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Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat

High temperature has severely affected plant growth and development, resulting in reduced production of crops worldwide, especially wheat. Alternative splicing (AS), a crucial post-transcriptional regulatory mechanism, is involved in the growth and development of eukaryotes and the adaptation to env...

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Autores principales: Ma, Zhenyu, Li, Mingyue, Zhang, Huaning, Zhao, Baihui, Liu, Zihui, Duan, Shuonan, Meng, Xiangzhao, Li, Guoliang, Guo, Xiulin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861123/
https://www.ncbi.nlm.nih.gov/pubmed/36674529
http://dx.doi.org/10.3390/ijms24021014
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author Ma, Zhenyu
Li, Mingyue
Zhang, Huaning
Zhao, Baihui
Liu, Zihui
Duan, Shuonan
Meng, Xiangzhao
Li, Guoliang
Guo, Xiulin
author_facet Ma, Zhenyu
Li, Mingyue
Zhang, Huaning
Zhao, Baihui
Liu, Zihui
Duan, Shuonan
Meng, Xiangzhao
Li, Guoliang
Guo, Xiulin
author_sort Ma, Zhenyu
collection PubMed
description High temperature has severely affected plant growth and development, resulting in reduced production of crops worldwide, especially wheat. Alternative splicing (AS), a crucial post-transcriptional regulatory mechanism, is involved in the growth and development of eukaryotes and the adaptation to environmental changes. Previous transcriptome data suggested that heat shock transcription factor (Hsf) TaHsfA2-7 may form different transcripts by AS. However, it remains unclear whether this post-transcriptional regulatory mechanism of TaHsfA2-7 is related to thermotolerance in wheat (Triticum aestivum). Here, we identified a novel splice variant, TaHsfA2-7-AS, which was induced by high temperature and played a positive role in thermotolerance regulation in wheat. Moreover, TaHsfA2-7-AS is predicted to encode a small truncated TaHsfA2-7 isoform, retaining only part of the DNA-binding domain (DBD). TaHsfA2-7-AS is constitutively expressed in various tissues of wheat. Notably, the expression level of TaHsfA2-7-AS is significantly up-regulated by heat shock (HS) during flowering and grain-filling stages in wheat. Further studies showed that TaHsfA2-7-AS was localized in the nucleus but lacked transcriptional activation activity. Ectopic expression of TaHsfA2-7-AS in yeast exhibited improved thermotolerance. Compared to non-transgenic plants, overexpression of TaHsfA2-7-AS in Arabidopsis results in enhanced tolerance to heat stress. Simultaneously, we also found that TaHsfA1 is directly involved in the transcriptional regulation of TaHsfA2-7 and TaHsfA2-7-AS. In summary, our findings demonstrate the function of TaHsfA2-7-AS splicing variant in response to heat stress and establish a link between regulatory mechanisms of AS and the improvement of thermotolerance in wheat.
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spelling pubmed-98611232023-01-22 Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat Ma, Zhenyu Li, Mingyue Zhang, Huaning Zhao, Baihui Liu, Zihui Duan, Shuonan Meng, Xiangzhao Li, Guoliang Guo, Xiulin Int J Mol Sci Article High temperature has severely affected plant growth and development, resulting in reduced production of crops worldwide, especially wheat. Alternative splicing (AS), a crucial post-transcriptional regulatory mechanism, is involved in the growth and development of eukaryotes and the adaptation to environmental changes. Previous transcriptome data suggested that heat shock transcription factor (Hsf) TaHsfA2-7 may form different transcripts by AS. However, it remains unclear whether this post-transcriptional regulatory mechanism of TaHsfA2-7 is related to thermotolerance in wheat (Triticum aestivum). Here, we identified a novel splice variant, TaHsfA2-7-AS, which was induced by high temperature and played a positive role in thermotolerance regulation in wheat. Moreover, TaHsfA2-7-AS is predicted to encode a small truncated TaHsfA2-7 isoform, retaining only part of the DNA-binding domain (DBD). TaHsfA2-7-AS is constitutively expressed in various tissues of wheat. Notably, the expression level of TaHsfA2-7-AS is significantly up-regulated by heat shock (HS) during flowering and grain-filling stages in wheat. Further studies showed that TaHsfA2-7-AS was localized in the nucleus but lacked transcriptional activation activity. Ectopic expression of TaHsfA2-7-AS in yeast exhibited improved thermotolerance. Compared to non-transgenic plants, overexpression of TaHsfA2-7-AS in Arabidopsis results in enhanced tolerance to heat stress. Simultaneously, we also found that TaHsfA1 is directly involved in the transcriptional regulation of TaHsfA2-7 and TaHsfA2-7-AS. In summary, our findings demonstrate the function of TaHsfA2-7-AS splicing variant in response to heat stress and establish a link between regulatory mechanisms of AS and the improvement of thermotolerance in wheat. MDPI 2023-01-05 /pmc/articles/PMC9861123/ /pubmed/36674529 http://dx.doi.org/10.3390/ijms24021014 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
Ma, Zhenyu
Li, Mingyue
Zhang, Huaning
Zhao, Baihui
Liu, Zihui
Duan, Shuonan
Meng, Xiangzhao
Li, Guoliang
Guo, Xiulin
Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title_full Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title_fullStr Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title_full_unstemmed Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title_short Alternative Splicing of TaHsfA2-7 Is Involved in the Improvement of Thermotolerance in Wheat
title_sort alternative splicing of tahsfa2-7 is involved in the improvement of thermotolerance in wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861123/
https://www.ncbi.nlm.nih.gov/pubmed/36674529
http://dx.doi.org/10.3390/ijms24021014
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