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Natural variations of HSFA2 enhance thermotolerance in grapevine

Heat stress limits growth and development of crops including grapevine which is a popular fruit in the world. Genetic variability in crops thermotolerance is not well understood. We identified and characterized heat stress transcription factor HSFA2 in heat sensitive Vitis vinifera ‘Jingxiu’ (named...

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Autores principales: Liu, Xinna, Chen, Haiyang, Li, Shenchang, Lecourieux, David, Duan, Wei, Fan, Peige, Liang, Zhenchang, Wang, Lijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9832954/
https://www.ncbi.nlm.nih.gov/pubmed/36643748
http://dx.doi.org/10.1093/hr/uhac250
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author Liu, Xinna
Chen, Haiyang
Li, Shenchang
Lecourieux, David
Duan, Wei
Fan, Peige
Liang, Zhenchang
Wang, Lijun
author_facet Liu, Xinna
Chen, Haiyang
Li, Shenchang
Lecourieux, David
Duan, Wei
Fan, Peige
Liang, Zhenchang
Wang, Lijun
author_sort Liu, Xinna
collection PubMed
description Heat stress limits growth and development of crops including grapevine which is a popular fruit in the world. Genetic variability in crops thermotolerance is not well understood. We identified and characterized heat stress transcription factor HSFA2 in heat sensitive Vitis vinifera ‘Jingxiu’ (named as VvHSFA2) and heat tolerant Vitis davidii ‘Tangwei’ (named as VdHSFA2). The transcriptional activation activities of VdHSFA2 are higher than VvHSFA2, the variation of single amino acid (Thr315Ile) in AHA1 motif leads to the difference of transcription activities between VdHSFA2 and VvHSFA2. Based on 41 Vitis germplasms, we found that HSFA2 is differentiated at coding region among heat sensitive V. vinifera, and heat tolerant Vitis davidii and Vitis quinquangularis. Genetic evidence demonstrates VdHSFA2 and VvHSFA2 are positive regulators in grape thermotolerance, and the former can confer higher thermotolerance than the latter. Moreover, VdHSFA2 can regulate more target genes than VvHSFA2. As a target gene of both VdHSFA2 and VvHSFA2, overexpression of MBF1c enhanced the grape thermotolerance whereas dysfunction of MBF1c resulted in thermosensitive phenotype. Together, our results revealed that VdHSFA2 confers higher thermotolerance than VvHSFA2, and MBF1c acts as their target gene to induce thermotolerance. The VdHSFA2 may be adopted for molecular breeding in grape thermotolerance.
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spelling pubmed-98329542023-01-12 Natural variations of HSFA2 enhance thermotolerance in grapevine Liu, Xinna Chen, Haiyang Li, Shenchang Lecourieux, David Duan, Wei Fan, Peige Liang, Zhenchang Wang, Lijun Hortic Res Article Heat stress limits growth and development of crops including grapevine which is a popular fruit in the world. Genetic variability in crops thermotolerance is not well understood. We identified and characterized heat stress transcription factor HSFA2 in heat sensitive Vitis vinifera ‘Jingxiu’ (named as VvHSFA2) and heat tolerant Vitis davidii ‘Tangwei’ (named as VdHSFA2). The transcriptional activation activities of VdHSFA2 are higher than VvHSFA2, the variation of single amino acid (Thr315Ile) in AHA1 motif leads to the difference of transcription activities between VdHSFA2 and VvHSFA2. Based on 41 Vitis germplasms, we found that HSFA2 is differentiated at coding region among heat sensitive V. vinifera, and heat tolerant Vitis davidii and Vitis quinquangularis. Genetic evidence demonstrates VdHSFA2 and VvHSFA2 are positive regulators in grape thermotolerance, and the former can confer higher thermotolerance than the latter. Moreover, VdHSFA2 can regulate more target genes than VvHSFA2. As a target gene of both VdHSFA2 and VvHSFA2, overexpression of MBF1c enhanced the grape thermotolerance whereas dysfunction of MBF1c resulted in thermosensitive phenotype. Together, our results revealed that VdHSFA2 confers higher thermotolerance than VvHSFA2, and MBF1c acts as their target gene to induce thermotolerance. The VdHSFA2 may be adopted for molecular breeding in grape thermotolerance. Oxford University Press 2022-11-10 /pmc/articles/PMC9832954/ /pubmed/36643748 http://dx.doi.org/10.1093/hr/uhac250 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
Liu, Xinna
Chen, Haiyang
Li, Shenchang
Lecourieux, David
Duan, Wei
Fan, Peige
Liang, Zhenchang
Wang, Lijun
Natural variations of HSFA2 enhance thermotolerance in grapevine
title Natural variations of HSFA2 enhance thermotolerance in grapevine
title_full Natural variations of HSFA2 enhance thermotolerance in grapevine
title_fullStr Natural variations of HSFA2 enhance thermotolerance in grapevine
title_full_unstemmed Natural variations of HSFA2 enhance thermotolerance in grapevine
title_short Natural variations of HSFA2 enhance thermotolerance in grapevine
title_sort natural variations of hsfa2 enhance thermotolerance in grapevine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9832954/
https://www.ncbi.nlm.nih.gov/pubmed/36643748
http://dx.doi.org/10.1093/hr/uhac250
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