The MIO1‐MtKIX8 module regulates the organ size in Medicago truncatula

Author:

Mao Yawen12,Zhou Shaoli12,Yang Jing13,Wen Jiangqi4,Wang Dongfa15,Zhou Xuan12,Wu Xinyuan12,He Liangliang1,Liu Mingli16,Wu Huan15,Yang Liling1,Zhao Baolin1,Tadege Million4,Liu Yu1,Liu Changning1,Chen Jianghua123ORCID

Affiliation:

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

2. University of Chinese Academy of Sciences Beijing China

3. School of Ecology and Environmental Science Yunnan University Kunming China

4. Institute for Agricultural Biosciences Oklahoma State University Ardmore Oklahoma USA

5. School of Life Sciences University of Science and Technology of China Hefei China

6. Southwest Forestry University Kunming China

Abstract

AbstractPlant organ size is an important agronomic trait tightly related to crop yield. However, the molecular mechanisms underlying organ size regulation remain largely unexplored in legumes. We previously characterized a key regulator F‐box protein MINI ORGAN1 (MIO1)/SMALL LEAF AND BUSHY1 (SLB1), which controls plant organ size in the model legume Medicago truncatula. In order to further dissect the molecular mechanism, MIO1 was used as the bait to screen its interacting proteins from a yeast library. Subsequently, a KIX protein, designated MtKIX8, was identified from the candidate list. The interaction between MIO1 and MtKIX8 was confirmed further by Y2H, BiFC, split‐luciferase complementation and pull‐down assays. Phylogenetic analyses indicated that MtKIX8 is highly homologous to Arabidopsis KIX8, which negatively regulates organ size. Moreover, loss‐of‐function of MtKIX8 led to enlarged leaves and seeds, while ectopic expression of MtKIX8 in Arabidopsis resulted in decreased cotyledon area and seed weight. Quantitative reverse‐transcription PCR and in situ hybridization showed that MtKIX8 is expressed in most developing organs. We also found that MtKIX8 serves as a crucial molecular adaptor, facilitating interactions with BIG SEEDS1 (BS1) and MtTOPLESS (MtTPL) proteins in M. truncatula. Overall, our results suggest that the MIO1‐MtKIX8 module plays a significant and conserved role in the regulation of plant organ size. This module could be a good target for molecular breeding in legume crops and forages.

Funder

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics,General Medicine,Physiology

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