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DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum

The bZIP transcription factor plays a very important role in abiotic stresses, e.g. drought, salt, and low-temperature stress, but the mechanism of action at low temperature is still unclear. In this study, overexpression of DgbZIP3 led to increased tolerance of chrysanthemum (Chrysanthemum morifoli...

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Autores principales: Bai, Huiru, Liao, Xiaoqin, Li, Xin, Wang, Bei, Luo, Yunchen, Yang, Xiaohan, Tian, Yuchen, Zhang, Lei, Zhang, Fan, Pan, Yuanzhi, Jiang, Beibei, Jia, Yin, Liu, Qinglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9271009/
https://www.ncbi.nlm.nih.gov/pubmed/35821702
http://dx.doi.org/10.1093/hr/uhac105
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author Bai, Huiru
Liao, Xiaoqin
Li, Xin
Wang, Bei
Luo, Yunchen
Yang, Xiaohan
Tian, Yuchen
Zhang, Lei
Zhang, Fan
Pan, Yuanzhi
Jiang, Beibei
Jia, Yin
Liu, Qinglin
author_facet Bai, Huiru
Liao, Xiaoqin
Li, Xin
Wang, Bei
Luo, Yunchen
Yang, Xiaohan
Tian, Yuchen
Zhang, Lei
Zhang, Fan
Pan, Yuanzhi
Jiang, Beibei
Jia, Yin
Liu, Qinglin
author_sort Bai, Huiru
collection PubMed
description The bZIP transcription factor plays a very important role in abiotic stresses, e.g. drought, salt, and low-temperature stress, but the mechanism of action at low temperature is still unclear. In this study, overexpression of DgbZIP3 led to increased tolerance of chrysanthemum (Chrysanthemum morifolium Ramat.) to cold stress, whereas antisense suppression of DgbZIP3 resulted in decreased tolerance. Electrophoretic mobility shift assay (EMSA), chromatin immunoprecipitation (ChIP), luciferase complementary imaging analysis (LCI), and dual-luciferase reporter gene detection (DLA) experiments indicated that DgbZIP3 directly bound to the promoter of DgPOD and activated its expression. DgbZIP2 was identified as a DgbZIP3-interacting protein using yeast two-hybrid, co-immunoprecipitation, LCI, and bimolecular fluorescence complementation assays. Overexpression of DgbZIP2 led to increased tolerance of chrysanthemum to cold stress, whereas antisense suppression of DgbZIP2 resulted in decreased tolerance. A ChIP–qPCR experiment showed that DgbZIP2 was highly enriched in the promoter of DgPOD, while DLA, EMSA, and LCI experiments further showed that DgbZIP2 could not directly regulate the expression of DgPOD. The above results show that DgbZIP3 interacts with DgbZIP2 to regulate the expression of DgPOD to promote an increase in peroxidase activity, thereby regulating the balance of reactive oxygen species and improving the tolerance of chrysanthemum to low-temperature stress.
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spelling pubmed-92710092022-07-11 DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum Bai, Huiru Liao, Xiaoqin Li, Xin Wang, Bei Luo, Yunchen Yang, Xiaohan Tian, Yuchen Zhang, Lei Zhang, Fan Pan, Yuanzhi Jiang, Beibei Jia, Yin Liu, Qinglin Hortic Res Article The bZIP transcription factor plays a very important role in abiotic stresses, e.g. drought, salt, and low-temperature stress, but the mechanism of action at low temperature is still unclear. In this study, overexpression of DgbZIP3 led to increased tolerance of chrysanthemum (Chrysanthemum morifolium Ramat.) to cold stress, whereas antisense suppression of DgbZIP3 resulted in decreased tolerance. Electrophoretic mobility shift assay (EMSA), chromatin immunoprecipitation (ChIP), luciferase complementary imaging analysis (LCI), and dual-luciferase reporter gene detection (DLA) experiments indicated that DgbZIP3 directly bound to the promoter of DgPOD and activated its expression. DgbZIP2 was identified as a DgbZIP3-interacting protein using yeast two-hybrid, co-immunoprecipitation, LCI, and bimolecular fluorescence complementation assays. Overexpression of DgbZIP2 led to increased tolerance of chrysanthemum to cold stress, whereas antisense suppression of DgbZIP2 resulted in decreased tolerance. A ChIP–qPCR experiment showed that DgbZIP2 was highly enriched in the promoter of DgPOD, while DLA, EMSA, and LCI experiments further showed that DgbZIP2 could not directly regulate the expression of DgPOD. The above results show that DgbZIP3 interacts with DgbZIP2 to regulate the expression of DgPOD to promote an increase in peroxidase activity, thereby regulating the balance of reactive oxygen species and improving the tolerance of chrysanthemum to low-temperature stress. Oxford University Press 2022-05-17 /pmc/articles/PMC9271009/ /pubmed/35821702 http://dx.doi.org/10.1093/hr/uhac105 Text en © The Author(s) 2022. 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
Bai, Huiru
Liao, Xiaoqin
Li, Xin
Wang, Bei
Luo, Yunchen
Yang, Xiaohan
Tian, Yuchen
Zhang, Lei
Zhang, Fan
Pan, Yuanzhi
Jiang, Beibei
Jia, Yin
Liu, Qinglin
DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title_full DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title_fullStr DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title_full_unstemmed DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title_short DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum
title_sort dgbzip3 interacts with dgbzip2 to increase the expression of dgpod for cold stress tolerance in chrysanthemum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9271009/
https://www.ncbi.nlm.nih.gov/pubmed/35821702
http://dx.doi.org/10.1093/hr/uhac105
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