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The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)

Heat stress severely affects the annual agricultural production. Heat stress transcription factors (HSFs) represent a critical regulatory juncture in the heat stress response (HSR) of plants. The HsfA1-dependent pathway has been explored well, but the regulatory mechanism of the HsfA1-independent pa...

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Autores principales: Wang, Chengpeng, Zhou, Yunzhuan, Yang, Xi, Zhang, Bing, Xu, Fuxiang, Wang, Yue, Song, Cunxu, Yi, Mingfang, Ma, Nan, Zhou, Xiaofeng, He, Junna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745440/
https://www.ncbi.nlm.nih.gov/pubmed/35009000
http://dx.doi.org/10.3390/ijms23010572
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author Wang, Chengpeng
Zhou, Yunzhuan
Yang, Xi
Zhang, Bing
Xu, Fuxiang
Wang, Yue
Song, Cunxu
Yi, Mingfang
Ma, Nan
Zhou, Xiaofeng
He, Junna
author_facet Wang, Chengpeng
Zhou, Yunzhuan
Yang, Xi
Zhang, Bing
Xu, Fuxiang
Wang, Yue
Song, Cunxu
Yi, Mingfang
Ma, Nan
Zhou, Xiaofeng
He, Junna
author_sort Wang, Chengpeng
collection PubMed
description Heat stress severely affects the annual agricultural production. Heat stress transcription factors (HSFs) represent a critical regulatory juncture in the heat stress response (HSR) of plants. The HsfA1-dependent pathway has been explored well, but the regulatory mechanism of the HsfA1-independent pathway is still under-investigated. In the present research, HsfA4, an important gene of the HsfA1-independent pathway, was isolated from lilies (Lilium longiflorum) using the RACE method, which encodes 435 amino acids. LlHsfA4 contains a typical domain of HSFs and belongs to the HSF A4 family, according to homology comparisons and phylogenetic analysis. LlHsfA4 was mainly expressed in leaves and was induced by heat stress and H(2)O(2) using qRT-PCR and GUS staining in transgenic Arabidopsis. LlHsfA4 had transactivation activity and was located in the nucleus and cytoplasm through a yeast one hybrid system and through transient expression in lily protoplasts. Over expressing LlHsfA4 in Arabidopsis enhanced its basic thermotolerance, but acquired thermotolerance was not achieved. Further research found that heat stress could increase H(2)O(2) content in lily leaves and reduced H(2)O(2) accumulation in transgenic plants, which was consistent with the up-regulation of HSR downstream genes such as Heat stress proteins (HSPs), Galactinol synthase1 (GolS1), WRKY DNA binding protein 30 (WRKY30), Zinc finger of Arabidopsis thaliana 6 (ZAT6) and the ROS-scavenging enzyme Ascorbate peroxidase 2 (APX2). In conclusion, these results indicate that LlHsfA4 plays important roles in heat stress response through regulating the ROS metabolism in lilies.
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spelling pubmed-87454402022-01-11 The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum) Wang, Chengpeng Zhou, Yunzhuan Yang, Xi Zhang, Bing Xu, Fuxiang Wang, Yue Song, Cunxu Yi, Mingfang Ma, Nan Zhou, Xiaofeng He, Junna Int J Mol Sci Article Heat stress severely affects the annual agricultural production. Heat stress transcription factors (HSFs) represent a critical regulatory juncture in the heat stress response (HSR) of plants. The HsfA1-dependent pathway has been explored well, but the regulatory mechanism of the HsfA1-independent pathway is still under-investigated. In the present research, HsfA4, an important gene of the HsfA1-independent pathway, was isolated from lilies (Lilium longiflorum) using the RACE method, which encodes 435 amino acids. LlHsfA4 contains a typical domain of HSFs and belongs to the HSF A4 family, according to homology comparisons and phylogenetic analysis. LlHsfA4 was mainly expressed in leaves and was induced by heat stress and H(2)O(2) using qRT-PCR and GUS staining in transgenic Arabidopsis. LlHsfA4 had transactivation activity and was located in the nucleus and cytoplasm through a yeast one hybrid system and through transient expression in lily protoplasts. Over expressing LlHsfA4 in Arabidopsis enhanced its basic thermotolerance, but acquired thermotolerance was not achieved. Further research found that heat stress could increase H(2)O(2) content in lily leaves and reduced H(2)O(2) accumulation in transgenic plants, which was consistent with the up-regulation of HSR downstream genes such as Heat stress proteins (HSPs), Galactinol synthase1 (GolS1), WRKY DNA binding protein 30 (WRKY30), Zinc finger of Arabidopsis thaliana 6 (ZAT6) and the ROS-scavenging enzyme Ascorbate peroxidase 2 (APX2). In conclusion, these results indicate that LlHsfA4 plays important roles in heat stress response through regulating the ROS metabolism in lilies. MDPI 2022-01-05 /pmc/articles/PMC8745440/ /pubmed/35009000 http://dx.doi.org/10.3390/ijms23010572 Text en © 2022 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
Wang, Chengpeng
Zhou, Yunzhuan
Yang, Xi
Zhang, Bing
Xu, Fuxiang
Wang, Yue
Song, Cunxu
Yi, Mingfang
Ma, Nan
Zhou, Xiaofeng
He, Junna
The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title_full The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title_fullStr The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title_full_unstemmed The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title_short The Heat Stress Transcription Factor LlHsfA4 Enhanced Basic Thermotolerance through Regulating ROS Metabolism in Lilies (Lilium Longiflorum)
title_sort heat stress transcription factor llhsfa4 enhanced basic thermotolerance through regulating ros metabolism in lilies (lilium longiflorum)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745440/
https://www.ncbi.nlm.nih.gov/pubmed/35009000
http://dx.doi.org/10.3390/ijms23010572
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