Glutathione triggers leaf-to-leaf, calcium-based plant defense signaling
Abstract
Abstract Animals rely on nervous systems to cope with environmental variability, whereas plants are characterized by lack of nervous system but still have evolved systemic communication systems through signaling molecules that trigger long-distance defense signaling events when encountered with environmental challenges. Here, our genetic screening of the previously constructed hairpin RNA-based Arabidopsis library identifies a glutathione (GSH)-deficient mutant that has high accumulation of glutamate (Glu), a previously defined wound signal essential for activating plant defense, but disharmoniously exhibits attenuation of defense signaling events. We further uncover GSH as a critical signaling molecule that relies on GLUTAMATE RECEPTOR-LIKE 3.3 (GLR3.3) to trigger long-distance calcium-based defense signaling events in plants. Our findings offer new insights into highly sophisticated systemic defense systems evolved by plants to defend against herbivory and pathogen invasion.
Article Details
Authors (12)
Rui Li
Yongfang Yang
Hao Lou
Weicheng Wang
Ran Du
Haidong Chen
School of Safety Science and Engineering, Henan Polytechnic University 1 , Jiaozuo 454003,
Xiaoxi Du
Shuai Hu
Guo-Liang Wang
Jianbin Yan
Xiaoyi Shan
Daoxin Xie