Cell- and noncell-autonomous AUXIN RESPONSE FACTOR3 controls meristem proliferation and phyllotactic patterns

Author:

Zhang Ke1ORCID,Zhang Hao123ORCID,Pan Yanyun3ORCID,Niu Yanxiao2,Guo Lin24ORCID,Ma Yuru2ORCID,Tian Shijun1ORCID,Wei Jiarong1ORCID,Wang Cong1ORCID,Yang Xiubo1ORCID,Fu Yunze1ORCID,Qu Ping1ORCID,Liu Liantao1ORCID,Zhang Yongjiang1ORCID,Sun Hongchun1ORCID,Bai Zhiying1ORCID,Dong Jingao13ORCID,Li Cundong1ORCID,Liu Xigang24ORCID

Affiliation:

1. State Key Laboratory of North China Crop Improvement and Regulation; Key Laboratory of Crop Growth Regulation of Hebei Province, College of Agronomy, Hebei Agricultural University , Baoding, Hebei, 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; Hebei Collaboration Innovation Center for Cell Signaling , Shijiazhuang, China

3. State Key Laboratory of North China Crop Improvement and Regulation; Key Laboratory of Hebei Province for Plant Physiology and Molecular Pathology, College of Life Sciences, Hebei Agricultural University , Baoding, China

4. State Key Laboratory of Plant Cell and Chromosome Engineering, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences , Shijiazhuang, China

Abstract

Abstract In cell–cell communication, noncell-autonomous transcription factors play vital roles in controlling plant stem cell fate. We previously reported that AUXIN RESPONSE FACTOR3 (ARF3), a member of the ARF family with critical roles in floral meristem maintenance and determinacy, has a distinct accumulation pattern that differs from the expression domain of its encoding gene in the shoot apical meristem (SAM). However, the biological meaning of this difference is obscure. Here, we demonstrate that ARF3 expression in Arabidopsis (Arabidopsis thaliana) is mainly activated at the periphery of the SAM by auxin where ARF3 cell autonomously regulates the expression of meristem–organ boundary-specific genes, such as CUP-SHAPED COTYLEDON1-3 (CUC1-3), BLADE ON PETIOLE1-2 (BOP1-2), and TARGETS UNDER ETTIN CONTROL3 (TEC3) to regulate the arrangement of organs in regular pattern, a phenomenon referred to as phyllotaxis. We also show that ARF3 is translocated into the organizing center where it represses cytokinin activity and WUSCHEL expression to regulate meristem activity noncell-autonomously. Therefore, ARF3 acts as a molecular link that mediates the interaction of auxin and cytokinin signaling in the SAM while coordinating the balance between meristem maintenance and organogenesis. Our findings reveal an ARF3-mediated coordination mechanism through cell–cell communication in dynamic SAM maintenance.

Funder

National Science Foundation of China

Natural Science Foundation of Hebei Province in China

Science and Technology Research Project of University of Hebei Province

State Key Laboratory of North China Crop Improvement and Regulation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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