The F-box protein MIO1/SLB1 regulates organ size and leaf movement in Medicago truncatula

Author:

Zhou Shaoli12,Yang Tianquan13,Mao Yawen12,Liu Ye14,Guo Shiqi12,Wang Ruoruo12,Fangyue Genwang12,He Liangliang12,Zhao Baolin1,Bai Quanzi12,Li Youhan1,Zhang Xiaojia12,Wang Dongfa14,Wang Chaoqun12,Wu Qing12,Yang Yuanfan15,Liu Yu1,Tadege Million6,Chen Jianghua1245ORCID

Affiliation:

1. CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, CAS Center for Excellence for Molecular Plant Sciences, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, Yunnan, China

2. University of Chinese Academy of Sciences, Beijing, China

3. Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China

4. School of Life Sciences, University of Science and Technology of China, Hefei, China

5. School of Ecology and Environmental Sciences, Yunnan University, Kunming, China

6. Department of Plant and Soil Sciences, Institute for Agricultural Biosciences, Oklahoma State University, 3210 Sam Noble Parkway, Ardmore, OK, USA

Abstract

Abstract The size of leaf and seed organs, determined by the interplay of cell proliferation and expansion, is closely related to the final yield and quality of forage and crops. Yet the cellular and molecular mechanisms underlying organ size modulation remain poorly understood, especially in legumes. Here, MINI ORGAN1 (MIO1), which encodes an F-box protein SMALL LEAF AND BUSHY1 (SLB1) recently reported to control lateral branching in Medicago truncatula, was identified as a key regulator of organ size. We show that loss-of-function of MIO1/SLB1 severely reduced organ size. Conversely, plants overexpressing MIO1/SLB1 had enlarged organs. Cellular analysis revealed that MIO1/SLB1 controlled organ size mainly by modulating primary cell proliferation during the early stages of leaf development. Biochemical analysis revealed that MIO1/SLB1 could form part of SKP1/Cullin/F-box (SCF) E3 ubiquitin ligase complex, to target BIG SEEDS1 (BS1), a repressor of primary cell division, for degradation. Interestingly, we found that MIO1/SLB1 also played a key role in pulvinus development and leaf movement by modulating cell proliferation of the pulvinus as leaves developed. Our study not only demonstrates a conserved role of MIO1/SLB1 in the control of organ size in legumes, but also sheds light on the novel function of MIO1/SLB1 in leaf movement.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Yunnan Province of China

Strategic Priority Research

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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