Ustilago maydis disrupts carbohydrate signaling networks to induce hypertrophy in host cells

Y Yoon Joo Lee D Dong Zhang (School of Physical Science and Technology & Shanghai Key Laboratory of High-Resolution Electron Microscopy) S Sara Christina Stolze G Georgios Saridis M Malaika K. Ebert H Hirofumi Nakagami G Gunther Doehlemann (Institute for Plant Sciences and Cluster of Excellence on Plant Sciences, University of Cologne)

Abstract

Abstract Ustilago maydis infection in maize causes hypertrophic leaf tumors; however, the underlying mechanisms driving this excessive cell growth are unknown. In this study, we identify Hap1 (hypertrophy-associated protein 1) as an effector and virulence factor that regulates mesophyll cell hypertrophy. Using CRISPR-Cas9 mutagenesis, we demonstrate that Hap1 contributes to endoreduplication and starch accumulation in infected tissues. Transcriptomics revealed Hap1-dependent upregulation of starch biosynthesis and cell cycle genes, as well as suppression of plant defense. This links Hap1 to metabolic and cell cycle reprogramming, and immune suppression. To identify the target of Hap1 that drives metabolic reprogramming, we investigated its interaction with ZmSnRK1α in maize. We found that Hap1 interferes with the phosphorylation of SnRK1 substrates and that two Hap1-interacting effectors, Hip1 and Hip2, enhance its protein stability. We conclude that Hap1 contributes to the reprogramming of maize metabolism and cell cycle, as well as mesophyll cell hypertrophy, by modulating the SnRK1 signaling pathway to regulate starch biosynthesis and host defense responses.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 20, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

Y

Yoon Joo Lee

D

Dong Zhang

School of Physical Science and Technology & Shanghai Key Laboratory of High-Resolution Electron Microscopy

S

Sara Christina Stolze

G

Georgios Saridis

M

Malaika K. Ebert

H

Hirofumi Nakagami

G

Gunther Doehlemann

Institute for Plant Sciences and Cluster of Excellence on Plant Sciences, University of Cologne