OsLCD3 interacts with OsSAMS1 to regulate grain size via ethylene/polyamine homeostasis control

Author:

Hu Wenli12,Wang Rong13,Hao Xiaohua14,Li Shaozhuang1,Zhao Xinjie1,Xie Zijing15,Wu Sha1,Huang Liqun1,Tan Ying1,Tian Lianfu1,Li Dongping1ORCID

Affiliation:

1. State Key Laboratory of Developmental Biology of Freshwater Fish, Hunan Province Key Laboratory of Crop Sterile Germplasm Resource Innovation and Application, College of Life Sciences Hunan Normal University Changsha 410081 China

2. Ministry of Education Key Laboratory for Ecology of Tropical Islands, Key Laboratory of Tropical Animal and Plant Ecology of Hainan Province, College of Life Sciences Hainan Normal University Haikou Hainan 571158 China

3. College of Biology Hunan University Changsha China

4. College of Life and Environmental Science Hunan University of Arts and Science Changde 415000 China

5. Hunan Provincial Key Laboratory of the Traditional Chinese Medicine Agricultural Biogenomics Changsha Medical University Changsha 410219 China

Abstract

SUMMARYA fundamental question in developmental biology is how to regulate grain size to improve crop yields. Despite this, little is still known about the genetics and molecular mechanisms regulating grain size in crops. Here, we provide evidence that a putative protein kinase‐like (OsLCD3) interacts with the S‐adenosyl‐L‐methionine synthetase 1 (OsSAMS1) and determines the size and weight of grains. OsLCD3 mutation (lcd3) significantly increased grain size and weight by promoting cell expansion in spikelet hull, whereas its overexpression caused negative effects, suggesting that grain size was negatively regulated by OsLCD3. Importantly, lcd3 and OsSAMS1 overexpression (SAM1OE) led to large and heavy grains, with increased ethylene and decreased polyamines production. Based on genetic analyses, it appears that OsLCD3 and OsSAMS1 control rice grain size in part by ethylene/polyamine homeostasis. The results of this study provide a genetic and molecular understanding of how the OsLCD3‐OsSAMS1 regulatory module regulates grain size, suggesting that ethylene/polyamine homeostasis is an appropriate target for improving grain size and weight.

Funder

China Postdoctoral Science Foundation

National Natural Science Foundation of China

Publisher

Wiley

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