The membrane-localized protein kinase MAP4K4/TOT3 regulates thermomorphogenesis
Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify re...
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Published in | Nature communications Vol. 12; no. 1; p. 2842 |
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Main Authors | , , , , , , , , , , , , , , , , , |
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14.05.2021
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Abstract | Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify regulators of thermomorphogenesis that are conserved in flowering plants, we map changes in protein phosphorylation in both dicots and monocots exposed to warm temperature. We identify MITOGEN-ACTIVATED PROTEIN KINASE KINASE KINASE KINASE4 (MAP4K4)/TARGET OF TEMPERATURE3 (TOT3) as a regulator of thermomorphogenesis that impinges on brassinosteroid signalling in
Arabidopsis thaliana
. In addition, we show that TOT3 plays a role in thermal response in wheat, a monocot crop. Altogether, the conserved thermal regulation by TOT3 expands our knowledge of thermomorphogenesis beyond the well-studied pathways and can contribute to ensuring food security under a changing climate.
Plants respond to warmth via growth processes termed thermomorphogenesis. Here, via a phosphoproteomics approach, the authors show that the mitogen activated protein kinase TOT3 regulates thermomorphogenesis in both wheat and Arabidopsis and modifies brassinosteroid signaling in Arabidopsis. |
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AbstractList | Plants respond to warmth via growth processes termed thermomorphogenesis. Here, via a phosphoproteomics approach, the authors show that the mitogen activated protein kinase TOT3 regulates thermomorphogenesis in both wheat and Arabidopsis and modifies brassinosteroid signaling in Arabidopsis. Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify regulators of thermomorphogenesis that are conserved in flowering plants, we map changes in protein phosphorylation in both dicots and monocots exposed to warm temperature. We identify MITOGEN-ACTIVATED PROTEIN KINASE KINASE KINASE KINASE4 (MAP4K4)/TARGET OF TEMPERATURE3 (TOT3) as a regulator of thermomorphogenesis that impinges on brassinosteroid signalling in Arabidopsis thaliana . In addition, we show that TOT3 plays a role in thermal response in wheat, a monocot crop. Altogether, the conserved thermal regulation by TOT3 expands our knowledge of thermomorphogenesis beyond the well-studied pathways and can contribute to ensuring food security under a changing climate. Plants respond to warmth via growth processes termed thermomorphogenesis. Here, via a phosphoproteomics approach, the authors show that the mitogen activated protein kinase TOT3 regulates thermomorphogenesis in both wheat and Arabidopsis and modifies brassinosteroid signaling in Arabidopsis. Abstract Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify regulators of thermomorphogenesis that are conserved in flowering plants, we map changes in protein phosphorylation in both dicots and monocots exposed to warm temperature. We identify MITOGEN-ACTIVATED PROTEIN KINASE KINASE KINASE KINASE4 (MAP4K4)/TARGET OF TEMPERATURE3 (TOT3) as a regulator of thermomorphogenesis that impinges on brassinosteroid signalling in Arabidopsis thaliana . In addition, we show that TOT3 plays a role in thermal response in wheat, a monocot crop. Altogether, the conserved thermal regulation by TOT3 expands our knowledge of thermomorphogenesis beyond the well-studied pathways and can contribute to ensuring food security under a changing climate. Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify regulators of thermomorphogenesis that are conserved in flowering plants, we map changes in protein phosphorylation in both dicots and monocots exposed to warm temperature. We identify MITOGEN-ACTIVATED PROTEIN KINASE KINASE KINASE KINASE4 (MAP4K4)/TARGET OF TEMPERATURE3 (TOT3) as a regulator of thermomorphogenesis that impinges on brassinosteroid signalling in Arabidopsis thaliana. In addition, we show that TOT3 plays a role in thermal response in wheat, a monocot crop. Altogether, the conserved thermal regulation by TOT3 expands our knowledge of thermomorphogenesis beyond the well-studied pathways and can contribute to ensuring food security under a changing climate. Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called thermomorphogenesis. To this date, the regulation of thermomorphogenesis has been exclusively shown to intersect with light signalling pathways. To identify regulators of thermomorphogenesis that are conserved in flowering plants, we map changes in protein phosphorylation in both dicots and monocots exposed to warm temperature. We identify MITOGEN-ACTIVATED PROTEIN KINASE KINASE KINASE KINASE4 (MAP4K4)/TARGET OF TEMPERATURE3 (TOT3) as a regulator of thermomorphogenesis that impinges on brassinosteroid signalling in Arabidopsis thaliana. In addition, we show that TOT3 plays a role in thermal response in wheat, a monocot crop. Altogether, the conserved thermal regulation by TOT3 expands our knowledge of thermomorphogenesis beyond the well-studied pathways and can contribute to ensuring food security under a changing climate.Plants respond to warmth via growth processes termed thermomorphogenesis. Here, via a phosphoproteomics approach, the authors show that the mitogen activated protein kinase TOT3 regulates thermomorphogenesis in both wheat and Arabidopsis and modifies brassinosteroid signaling in Arabidopsis. |
ArticleNumber | 2842 |
Author | de Jong, Dorrit Vanremoortele, Tim De Winne, Nancy Zhu, Tingting Russinova, Eugenia van Zanten, Martijn Xu, Xiangyu Wang, Yaowei Locke, Anna M. Vu, Lam Dai Van Damme, Daniël Pan, Lixia van de Cotte, Brigitte De Smet, Ive De Jaeger, Geert Stes, Elisabeth Gevaert, Kris Uauy, Cristobal |
Author_xml | – sequence: 1 givenname: Lam Dai orcidid: 0000-0001-5078-7532 surname: Vu fullname: Vu, Lam Dai organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology, Department of Biomolecular Medicine, Ghent University, VIB Center for Medical Biotechnology – sequence: 2 givenname: Xiangyu surname: Xu fullname: Xu, Xiangyu organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 3 givenname: Tingting surname: Zhu fullname: Zhu, Tingting organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 4 givenname: Lixia surname: Pan fullname: Pan, Lixia organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 5 givenname: Martijn orcidid: 0000-0002-2810-7374 surname: van Zanten fullname: van Zanten, Martijn organization: Molecular Plant Physiology, Institute of Environmental Biology, Utrecht University – sequence: 6 givenname: Dorrit surname: de Jong fullname: de Jong, Dorrit organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 7 givenname: Yaowei surname: Wang fullname: Wang, Yaowei organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 8 givenname: Tim surname: Vanremoortele fullname: Vanremoortele, Tim organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 9 givenname: Anna M. surname: Locke fullname: Locke, Anna M. organization: Soybean & Nitrogen Fixation Research Unit, United States Department of Agriculture- Agricultural Research Service, Department of Crop and Soil Sciences, North Carolina State University – sequence: 10 givenname: Brigitte surname: van de Cotte fullname: van de Cotte, Brigitte organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 11 givenname: Nancy surname: De Winne fullname: De Winne, Nancy organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 12 givenname: Elisabeth orcidid: 0000-0003-4080-6079 surname: Stes fullname: Stes, Elisabeth organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology, Department of Biomolecular Medicine, Ghent University, VIB Center for Medical Biotechnology, VIB Headquarters – sequence: 13 givenname: Eugenia orcidid: 0000-0002-0569-1977 surname: Russinova fullname: Russinova, Eugenia organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 14 givenname: Geert orcidid: 0000-0001-6558-5669 surname: De Jaeger fullname: De Jaeger, Geert organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 15 givenname: Daniël surname: Van Damme fullname: Van Damme, Daniël organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology – sequence: 16 givenname: Cristobal orcidid: 0000-0002-9814-1770 surname: Uauy fullname: Uauy, Cristobal organization: Department of Crop Genetics, John Innes Centre – sequence: 17 givenname: Kris orcidid: 0000-0002-4237-0283 surname: Gevaert fullname: Gevaert, Kris email: kris.gevaert@vib-ugent.be organization: Department of Biomolecular Medicine, Ghent University, VIB Center for Medical Biotechnology – sequence: 18 givenname: Ive orcidid: 0000-0003-4607-8893 surname: De Smet fullname: De Smet, Ive email: ive.desmet@psb.vib-ugent.be organization: Department of Plant Biotechnology and Bioinformatics, Ghent University, VIB Center for Plant Systems Biology |
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Snippet | Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called... Abstract Plants respond to mild warm temperature conditions by increased elongation growth of organs to enhance cooling capacity, in a process called... Plants respond to warmth via growth processes termed thermomorphogenesis. Here, via a phosphoproteomics approach, the authors show that the mitogen activated... |
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Title | The membrane-localized protein kinase MAP4K4/TOT3 regulates thermomorphogenesis |
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