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Control of Leaf Width by the APC/CTAD1-WL1-NAL1 Pathway in Rice

Jing You, Wenwen Xiao, Yue Zhou, Li Ye, Peng Yu, Guoling Yu, Xinfang Zhang, Zhifeng He, Yan Xiang, Xianchun Sang, View ORCID ProfileYunfeng Li, Fangming Zhao, View ORCID ProfileYinghua Ling, Guanghua He, View ORCID ProfileTing Zhang
doi: https://doi.org/10.1101/2022.01.10.475683
Jing You
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Wenwen Xiao
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Yue Zhou
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Li Ye
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Peng Yu
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Guoling Yu
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Xinfang Zhang
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Zhifeng He
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Yan Xiang
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Xianchun Sang
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Yunfeng Li
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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  • ORCID record for Yunfeng Li
Fangming Zhao
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Yinghua Ling
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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Guanghua He
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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  • For correspondence: tingzhang@swu.edu.cn heghswu@163.com
Ting Zhang
Rice Research Institute, Key Laboratory of Application and Safety Control of Genetically Modified Crops, Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
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  • ORCID record for Ting Zhang
  • For correspondence: tingzhang@swu.edu.cn heghswu@163.com
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Abstract

Leaf morphology is one of the most important features of the ideal plant architecture. However, the genetic and molecular mechanisms controlling leaf morphology in crops remain largely unknown, despite their central importance. Here we demonstrate that the APC/CTAD1-WL1-NAL1 pathway regulates leaf width in rice, and mutation of WL1 leads to width leaf variation. WL1 interacts with TAD1 and is degraded by APC/CTAD1, with the loss of TAD1 function resulting in narrow leaves. The WL1 protein directly binds to the regulatory region of NAL1 and recruits the corepressor TOPLESS-RELATED PROTEIN to inhibit NAL1 expression by down-regulating the level of histone acetylation of chromatin. Furthermore, biochemical and genetic analyses revealed that TAD1, WL1, and NAL1 function in a common pathway to control leaf width. Our study establishes an important framework for the APC/CTAD1-WL1-NAL1 pathway-mediated control of leaf width in rice and introduces novel perspectives for using this regulatory pathway for improving crop plant architecture.

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  • ↵† Senior author

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Posted January 11, 2022.
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Control of Leaf Width by the APC/CTAD1-WL1-NAL1 Pathway in Rice
Jing You, Wenwen Xiao, Yue Zhou, Li Ye, Peng Yu, Guoling Yu, Xinfang Zhang, Zhifeng He, Yan Xiang, Xianchun Sang, Yunfeng Li, Fangming Zhao, Yinghua Ling, Guanghua He, Ting Zhang
bioRxiv 2022.01.10.475683; doi: https://doi.org/10.1101/2022.01.10.475683
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Control of Leaf Width by the APC/CTAD1-WL1-NAL1 Pathway in Rice
Jing You, Wenwen Xiao, Yue Zhou, Li Ye, Peng Yu, Guoling Yu, Xinfang Zhang, Zhifeng He, Yan Xiang, Xianchun Sang, Yunfeng Li, Fangming Zhao, Yinghua Ling, Guanghua He, Ting Zhang
bioRxiv 2022.01.10.475683; doi: https://doi.org/10.1101/2022.01.10.475683

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