Linking sugar sensing to immunity in plants via O-glycosylation

  • bioRxiv. 2026 May 10:2026.05.04.722566. doi: 10.64898/2026.05.04.722566.
Yalikunjiang Aizezi  1  2  3 Yang Bi  1  4  3 Hongliang Zhang  1  3 Jung-Gun Kim  2 Ajeet Chaudhary  1 Cao Son Trinh  1 Qingxi J Shen  1  5 Shou-Ling Xu  1 Mary Beth Mudgett  2 Zhi-Yong Wang  1  6
Affiliations
  • 1. Department of Plant Biology, Carnegie Institution for Science, Stanford, CA, USA.
  • 2. Department of Biology, Stanford University, Stanford, CA 94305, USA.
  • 3. These authors contributed equally.
  • 4. Department of Biology, Hong Kong Baptist University, Hong Kong.
  • 5. School of Life Sciences, University of Nevada, Las Vegas, NV 89154-4004, USA.
  • 6. Lead contact.
Abstract

Interaction with microbes can reprogram metabolism and alter nutrient availability in plant cells. How metabolic cues modulate immune responses remains unknown. Here, we show that sugar-sensing O-glycosylation of immune-signaling kinases mediates metabolic regulation of immunity. Under sugar-replete conditions, the MAP kinase kinases (MKK4 and MKK5), key components of pattern-triggered immunity (PTI), are glycosylated by O-GlcNAc and O-fucose in their activation loops and thus cannot be activated by upstream kinases, thereby restricting PTI. Pathogen Infection or sugar starvation reduces O-glycosylation of MKK4/5 and enhances immune signaling; these effects are reversed by GDP-fucose treatment, demonstrating that reduced sugar availability decreases O-fucosylation and enhances immune signaling in infected cells. Chemical inhibition of O-fucosylation enhances immunity and pathogen resistance in both Arabidopsis and tomato. Our findings establish O-glycosylation of MKKs as a metabolic rheostat that fine-tunes immune responses according to sugar availability during plant-microbe interactions, providing a new strategy for improving crop health.

Keywords
MAMP-triggered immunity; MAPK signaling; Protein O-glycosylation; sugar sensing.
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