The osmotic stress–activated receptor-like kinase DPY1 mediates SnRK2 kinase activation and drought tolerance in Setaria

Author:

Zhao Meicheng1ORCID,Zhang Qi1ORCID,Liu Hong12ORCID,Tang Sha3ORCID,Shang Chunyue14ORCID,Zhang Wei3ORCID,Sui Yi3ORCID,Zhang Yuxue1ORCID,Zheng Chunyan1ORCID,Zhang Hui3ORCID,Liu Cuimei5ORCID,Chu Jinfang56ORCID,Jia Guanqing3ORCID,Wang Haigang4ORCID,Liu Xigang27ORCID,An Diaoguo1ORCID,Zhu Feng1ORCID,Zhi Hui3ORCID,Wu Chuanyin3ORCID,Diao Xianmin37ORCID

Affiliation:

1. Key Laboratory of Agricultural Water Resources, Hebei Key Laboratory of Soil Ecology, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences , Shijiazhuang 050021 , China

2. Ministry of Education Key Laboratory of Molecular and Cellular Biology, Hebei Key Laboratory of Molecular and Cellular Biology, College of Life Sciences, Hebei Normal University , Shijiazhuang 050024 , China

3. Institute of Crop Sciences, Chinese Academy of Agricultural Sciences , Beijing 100081 , China

4. Center for Agricultural Genetic Resources Research, Shanxi Agricultural University , Taiyuan 030031 , China

5. National Centre for Plant Gene Research (Beijing), Institute of Genetics and Developmental Biology, Chinese Academy of Sciences , Beijing 100101 , China

6. College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences , Beijing 100049 , China

7. Hebei Collaboration Innovation Center for Cell Signaling, Hebei Normal University , Shijiazhuang 050024 , China

Abstract

Abstract Plant genomes encode many receptor-like kinases (RLKs) that localize to the cell surface and perceive a wide variety of environmental cues to initiate downstream signaling cascades. Whether these RLKs participate in dehydration stress signaling in plants is largely unknown. DROOPY LEAF1 (DPY1), a leucine-rich repeat (LRR)-RLK, was recently shown to regulate plant architecture by orchestrating early brassinosteroid signaling in foxtail millet (Setaria italica). Here, we show that DPY1 is essential for the acclimation of foxtail millet to drought stress. DPY1 can be phosphorylated and activated in response to osmotic stress and is required for more than half of osmotic stress–induced global phosphorylation events, including the phosphorylation of sucrose nonfermenting kinase 2s (SnRK2s), the central kinases involved in osmotic stress. DPY1 acts upstream of STRESS-ACTIVATED PROTEIN KINASE 6 (SAPK6, a subclass I SnRK2) and is required for full SAPK6 activation, thereby allowing regulation of downstream genes to mount a response against drought stress. These signaling events are largely independent of DPY1-mediated brassinosteroid signaling. The DPY1-SAPK6 module is specific to seed plants and is absent in ancestral nonseed plants. Our findings reveal a dehydration stress–activated RLK that plays an indispensable role in osmotic stress signaling and mediates SnRK2 activation at the cell surface.

Funder

Hebei Science Fund for Distinguished Young Scholars

Natural Science Foundation of Hebei

Province

National Natural Science Foundation of China

Hebei Province Key Research and Development Program

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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