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MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana

Adverse environmental factors severely affect crop productivity. Improving crop resistance to multiple stressors is an important breeding goal. Although CBFs/DREB1s extensively participate in plant resistance to abiotic stress, the common mechanism underlying CBFs/DREB1s that mediate resistance to m...

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Autores principales: Xu, Yi, Hu, Wei, Song, Shun, Ye, Xiaoxue, Ding, Zehong, Liu, Juhua, Wang, Zhuo, Li, Jingyang, Hou, Xiaowan, Xu, Biyu, Jin, Zhiqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9923210/
https://www.ncbi.nlm.nih.gov/pubmed/36789258
http://dx.doi.org/10.1093/hr/uhac275
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author Xu, Yi
Hu, Wei
Song, Shun
Ye, Xiaoxue
Ding, Zehong
Liu, Juhua
Wang, Zhuo
Li, Jingyang
Hou, Xiaowan
Xu, Biyu
Jin, Zhiqiang
author_facet Xu, Yi
Hu, Wei
Song, Shun
Ye, Xiaoxue
Ding, Zehong
Liu, Juhua
Wang, Zhuo
Li, Jingyang
Hou, Xiaowan
Xu, Biyu
Jin, Zhiqiang
author_sort Xu, Yi
collection PubMed
description Adverse environmental factors severely affect crop productivity. Improving crop resistance to multiple stressors is an important breeding goal. Although CBFs/DREB1s extensively participate in plant resistance to abiotic stress, the common mechanism underlying CBFs/DREB1s that mediate resistance to multiple stressors remains unclear. Here, we show the common mechanism for MaDREB1F conferring cold and drought stress resistance in banana. MaDREB1F encodes a dehydration-responsive element binding protein (DREB) transcription factor with nuclear localization and transcriptional activity. MaDREB1F expression is significantly induced after cold, osmotic, and salt treatments. MaDREB1F overexpression increases banana resistance to cold and drought stress by common modulation of the protectant metabolite levels of soluble sugar and proline, activating the antioxidant system, and promoting jasmonate and ethylene syntheses. Transcriptomic analysis shows that MaDREB1F activates or alleviates the repression of jasmonate and ethylene biosynthetic genes under cold and drought conditions. Moreover, MaDREB1F directly activates the promoter activities of MaAOC4 and MaACO20 for jasmonate and ethylene syntheses, respectively, under cold and drought conditions. MaDREB1F also targets the MaERF11 promoter to activate MaACO20 expression for ethylene synthesis under drought stress. Together, our findings offer new insight into the common mechanism underlying CBF/DREB1-mediated cold and drought stress resistance, which has substantial implications for engineering cold- and drought-tolerant crops.
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spelling pubmed-99232102023-02-13 MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana Xu, Yi Hu, Wei Song, Shun Ye, Xiaoxue Ding, Zehong Liu, Juhua Wang, Zhuo Li, Jingyang Hou, Xiaowan Xu, Biyu Jin, Zhiqiang Hortic Res Article Adverse environmental factors severely affect crop productivity. Improving crop resistance to multiple stressors is an important breeding goal. Although CBFs/DREB1s extensively participate in plant resistance to abiotic stress, the common mechanism underlying CBFs/DREB1s that mediate resistance to multiple stressors remains unclear. Here, we show the common mechanism for MaDREB1F conferring cold and drought stress resistance in banana. MaDREB1F encodes a dehydration-responsive element binding protein (DREB) transcription factor with nuclear localization and transcriptional activity. MaDREB1F expression is significantly induced after cold, osmotic, and salt treatments. MaDREB1F overexpression increases banana resistance to cold and drought stress by common modulation of the protectant metabolite levels of soluble sugar and proline, activating the antioxidant system, and promoting jasmonate and ethylene syntheses. Transcriptomic analysis shows that MaDREB1F activates or alleviates the repression of jasmonate and ethylene biosynthetic genes under cold and drought conditions. Moreover, MaDREB1F directly activates the promoter activities of MaAOC4 and MaACO20 for jasmonate and ethylene syntheses, respectively, under cold and drought conditions. MaDREB1F also targets the MaERF11 promoter to activate MaACO20 expression for ethylene synthesis under drought stress. Together, our findings offer new insight into the common mechanism underlying CBF/DREB1-mediated cold and drought stress resistance, which has substantial implications for engineering cold- and drought-tolerant crops. Oxford University Press 2022-12-07 /pmc/articles/PMC9923210/ /pubmed/36789258 http://dx.doi.org/10.1093/hr/uhac275 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Xu, Yi
Hu, Wei
Song, Shun
Ye, Xiaoxue
Ding, Zehong
Liu, Juhua
Wang, Zhuo
Li, Jingyang
Hou, Xiaowan
Xu, Biyu
Jin, Zhiqiang
MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title_full MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title_fullStr MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title_full_unstemmed MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title_short MaDREB1F confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
title_sort madreb1f confers cold and drought stress resistance through common regulation of hormone synthesis and protectant metabolite contents in banana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9923210/
https://www.ncbi.nlm.nih.gov/pubmed/36789258
http://dx.doi.org/10.1093/hr/uhac275
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