The Mg-chelatase H subunit of Arabidopsis antagonizes a group of WRKY transcription repressors to relieve ABA-responsive genes of inhibition

拟南芥的Mg螯合酶H亚基拮抗一组WRKY转录抑制因子,从而缓解ABA反应基因的抑制

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作者:Yi Shang, Lu Yan, Zhi-Qiang Liu, Zheng Cao, Chao Mei, Qi Xin, Fu-Qing Wu, Xiao-Fang Wang, Shu-Yuan Du, Tao Jiang, Xiao-Feng Zhang, Rui Zhao, Hai-Li Sun, Rui Liu, Yong-Tao Yu, Da-Peng Zhang

Abstract

The 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.

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