The Mg-Chelatase H Subunit ofArabidopsisAntagonizes a Group of WRKY Transcription Repressors to Relieve ABA-Responsive Genes of Inhibition

Author:

Shang Yi1,Yan Lu12,Liu Zhi-Qiang12,Cao Zheng12,Mei Chao1,Xin Qi12,Wu Fu-Qing12,Wang Xiao-Fang12,Du Shu-Yuan1,Jiang Tao12,Zhang Xiao-Feng1,Zhao Rui12,Sun Hai-Li12,Liu Rui12,Yu Yong-Tao1,Zhang Da-Peng1

Affiliation:

1. Protein Science Laboratory of the Ministry of Education, School of Life Sciences, Tsinghua University, Beijing 100084, China

2. College of Biological Sciences, China Agricultural University, Beijing 100094, China

Abstract

AbstractThe phytohormone abscisic acid (ABA) plays a vital role in plant development and response to environmental challenges, but the complex networks of ABA signaling pathways are poorly understood. We previously reported that a chloroplast protein, the magnesium-protoporphyrin IX chelatase H subunit (CHLH/ABAR), functions as a receptor for ABA in Arabidopsis thaliana. Here, we report that ABAR spans the chloroplast envelope and that the cytosolic C terminus of ABAR interacts with a group of WRKY transcription factors (WRKY40, WRKY18, and WRKY60) that function as negative regulators of ABA signaling in seed germination and postgermination growth. WRKY40, a central negative regulator, inhibits expression of ABA-responsive genes, such as ABI5. In response to a high level of ABA signal that recruits WRKY40 from the nucleus to the cytosol and promotes ABAR–WRKY40 interaction, ABAR relieves the ABI5 gene of inhibition by repressing WRKY40 expression. These findings describe a unique ABA signaling pathway from the early signaling events to downstream gene expression.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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