Phosphorylation of WDR48 by phototropins drives starch degradation to promote stomatal opening

S Shota Yamauchi S Saashia Fuji H Hiroki Ikuta N Naoyuki Sugiyama Y Yutaka Kodama (Center for Bioscience Research and Education, Utsunomiya University) L Luca Distefano H Haruki Fujii K Kota Yamashita H Hinano Takase M Mika Nomoto (Center for Gene Research, Nagoya University) Y Yasuomi Tada (Center for Gene Research, Nagoya University) T Taishi Umezawa K Kazuhiro Hotta D Diana Santelia K Ken-ichiro Shimazaki A Atsushi Takemiya

Abstract

Abstract Plant stomata open in response to blue light under a background of red light. Red light induces starch accumulation through guard cell photosynthesis, whereas blue light causes rapid starch degradation via the activation of plasma membrane H + -ATPase through phosphorylation of BLUS1 by phototropins, thus promoting stomatal opening. However, how phototropins mediate starch degradation remains unclear. In this study, we identified WD-repeat protein 48 (WDR48), which is essential for starch degradation. Phosphoproteomic analysis revealed that WDR48 was phosphorylated in response to blue light. Mutation of WDR48 impaired starch degradation and stomatal opening by blue light. Phototropins interacted with and phosphorylated WDR48. WDR48 and BLUS1 constituted separate signalling pathways required for starch degradation. We propose that the coordinated control of starch synthesis by red light and its degradation by blue light signalling through WDR48 and BLUS1 is a key mechanism for stomatal opening by red and blue light.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 06, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

S

Shota Yamauchi

S

Saashia Fuji

H

Hiroki Ikuta

N

Naoyuki Sugiyama

Y

Yutaka Kodama

Center for Bioscience Research and Education, Utsunomiya University

L

Luca Distefano

H

Haruki Fujii

K

Kota Yamashita

H

Hinano Takase

M

Mika Nomoto

Center for Gene Research, Nagoya University

Y

Yasuomi Tada

Center for Gene Research, Nagoya University

T

Taishi Umezawa

K

Kazuhiro Hotta

D

Diana Santelia

K

Ken-ichiro Shimazaki

A

Atsushi Takemiya