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Chilling-Induced Phosphorylation of IPA1 by Ossapk6 Activates Chilling Tolerance Responses in Rice
Meiru Jia, Xiangbing Meng, Xiaoguang Song, Dahan Zhang, Liquan Kou, Junhui Zhang, Yanhui Jing, Guifu Liu, Huihui Liu, Xiahe Huang, Yingchun Wang, Hong Yu and Jiayang Li
Cell Discovery
Abstract
Chilling is a major abiotic stress harming rice development and productivity. The C-REPEAT BINDING FACTOR (CBF)-dependent transcriptional regulatory pathway plays a central role in cold stress and acclimation in Arabidopsis. In rice, several genes have been reported in conferring chilling tolerance, however, the chilling signaling in rice remains largely unknown. Here, we report the chilling-induced OSMOTIC STRESS/ABA-ACTIVATED PROTEIN KINASE 6 (OsSAPK6)-IDEAL PLANT ARCHITECTURE 1 (IPA1)-OsCBF3 signal pathway in rice. Under chilling stress, OsSAPK6 could phosphorylate IPA1 and increase its stability. In turn, IPA1 could directly bind to the GTAC motif on the OsCBF3 promoter to elevate its expression. Genetic evidence showed that OsSAPK6, IPA1 and OsCBF3 were all positive regulators of rice chilling tolerance. The function of OsSAPK6 in chilling tolerance depended on IPA1, and overexpression of OsCBF3 could rescue the chilling-sensitive phenotype of ipa1 loss-of-function mutant. Moreover, the natural gain-of-function allele ipa1-2D could simultaneously enhance seedling chilling tolerance and increase grain yield. Taken together, our results revealed a chilling-induced OsSAPK6-IPA1-OsCBF signal cascade in rice, which shed new lights on chilling stress-tolerant rice breeding.
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论文编号: |
DOI:10.1038/s41421-022-00413-2 |
论文题目: |
Chilling-Induced Phosphorylation of IPA1 by Ossapk6 Activates Chilling Tolerance Responses in Rice |
英文论文题目: |
Chilling-Induced Phosphorylation of IPA1 by Ossapk6 Activates Chilling Tolerance Responses in Rice |
第一作者: |
Meiru Jia, Xiangbing Meng, Xiaoguang Song, Dahan Zhang, Liquan Kou, Junhui Zhang, Yanhui Jing, Guifu Liu, Huihui Liu, Xiahe Huang, Yingchun Wang, Hong Yu and Jiayang Li |
英文第一作者: |
Meiru Jia, Xiangbing Meng, Xiaoguang Song, Dahan Zhang, Liquan Kou, Junhui Zhang, Yanhui Jing, Guifu Liu, Huihui Liu, Xiahe Huang, Yingchun Wang, Hong Yu and Jiayang Li |
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2022-07-27 |
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摘要: |
Chilling is a major abiotic stress harming rice development and productivity. The C-REPEAT BINDING FACTOR (CBF)-dependent transcriptional regulatory pathway plays a central role in cold stress and acclimation in Arabidopsis. In rice, several genes have been reported in conferring chilling tolerance, however, the chilling signaling in rice remains largely unknown. Here, we report the chilling-induced OSMOTIC STRESS/ABA-ACTIVATED PROTEIN KINASE 6 (OsSAPK6)-IDEAL PLANT ARCHITECTURE 1 (IPA1)-OsCBF3 signal pathway in rice. Under chilling stress, OsSAPK6 could phosphorylate IPA1 and increase its stability. In turn, IPA1 could directly bind to the GTAC motif on the OsCBF3 promoter to elevate its expression. Genetic evidence showed that OsSAPK6, IPA1 and OsCBF3 were all positive regulators of rice chilling tolerance. The function of OsSAPK6 in chilling tolerance depended on IPA1, and overexpression of OsCBF3 could rescue the chilling-sensitive phenotype of ipa1 loss-of-function mutant. Moreover, the natural gain-of-function allele ipa1-2D could simultaneously enhance seedling chilling tolerance and increase grain yield. Taken together, our results revealed a chilling-induced OsSAPK6-IPA1-OsCBF signal cascade in rice, which shed new lights on chilling stress-tolerant rice breeding. |
英文摘要: |
Chilling is a major abiotic stress harming rice development and productivity. The C-REPEAT BINDING FACTOR (CBF)-dependent transcriptional regulatory pathway plays a central role in cold stress and acclimation in Arabidopsis. In rice, several genes have been reported in conferring chilling tolerance, however, the chilling signaling in rice remains largely unknown. Here, we report the chilling-induced OSMOTIC STRESS/ABA-ACTIVATED PROTEIN KINASE 6 (OsSAPK6)-IDEAL PLANT ARCHITECTURE 1 (IPA1)-OsCBF3 signal pathway in rice. Under chilling stress, OsSAPK6 could phosphorylate IPA1 and increase its stability. In turn, IPA1 could directly bind to the GTAC motif on the OsCBF3 promoter to elevate its expression. Genetic evidence showed that OsSAPK6, IPA1 and OsCBF3 were all positive regulators of rice chilling tolerance. The function of OsSAPK6 in chilling tolerance depended on IPA1, and overexpression of OsCBF3 could rescue the chilling-sensitive phenotype of ipa1 loss-of-function mutant. Moreover, the natural gain-of-function allele ipa1-2D could simultaneously enhance seedling chilling tolerance and increase grain yield. Taken together, our results revealed a chilling-induced OsSAPK6-IPA1-OsCBF signal cascade in rice, which shed new lights on chilling stress-tolerant rice breeding. |
刊物名称: |
Cell Discovery |
英文刊物名称: |
Cell Discovery |
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其它备注: |
Meiru Jia, Xiangbing Meng, Xiaoguang Song, Dahan Zhang, Liquan Kou, Junhui Zhang, Yanhui Jing, Guifu Liu, Huihui Liu, Xiahe Huang, Yingchun Wang, Hong Yu and Jiayang Li. Chilling-Induced Phosphorylation of IPA1 by Ossapk6 Activates Chilling Tolerance Responses in Rice. Cell Discovery. DOI:10.1038/s41421-022-00413-2 |
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