ROP signaling regulates spatial pattern of cell division and specification of meristem notch

Author:

Rong Duoyan123,Zhao Shuai23,Tang Wenxin4ORCID,Luo Nan5ORCID,He Hai3ORCID,Wang Zhuqing23ORCID,Ma Huimin3,Huang Yimei3,Yao Xiaoxun23,Pan Xue67ORCID,Lv Lin28ORCID,Xiao Jiajing28,Liu Renyi8,Nagawa Shingo3,Yamamuro Chizuko23

Affiliation:

1. Hunan Provincial Engineering Research Centre of Lily Germplasm Resource Innovation and Deep Processing, College of Life Sciences and Chemistry, Hunan University of Technology, Zhuzhou 412007, Hunan, China

2. College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian, China

3. FAFU-UCR Joint Center for Horticultural Biology and Metabolomics, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian, China

4. Plant Synthetic Biology Center, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian, China

5. Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, Guangdong, China

6. Center for Plant Cell Biology, Institute for Integrative Genome Biology, University of California, Riverside, CA 92521

7. Department of Botany and Plant Sciences, University of California, Riverside, CA 92521

8. Center for Agroforestry Mega Data Science, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian, China

Abstract

The formation of cell polarity is essential for many developmental processes such as polar cell growth and spatial patterning of cell division. A plant-specific ROP ( R h o -like GTPases from P lants) subfamily of conserved Rho GTPase plays a crucial role in the regulation of cell polarity. However, the functional study of ROPs in angiosperm is challenging because of their functional redundancy. The Marchantia polymorpha genome encodes a single ROP gene, Mp ROP , providing an excellent genetic system to study ROP-dependent signaling pathways. Mp rop knockout mutants exhibited rhizoid growth defects, and MpROP was localized at the tip of elongating rhizoids, establishing a role for MpROP in the control of polar cell growth and its functional conservation in plants. Furthermore, the Mp rop knockout mutant showed defects in the formation of meristem notches associated with disorganized cell division patterns. These results reveal a critical function of Mp ROP in the regulation of plant development. Interestingly, these phenotypes were complemented not only by Mp ROP but also Arabidopsis At ROP2 , supporting the conservation of ROP’s function among land plants. Our results demonstrate a great potential for M. polymorpha as a powerful genetic system for functional and mechanistic elucidation of ROP signaling pathways during plant development.

Funder

National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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