The tomato OST1–VOZ1 module regulates drought-mediated flowering

Author:

Chong Leelyn12ORCID,Xu Rui12ORCID,Huang Pengcheng12ORCID,Guo Pengcheng12ORCID,Zhu Mingku3ORCID,Du Hai4ORCID,Sun Xiaoli5ORCID,Ku Lixia6,Zhu Jian-Kang78ORCID,Zhu Yingfang12ORCID

Affiliation:

1. State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng 475001, China

2. Sanya Institute of Henan University, Sanya, 572025, China

3. Institute of Integrative Plant Biology, School of Life Sciences, Jiangsu Normal University, Xuzhou 221116, China

4. College of Agronomy and Biotechnology, Chongqing Engineering Research Center for Rapeseed, Southwest University, Chongqing 400716, China

5. Crop Stress Molecular Biology Laboratory, Heilongjiang Bayi Agricultural University, Daqing 163319, China

6. College of Agronomy, Synergetic Innovation Center of Henan Grain Crops and National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, Zhengzhou 450046, China

7. Shanghai Center for Plant Stress Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China

8. Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907, USA

Abstract

Abstract Flowering is a critical agricultural trait that substantially affects tomato fruit yield. Although drought stress influences flowering time, the molecular mechanism underlying drought-regulated flowering in tomato remains elusive. In this study, we demonstrated that loss of function of tomato OPEN STOMATA 1 (SlOST1), a protein kinase essential for abscisic acid (ABA) signaling and abiotic stress responses, lowers the tolerance of tomato plants to drought stress. slost1 mutants also exhibited a late flowering phenotype under both normal and drought stress conditions. We also established that SlOST1 directly interacts with and phosphorylates the NAC (NAM, ATAF and CUC)-type transcription factor VASCULAR PLANT ONE-ZINC FINGER 1 (SlVOZ1), at residue serine 67, thereby enhancing its stability and nuclear translocation in an ABA-dependent manner. Moreover, we uncovered several SlVOZ1 binding motifs from DNA affinity purification sequencing analyses and revealed that SlVOZ1 can directly bind to the promoter of the major flowering-integrator gene SINGLE FLOWER TRUSS to promote tomato flowering transition in response to drought. Collectively, our data uncover the essential role of the SlOST1–SlVOZ1 module in regulating flowering in response to drought stress in tomato and offer insights into a novel strategy to balance drought stress response and flowering.

Funder

National Natural Science Foundation of China

Henan Science and Technology Development Plan

State Key Laboratory of Plant Physiology and Biochemistry

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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