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A Translational Regulator MHZ9 Modulates Ethylene Signaling in Rice
Yihua Huang, Jiaqi Han, Biao Ma, Wuqiang Cao, Xinkai Li, Qing Xiong, He Zhao, Rui Zhao, Xun Zhang, Yang Zhou, Wei Wei, Jianjun Tao, Wanke Zhang, Wenfeng Qian, Shouyi Chen, Chao Yang, Cuicui Yin, Jinsong Zhang
Nature Communications
Abstract
Ethylene plays essential roles in rice growth, development and stress adaptation. Translational control of ethylene signaling remains unclear in rice. Here, through analysis of an ethylene-response mutant mhz9, we identified a glycine-tyrosine-phenylalanine (GYF) domain protein MHZ9, which positively regulates ethylene signaling at translational level in rice. MHZ9 is localized in RNA processing bodies. The C-terminal domain of MHZ9 interacts with OsEIN2, a central regulator of rice ethylene signaling, and the N-terminal domain directly binds to the OsEBF1/2 mRNAs for translational inhibition, allowing accumulation of transcription factor OsEIL1 to activate the downstream signaling. RNA-IP seq and CLIP-seq analyses reveal that MHZ9 associates with hundreds of RNAs. Ribo-seq analysis indicates that MHZ9 is required for the regulation of ~ 90% of genes translationally affected by ethylene. Our study identifies a translational regulator MHZ9, which mediates translational regulation of genes in response to ethylene, facilitating stress adaptation and trait improvement in rice.
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论文编号: |
DOI:10.1038/s41467-023-40429-0 |
论文题目: |
A Translational Regulator MHZ9 Modulates Ethylene Signaling in Rice |
英文论文题目: |
A Translational Regulator MHZ9 Modulates Ethylene Signaling in Rice |
第一作者: |
Yihua Huang, Jiaqi Han, Biao Ma, Wuqiang Cao, Xinkai Li, Qing Xiong, He Zhao, Rui Zhao, Xun Zhang, Yang Zhou, Wei Wei, Jianjun Tao, Wanke Zhang, Wenfeng Qian, Shouyi Chen, Chao Yang, Cuicui Yin, Jinsong Zhang |
英文第一作者: |
Yihua Huang, Jiaqi Han, Biao Ma, Wuqiang Cao, Xinkai Li, Qing Xiong, He Zhao, Rui Zhao, Xun Zhang, Yang Zhou, Wei Wei, Jianjun Tao, Wanke Zhang, Wenfeng Qian, Shouyi Chen, Chao Yang, Cuicui Yin, Jinsong Zhang |
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2023-08-07 |
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摘要: |
Ethylene plays essential roles in rice growth, development and stress adaptation. Translational control of ethylene signaling remains unclear in rice. Here, through analysis of an ethylene-response mutant mhz9, we identified a glycine-tyrosine-phenylalanine (GYF) domain protein MHZ9, which positively regulates ethylene signaling at translational level in rice. MHZ9 is localized in RNA processing bodies. The C-terminal domain of MHZ9 interacts with OsEIN2, a central regulator of rice ethylene signaling, and the N-terminal domain directly binds to the OsEBF1/2 mRNAs for translational inhibition, allowing accumulation of transcription factor OsEIL1 to activate the downstream signaling. RNA-IP seq and CLIP-seq analyses reveal that MHZ9 associates with hundreds of RNAs. Ribo-seq analysis indicates that MHZ9 is required for the regulation of ~ 90% of genes translationally affected by ethylene. Our study identifies a translational regulator MHZ9, which mediates translational regulation of genes in response to ethylene, facilitating stress adaptation and trait improvement in rice. |
英文摘要: |
Ethylene plays essential roles in rice growth, development and stress adaptation. Translational control of ethylene signaling remains unclear in rice. Here, through analysis of an ethylene-response mutant mhz9, we identified a glycine-tyrosine-phenylalanine (GYF) domain protein MHZ9, which positively regulates ethylene signaling at translational level in rice. MHZ9 is localized in RNA processing bodies. The C-terminal domain of MHZ9 interacts with OsEIN2, a central regulator of rice ethylene signaling, and the N-terminal domain directly binds to the OsEBF1/2 mRNAs for translational inhibition, allowing accumulation of transcription factor OsEIL1 to activate the downstream signaling. RNA-IP seq and CLIP-seq analyses reveal that MHZ9 associates with hundreds of RNAs. Ribo-seq analysis indicates that MHZ9 is required for the regulation of ~ 90% of genes translationally affected by ethylene. Our study identifies a translational regulator MHZ9, which mediates translational regulation of genes in response to ethylene, facilitating stress adaptation and trait improvement in rice. |
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Nature Communications |
英文刊物名称: |
Nature Communications |
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其它备注: |
Yihua Huang, Jiaqi Han, Biao Ma, Wuqiang Cao, Xinkai Li, Qing Xiong, He Zhao, Rui Zhao, Xun Zhang, Yang Zhou, Wei Wei, Jianjun Tao, Wanke Zhang, Wenfeng Qian, Shouyi Chen, Chao Yang, Cuicui Yin, Jinsong Zhang. A Translational Regulator MHZ9 Modulates Ethylene Signaling in Rice. Nature Communications. DOI:10.1038/s41467-023-40429-0 |
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