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Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance

BACKGROUND: Heat waves can critically influence maize crop yields. Plant heat shock transcription factors (HSFs) play a key regulating role in the heat shock (HS) signal transduction pathway. METHOD: In this study, a homologous cloning method was used to clone HSF gene ZmHsf01 (accession number: MK8...

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Autores principales: Zhang, Huaning, Li, Guoliang, Hu, Dong, Zhang, Yuanyuan, Zhang, Yujie, Shao, Hongbo, Zhao, Lina, Yang, Ruiping, Guo, Xiulin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7153558/
https://www.ncbi.nlm.nih.gov/pubmed/32309048
http://dx.doi.org/10.7717/peerj.8926
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author Zhang, Huaning
Li, Guoliang
Hu, Dong
Zhang, Yuanyuan
Zhang, Yujie
Shao, Hongbo
Zhao, Lina
Yang, Ruiping
Guo, Xiulin
author_facet Zhang, Huaning
Li, Guoliang
Hu, Dong
Zhang, Yuanyuan
Zhang, Yujie
Shao, Hongbo
Zhao, Lina
Yang, Ruiping
Guo, Xiulin
author_sort Zhang, Huaning
collection PubMed
description BACKGROUND: Heat waves can critically influence maize crop yields. Plant heat shock transcription factors (HSFs) play a key regulating role in the heat shock (HS) signal transduction pathway. METHOD: In this study, a homologous cloning method was used to clone HSF gene ZmHsf01 (accession number: MK888854) from young maize leaves. The transcript levels of ZmHsf01 were detected using qRT-PCR in different tissues and treated by HS, abscisic acid (ABA), hydrogen peroxide (H(2)O(2)), respectively, and the functions of gene ZmHsf01 were studied in transgenic yeast and Arabidopsis. RESULT: ZmHsf01 had a coding sequence (CDS) of 1176 bp and encoded a protein consisting of 391 amino acids. The homologous analysis results showed that ZmHsf01 and SbHsfA2d had the highest protein sequence identities. Subcellular localization experiments confirmed that ZmHsf01 was localized in the nucleus. ZmHsf01 was expressed in many maize tissues. It was up-regulated by HS, and up-regulated in roots and down-regulated in leaves under ABA and H(2)O(2)treatments. ZmHsf01-overexpressing yeast cells showed increased thermotolerance. In Arabidopsis seedlings, ZmHsf01 compensated for the thermotolerance defects of mutant athsfa2, and ZmHsf01-overexpressing lines showed enhanced basal and acquired thermotolerance. When compared to wild type (WT) seedlings, ZmHsf01-overexpressing lines showed higher chlorophyll content and survival rates after HS. Heat shock protein (HSP) gene expression levels were more up-regulated in ZmHsf01-overexpressing Arabidopsis seedlings than WT seedlings. These results suggest that ZmHsf01 plays a vital role in response to HS in plant.
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spelling pubmed-71535582020-04-19 Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance Zhang, Huaning Li, Guoliang Hu, Dong Zhang, Yuanyuan Zhang, Yujie Shao, Hongbo Zhao, Lina Yang, Ruiping Guo, Xiulin PeerJ Agricultural Science BACKGROUND: Heat waves can critically influence maize crop yields. Plant heat shock transcription factors (HSFs) play a key regulating role in the heat shock (HS) signal transduction pathway. METHOD: In this study, a homologous cloning method was used to clone HSF gene ZmHsf01 (accession number: MK888854) from young maize leaves. The transcript levels of ZmHsf01 were detected using qRT-PCR in different tissues and treated by HS, abscisic acid (ABA), hydrogen peroxide (H(2)O(2)), respectively, and the functions of gene ZmHsf01 were studied in transgenic yeast and Arabidopsis. RESULT: ZmHsf01 had a coding sequence (CDS) of 1176 bp and encoded a protein consisting of 391 amino acids. The homologous analysis results showed that ZmHsf01 and SbHsfA2d had the highest protein sequence identities. Subcellular localization experiments confirmed that ZmHsf01 was localized in the nucleus. ZmHsf01 was expressed in many maize tissues. It was up-regulated by HS, and up-regulated in roots and down-regulated in leaves under ABA and H(2)O(2)treatments. ZmHsf01-overexpressing yeast cells showed increased thermotolerance. In Arabidopsis seedlings, ZmHsf01 compensated for the thermotolerance defects of mutant athsfa2, and ZmHsf01-overexpressing lines showed enhanced basal and acquired thermotolerance. When compared to wild type (WT) seedlings, ZmHsf01-overexpressing lines showed higher chlorophyll content and survival rates after HS. Heat shock protein (HSP) gene expression levels were more up-regulated in ZmHsf01-overexpressing Arabidopsis seedlings than WT seedlings. These results suggest that ZmHsf01 plays a vital role in response to HS in plant. PeerJ Inc. 2020-04-10 /pmc/articles/PMC7153558/ /pubmed/32309048 http://dx.doi.org/10.7717/peerj.8926 Text en ©2020 Zhang et al. 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 use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Agricultural Science
Zhang, Huaning
Li, Guoliang
Hu, Dong
Zhang, Yuanyuan
Zhang, Yujie
Shao, Hongbo
Zhao, Lina
Yang, Ruiping
Guo, Xiulin
Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title_full Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title_fullStr Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title_full_unstemmed Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title_short Functional characterization of maize heat shock transcription factor gene ZmHsf01 in thermotolerance
title_sort functional characterization of maize heat shock transcription factor gene zmhsf01 in thermotolerance
topic Agricultural Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7153558/
https://www.ncbi.nlm.nih.gov/pubmed/32309048
http://dx.doi.org/10.7717/peerj.8926
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