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Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress

Heat shock transcription factors (HSFs) contribute significantly to thermotolerance acclimation. Here, we identified and cloned a putative HSF gene (HSFA2h) of 1218 nucleotide (acc. no. KP257297.1) from wheat cv. HD2985 using a de novo transcriptomic approach and predicted sHSP as its potential targ...

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Autores principales: Kumar, Ranjeet R., Dubey, Kavita, Goswami, Suneha, Rai, Gyanendra K., Rai, Pradeep K., Salgotra, Romesh K., Bakshi, Suman, Mishra, Dwijesh, Mishra, Gyan P., Chinnusamy, Viswanathan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609734/
https://www.ncbi.nlm.nih.gov/pubmed/37896061
http://dx.doi.org/10.3390/plants12203598
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author Kumar, Ranjeet R.
Dubey, Kavita
Goswami, Suneha
Rai, Gyanendra K.
Rai, Pradeep K.
Salgotra, Romesh K.
Bakshi, Suman
Mishra, Dwijesh
Mishra, Gyan P.
Chinnusamy, Viswanathan
author_facet Kumar, Ranjeet R.
Dubey, Kavita
Goswami, Suneha
Rai, Gyanendra K.
Rai, Pradeep K.
Salgotra, Romesh K.
Bakshi, Suman
Mishra, Dwijesh
Mishra, Gyan P.
Chinnusamy, Viswanathan
author_sort Kumar, Ranjeet R.
collection PubMed
description Heat shock transcription factors (HSFs) contribute significantly to thermotolerance acclimation. Here, we identified and cloned a putative HSF gene (HSFA2h) of 1218 nucleotide (acc. no. KP257297.1) from wheat cv. HD2985 using a de novo transcriptomic approach and predicted sHSP as its potential target. The expression of HSFA2h and its target gene (HSP17) was observed at the maximum level in leaf tissue under heat stress (HS), as compared to the control. The HSFA2h-pRI101 binary construct was mobilized in Arabidopsis, and further screening of T3 transgenic lines showed improved tolerance at an HS of 38 °C compared with wild type (WT). The expression of HSFA2h was observed to be 2.9- to 3.7-fold higher in different Arabidopsis transgenic lines under HS. HSFA2h and its target gene transcripts (HSP18.2 in the case of Arabidopsis) were observed to be abundant in transgenic Arabidopsis plants under HS. We observed a positive correlation between the expression of HSFA2h and HSP18.2 under HS. Evaluation of transgenic lines using different physio-biochemical traits linked with thermotolerance showed better performance of HS-treated transgenic Arabidopsis plants compared with WT. There is a need to further characterize the gene regulatory network (GRN) of HSFA2h and sHSP in order to modulate the HS tolerance of wheat and other agriculturally important crops.
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spelling pubmed-106097342023-10-28 Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress Kumar, Ranjeet R. Dubey, Kavita Goswami, Suneha Rai, Gyanendra K. Rai, Pradeep K. Salgotra, Romesh K. Bakshi, Suman Mishra, Dwijesh Mishra, Gyan P. Chinnusamy, Viswanathan Plants (Basel) Article Heat shock transcription factors (HSFs) contribute significantly to thermotolerance acclimation. Here, we identified and cloned a putative HSF gene (HSFA2h) of 1218 nucleotide (acc. no. KP257297.1) from wheat cv. HD2985 using a de novo transcriptomic approach and predicted sHSP as its potential target. The expression of HSFA2h and its target gene (HSP17) was observed at the maximum level in leaf tissue under heat stress (HS), as compared to the control. The HSFA2h-pRI101 binary construct was mobilized in Arabidopsis, and further screening of T3 transgenic lines showed improved tolerance at an HS of 38 °C compared with wild type (WT). The expression of HSFA2h was observed to be 2.9- to 3.7-fold higher in different Arabidopsis transgenic lines under HS. HSFA2h and its target gene transcripts (HSP18.2 in the case of Arabidopsis) were observed to be abundant in transgenic Arabidopsis plants under HS. We observed a positive correlation between the expression of HSFA2h and HSP18.2 under HS. Evaluation of transgenic lines using different physio-biochemical traits linked with thermotolerance showed better performance of HS-treated transgenic Arabidopsis plants compared with WT. There is a need to further characterize the gene regulatory network (GRN) of HSFA2h and sHSP in order to modulate the HS tolerance of wheat and other agriculturally important crops. MDPI 2023-10-17 /pmc/articles/PMC10609734/ /pubmed/37896061 http://dx.doi.org/10.3390/plants12203598 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kumar, Ranjeet R.
Dubey, Kavita
Goswami, Suneha
Rai, Gyanendra K.
Rai, Pradeep K.
Salgotra, Romesh K.
Bakshi, Suman
Mishra, Dwijesh
Mishra, Gyan P.
Chinnusamy, Viswanathan
Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title_full Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title_fullStr Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title_full_unstemmed Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title_short Transcriptional Regulation of Small Heat Shock Protein 17 (sHSP-17) by Triticum aestivum HSFA2h Transcription Factor Confers Tolerance in Arabidopsis under Heat Stress
title_sort transcriptional regulation of small heat shock protein 17 (shsp-17) by triticum aestivum hsfa2h transcription factor confers tolerance in arabidopsis under heat stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609734/
https://www.ncbi.nlm.nih.gov/pubmed/37896061
http://dx.doi.org/10.3390/plants12203598
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