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The RING E3 ligase CLG1 targets GS3 for degradation via the endosome pathway to determine grain size in rice

摘要G-protein signaling and ubiquitin-dependent degradation are both involved in grain development in rice,but how these pathways are coordinated in regulating this process is unknown.Here,we show that Chang Li Geng 1(CLG1),which encodes an E3 ligase,regulates grain size by targeting the Gγ protein GS3,a negative regulator of grain length,for degradation.Overexpression of CLG1 led to increased grain length,while over-expression of mutated CLG1 with changes in three conserved amino acids decreased grain length.We found that CLG1 physically interacts with and ubiquitinats GS3which is subsequently degraded through the endo-some degradation pathway,leading to increased grain size.Furthermore,we identified a critical SNP in the exon 3 of CLG1 that is significantly associated with grain size variation in a core collection of cultivated rice.This SNP results in an amino acid substitution from Arg to Ser at position 163 of CLG1 that enhances the E3 ligase activity of CLG1 and thus increases rice grain size.Both the expression level of CLG1 and the SNP CLG1163S may be useful variations for manipulating grain size in rice.

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作者 Wensi Yang [1] Kun Wu [2] Bo Wang [1] Huanhuan Liu [1] Siyi Guo [1] Xiaoyu Guo [1] Wei Luo [3] Shengyuan Sun [4] Yidan Ouyang [5] Xiangdong Fu [2] Kang Chong [6] Qifa Zhang [7] Yunyuan Xu [8] 学术成果认领
作者单位 Key Laboratory of Plant Molecular Physiology,Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China;University of Chinese Academy of Sciences,Beijing 100049,China [1] The State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Beijing 100101,China [2] Key Laboratory of Plant Molecular Physiology,Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China [3] National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research(Wuhan),Huazhong Agricultural University,Wuhan 430070,China [4] National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research(Wuhan),Huazhong Agricultural University,Wuhan 430070,China;National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research(Wuhan),Hubei Hongshan Laboratory,Huazhong Agricultural University,Wuhan 430070,China [5] Key Laboratory of Plant Molecular Physiology,Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China;University of Chinese Academy of Sciences,Beijing 100049,China;Innovation Academy for Seed Design,CAS,Beijing 100101,China [6] National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research(Wuhan),Hubei Hongshan Laboratory,Huazhong Agricultural University,Wuhan 430070,China [7] Key Laboratory of Plant Molecular Physiology,Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China;Innovation Academy for Seed Design,CAS,Beijing 100101,China [8]
栏目名称 Research Articles
发布时间 2021-12-14
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分子植物(英文版)

分子植物(英文版)

2021年14卷10期

1699-1713页

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