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The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants

Drought and Verticillium wilt disease are two main factors that limit cotton production, which necessitates the identification of key molecular switch to simultaneously improve cotton resistance to Verticillium dahliae and tolerance to drought stress. R2R3‐type MYB proteins could play such a role be...

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Autores principales: Liu, Tingli, Chen, Tianzi, Kan, Jialiang, Yao, Yao, Guo, Dongshu, Yang, Yuwen, Ling, Xitie, Wang, Jinyan, Zhang, Baolong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8989497/
https://www.ncbi.nlm.nih.gov/pubmed/34812570
http://dx.doi.org/10.1111/pbi.13751
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author Liu, Tingli
Chen, Tianzi
Kan, Jialiang
Yao, Yao
Guo, Dongshu
Yang, Yuwen
Ling, Xitie
Wang, Jinyan
Zhang, Baolong
author_facet Liu, Tingli
Chen, Tianzi
Kan, Jialiang
Yao, Yao
Guo, Dongshu
Yang, Yuwen
Ling, Xitie
Wang, Jinyan
Zhang, Baolong
author_sort Liu, Tingli
collection PubMed
description Drought and Verticillium wilt disease are two main factors that limit cotton production, which necessitates the identification of key molecular switch to simultaneously improve cotton resistance to Verticillium dahliae and tolerance to drought stress. R2R3‐type MYB proteins could play such a role because of their conserved functions in plant development, growth, and metabolism regulation, however, till date a MYB gene conferring the desired resistance to both biotic and abiotic stresses has not been found in cotton. Here, we describe the identification of GhMYB36, a gene encoding a R2R3‐type MYB protein in Gossypium hirsutum, which confers drought tolerance and Verticilium wilt resistance in both Arabidopsis and cotton. GhMYB36 was highly induced by PEG‐simulated drought stress in G. hirsutum. GhMYB36‐silenced cotton plants were more sensitive to both drought stress and Verticillium wilt. GhMYB36 overexpression in transgenic Arabidopsis and cotton plants gave rise to improved drought tolerance and Verticillium wilt resistance. Transient expression of fused GhMYB36‐GFP in tobacco cells was able to localize GhMYB36 in the cell nucleus. In addition, RNA‐seq analysis together with qRT‐PCR validation in transgenic Arabidopsis overexpressing GhMYB36 revealed significantly enhanced PR1 expression. Luciferase interaction assays indicated that GhMYB36 are probably bound to the promoter of PR1 to activate its expression and the interaction, which was further verified by Yeast one hybrid assay. Taken together, our results suggest that GhMYB36 functions as a transcription factor that is involved in drought tolerance and Verticillium wilt resistance in Arabidopsis and cotton by enhancing PR1 expression.
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spelling pubmed-89894972022-04-13 The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants Liu, Tingli Chen, Tianzi Kan, Jialiang Yao, Yao Guo, Dongshu Yang, Yuwen Ling, Xitie Wang, Jinyan Zhang, Baolong Plant Biotechnol J Research Articles Drought and Verticillium wilt disease are two main factors that limit cotton production, which necessitates the identification of key molecular switch to simultaneously improve cotton resistance to Verticillium dahliae and tolerance to drought stress. R2R3‐type MYB proteins could play such a role because of their conserved functions in plant development, growth, and metabolism regulation, however, till date a MYB gene conferring the desired resistance to both biotic and abiotic stresses has not been found in cotton. Here, we describe the identification of GhMYB36, a gene encoding a R2R3‐type MYB protein in Gossypium hirsutum, which confers drought tolerance and Verticilium wilt resistance in both Arabidopsis and cotton. GhMYB36 was highly induced by PEG‐simulated drought stress in G. hirsutum. GhMYB36‐silenced cotton plants were more sensitive to both drought stress and Verticillium wilt. GhMYB36 overexpression in transgenic Arabidopsis and cotton plants gave rise to improved drought tolerance and Verticillium wilt resistance. Transient expression of fused GhMYB36‐GFP in tobacco cells was able to localize GhMYB36 in the cell nucleus. In addition, RNA‐seq analysis together with qRT‐PCR validation in transgenic Arabidopsis overexpressing GhMYB36 revealed significantly enhanced PR1 expression. Luciferase interaction assays indicated that GhMYB36 are probably bound to the promoter of PR1 to activate its expression and the interaction, which was further verified by Yeast one hybrid assay. Taken together, our results suggest that GhMYB36 functions as a transcription factor that is involved in drought tolerance and Verticillium wilt resistance in Arabidopsis and cotton by enhancing PR1 expression. John Wiley and Sons Inc. 2021-12-05 2022-04 /pmc/articles/PMC8989497/ /pubmed/34812570 http://dx.doi.org/10.1111/pbi.13751 Text en © 2021 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-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Liu, Tingli
Chen, Tianzi
Kan, Jialiang
Yao, Yao
Guo, Dongshu
Yang, Yuwen
Ling, Xitie
Wang, Jinyan
Zhang, Baolong
The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title_full The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title_fullStr The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title_full_unstemmed The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title_short The GhMYB36 transcription factor confers resistance to biotic and abiotic stress by enhancing PR1 gene expression in plants
title_sort ghmyb36 transcription factor confers resistance to biotic and abiotic stress by enhancing pr1 gene expression in plants
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8989497/
https://www.ncbi.nlm.nih.gov/pubmed/34812570
http://dx.doi.org/10.1111/pbi.13751
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