Home/ Publications/ The highly buffered Arabidopsis immune signaling network conceals the functions of its components The highly buffered Arabidopsis immune signaling network conceals the functions of its components Published: 08.05.17 Authors: Hillmer RA, Tsuda K, Rallapalli G, Asai S, Truman W, Papke MD, Sakakibara H, Jones JDG, Myers CL, Katagiri F (2017) Reference: PLoS Genet. 2017 May 4;13(5):e1006639. doi: 10.1371/journal.pgen.1006639. Recent publications See all Published: 20.08.26 Genomes of Poaceae relatives reveal key metabolic innovations preceding the evolution of grasses Published: 19.08.26 Secondary metabolism in fungal-insect interactions Published: 18.08.26 Iron-responsive transcription factor SreA regulates calcium homeostasis independently of calcineurin-Crz1 pathway in Fusarium graminearum
Published: 20.08.26 Genomes of Poaceae relatives reveal key metabolic innovations preceding the evolution of grasses
Published: 18.08.26 Iron-responsive transcription factor SreA regulates calcium homeostasis independently of calcineurin-Crz1 pathway in Fusarium graminearum