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Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity

Plants have evolved complex signalling networks to regulate growth and defence responses under an ever‐changing environment. However, the molecular mechanisms underlying the growth‐defence tradeoff are largely unclear. We previously reported that rice CALCIUM‐DEPENDENT PROTEIN KINASE 18 (OsCPK18) an...

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Autores principales: Li, Hong, Zhang, Yun, Wu, Caiyun, Bi, Jinpeng, Chen, Yache, Jiang, Changjin, Cui, Miaomiao, Chen, Yuedan, Hou, Xin, Yuan, Meng, Xiong, Lizhong, Yang, Yinong, Xie, Kabin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9674324/
https://www.ncbi.nlm.nih.gov/pubmed/35984919
http://dx.doi.org/10.1111/pbi.13905
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author Li, Hong
Zhang, Yun
Wu, Caiyun
Bi, Jinpeng
Chen, Yache
Jiang, Changjin
Cui, Miaomiao
Chen, Yuedan
Hou, Xin
Yuan, Meng
Xiong, Lizhong
Yang, Yinong
Xie, Kabin
author_facet Li, Hong
Zhang, Yun
Wu, Caiyun
Bi, Jinpeng
Chen, Yache
Jiang, Changjin
Cui, Miaomiao
Chen, Yuedan
Hou, Xin
Yuan, Meng
Xiong, Lizhong
Yang, Yinong
Xie, Kabin
author_sort Li, Hong
collection PubMed
description Plants have evolved complex signalling networks to regulate growth and defence responses under an ever‐changing environment. However, the molecular mechanisms underlying the growth‐defence tradeoff are largely unclear. We previously reported that rice CALCIUM‐DEPENDENT PROTEIN KINASE 18 (OsCPK18) and MITOGEN‐ACTIVATED PROTEIN KINASE 5 (OsMPK5) mutually phosphorylate each other and that OsCPK18 phosphorylates and positively regulates OsMPK5 to suppress rice immunity. In this study, we found that OsCPK18 and its paralog OsCPK4 positively regulate plant height and yield‐related traits. Further analysis reveals that OsCPK18 and OsMPK5 synergistically regulate defence‐related genes but differentially regulate development‐related genes. In vitro and in vivo kinase assays demonstrated that OsMPK5 phosphorylates C‐terminal threonine (T505) and serine (S512) residues of OsCPK18 and OsCPK4, respectively. The kinase activity of OsCPK18(T505D), in which T505 was replaced by aspartic acid to mimic T505 phosphorylation, displayed less calcium sensitivity than that of wild‐type OsCPK18. Interestingly, editing the MAPK phosphorylation motif in OsCPK18 and its paralog OsCPK4, which deprives OsMPK5‐mediated phosphorylation but retains calcium‐dependent activation of kinase activity, simultaneously increases rice yields and immunity. This editing event also changed the last seven amino acid residues of OsCPK18 and attenuated its binding with OsMPK5. This study presents a new regulatory circuit that fine tunes the growth‐defence tradeoff by modulating OsCPK18/4 activity and suggests that CRISPR/Cas9‐mediated engineering phosphorylation pathways could simultaneously improve crop yield and immunity.
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spelling pubmed-96743242022-11-21 Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity Li, Hong Zhang, Yun Wu, Caiyun Bi, Jinpeng Chen, Yache Jiang, Changjin Cui, Miaomiao Chen, Yuedan Hou, Xin Yuan, Meng Xiong, Lizhong Yang, Yinong Xie, Kabin Plant Biotechnol J Research Articles Plants have evolved complex signalling networks to regulate growth and defence responses under an ever‐changing environment. However, the molecular mechanisms underlying the growth‐defence tradeoff are largely unclear. We previously reported that rice CALCIUM‐DEPENDENT PROTEIN KINASE 18 (OsCPK18) and MITOGEN‐ACTIVATED PROTEIN KINASE 5 (OsMPK5) mutually phosphorylate each other and that OsCPK18 phosphorylates and positively regulates OsMPK5 to suppress rice immunity. In this study, we found that OsCPK18 and its paralog OsCPK4 positively regulate plant height and yield‐related traits. Further analysis reveals that OsCPK18 and OsMPK5 synergistically regulate defence‐related genes but differentially regulate development‐related genes. In vitro and in vivo kinase assays demonstrated that OsMPK5 phosphorylates C‐terminal threonine (T505) and serine (S512) residues of OsCPK18 and OsCPK4, respectively. The kinase activity of OsCPK18(T505D), in which T505 was replaced by aspartic acid to mimic T505 phosphorylation, displayed less calcium sensitivity than that of wild‐type OsCPK18. Interestingly, editing the MAPK phosphorylation motif in OsCPK18 and its paralog OsCPK4, which deprives OsMPK5‐mediated phosphorylation but retains calcium‐dependent activation of kinase activity, simultaneously increases rice yields and immunity. This editing event also changed the last seven amino acid residues of OsCPK18 and attenuated its binding with OsMPK5. This study presents a new regulatory circuit that fine tunes the growth‐defence tradeoff by modulating OsCPK18/4 activity and suggests that CRISPR/Cas9‐mediated engineering phosphorylation pathways could simultaneously improve crop yield and immunity. John Wiley and Sons Inc. 2022-08-19 2022-12 /pmc/articles/PMC9674324/ /pubmed/35984919 http://dx.doi.org/10.1111/pbi.13905 Text en © 2022 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Li, Hong
Zhang, Yun
Wu, Caiyun
Bi, Jinpeng
Chen, Yache
Jiang, Changjin
Cui, Miaomiao
Chen, Yuedan
Hou, Xin
Yuan, Meng
Xiong, Lizhong
Yang, Yinong
Xie, Kabin
Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title_full Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title_fullStr Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title_full_unstemmed Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title_short Fine‐tuning OsCPK18/OsCPK4 activity via genome editing of phosphorylation motif improves rice yield and immunity
title_sort fine‐tuning oscpk18/oscpk4 activity via genome editing of phosphorylation motif improves rice yield and immunity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9674324/
https://www.ncbi.nlm.nih.gov/pubmed/35984919
http://dx.doi.org/10.1111/pbi.13905
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