SLR1 inhibits MOC1 degradation to coordinate tiller number and plant height in rice

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作者
Zhigang Liao
Hong Yu
Jingbo Duan
Kun Yuan
Chaoji Yu
Xiangbing Meng
Liquan Kou
Mingjiang Chen
Yanhui Jing
Guifu Liu
Steven M. Smith
Jiayang Li
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Plant Genomics and National Center for Plant Gene Research (Beijing), Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design
[2] University of Chinese Academy of Sciences,School of Natural Sciences
[3] University of Tasmania,undefined
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The breeding of cereals with altered gibberellin (GA) signaling propelled the ‘Green Revolution’ by generating semidwarf plants with increased tiller number. The mechanism by which GAs promote shoot height has been studied extensively, but it is not known what causes the inverse relationship between plant height and tiller number. Here we show that rice tiller number regulator MONOCULM 1 (MOC1) is protected from degradation by binding to the DELLA protein SLENDER RICE 1 (SLR1). GAs trigger the degradation of SLR1, leading to stem elongation and also to the degradation of MOC1, and hence a decrease in tiller number. This discovery provides a molecular explanation for the coordinated control of plant height and tiller number in rice by GAs, SLR1 and MOC1.
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