopsis RRS1-R/RPS4 Immune Receptor Complex Reveals Two Distinct Effector Recognition Mechanisms Phosphorylation-Regulated Activation of the Arabidopsis RRS1-R/RPS4 Immune Receptor Complex Reveals Two Distinct Effector Recognition Mechanisms Published: 03.04.20 Authors: Guo H, Ahn HK, Sklenar J, Huang J, Ma Y, Ding P, Menke FLH, Jones JDG (2020) Reference: Cell Host Microbe. 2020 Mar 29. pii: S1931-3128(20)30172-4. doi: 10.1016/j.chom.2020.03.008. Recent publications See all Published: 16.07.26 Stomata — guarding the gates against bacterial invasion Published: 10.07.26 Computational design of de novo integrated domains enables rational control of pathogen effector recognition in plant NLR immune receptors Published: 10.07.26 A β-carboline natural product induces oxidative stress in Fusarium graminearum and limits the virulence of multiple fungal phytopathogens
Published: 10.07.26 Computational design of de novo integrated domains enables rational control of pathogen effector recognition in plant NLR immune receptors
Published: 10.07.26 A β-carboline natural product induces oxidative stress in Fusarium graminearum and limits the virulence of multiple fungal phytopathogens