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Updated: May 25, 2026

Pattern-Triggered Oxidative Burst and Seedling Growth Inhibition Assays in Arabidopsis thaliana
Published on: May 21, 2019
The RLK7-MPK3/6-LEAFY PETIOLE signaling axis mediates growth inhibition during PIP peptide-induced immunity in
Uyen Thu Nguyen1, Jin Sun Kim2, Na Young Kang2
1Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju 61186, Korea.
Abstract:
Pathogen-associated molecular patterns (PAMPs) activate plant immunity through plasma membrane-localized receptor-like kinases (RLKs) and receptor-like proteins. The PAMP flg22 binds FLAGELLIN SENSING 2 (FLS2), inducing the expression of defense-related genes, including those encoding PAMP-INDUCED PEPTIDEs (PIPs), which enhance pathogen resistance via RLK7. However, the mechanisms underlying PAMP- and PIP-mediated growth-defense trade-off remain unclear. Here, we show that PIP1 and PIP2 suppress lateral root (LR) development and seedling growth through the RLK7-MPK3/6-LEAFY PETIOLE (LEP) signaling cascade, with LEP acting as a key node that inhibits LR formation and seedling growth. Exogenous application of PIP1/2 peptides and overexpression of prePIP1 and prePIP2 inhibit LR development, whereas mutations in prePIP1 or prePIP2 enhance primary root growth and accelerate LR develomental kinetics. Genetic analyses, coimmunoprecipitation, peptide-binding and kinase assays, rapamycin-induced dimerization, and a BIR3 chimera system collectively revealed that PIP1/2 recognition promotes the interaction of RLK7 with SOMATIC EMBRYOGENESIS RECEPTOR KINASE coreceptors, triggering MPK3/6-dependent phosphorylation events and inhibiting LR development. The transcription factor LEP acts downstream of RLK7-MPK6 signaling to inhibit LR development. Loss of LEP function alleviates PIP-induced inhibition of seedling growth and LR formation without compromising immune responses. These findings suggest that PIP1/2 peptides mediate the trade-off between growth and defense via the RLK7-MPK6-LEP signaling axis. The flg22 peptide suppresses LR formation and seedling growth in part through the PIP1/2-RLK7-MPK6-LEP signaling pathway, which bifurcates from immune responses downstream of MPK3/6. This study establishes a genetic framework for optimizing crop resilience by decoupling immune activation from growth suppression.

