Cargando…

EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels

bHLH transcription factors are involved in multiple aspects of plant biology, such as the response to abiotic stress. Erigeron breviscapus is a composite plant, and its rich flavonoids have strong preventive and therapeutic effects on cardio cerebral vascular disease. EbbHLH80, a gene from E. brevis...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, Qingqing, Li, Xia, Xiang, Chunfan, Li, Ruolan, Xie, Hongchun, Liu, Jia, Li, Xiaoning, Zhang, Guanghui, Yang, Shengchao, Liang, Yanli, Zhai, Chenxi, Zhao, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341687/
https://www.ncbi.nlm.nih.gov/pubmed/37446256
http://dx.doi.org/10.3390/ijms241311080
_version_ 1785072321072988160
author Gao, Qingqing
Li, Xia
Xiang, Chunfan
Li, Ruolan
Xie, Hongchun
Liu, Jia
Li, Xiaoning
Zhang, Guanghui
Yang, Shengchao
Liang, Yanli
Zhai, Chenxi
Zhao, Yan
author_facet Gao, Qingqing
Li, Xia
Xiang, Chunfan
Li, Ruolan
Xie, Hongchun
Liu, Jia
Li, Xiaoning
Zhang, Guanghui
Yang, Shengchao
Liang, Yanli
Zhai, Chenxi
Zhao, Yan
author_sort Gao, Qingqing
collection PubMed
description bHLH transcription factors are involved in multiple aspects of plant biology, such as the response to abiotic stress. Erigeron breviscapus is a composite plant, and its rich flavonoids have strong preventive and therapeutic effects on cardio cerebral vascular disease. EbbHLH80, a gene from E. breviscapus that positively regulates flavonoid synthesis, was previously characterized. However, it is unclear whether EbbHLH80 increases flavonoid accumulation, which affects salt tolerance. The function of EbbHLH80 in transgenic tobacco seeds was identified by phylogenetic analysis and metabolome-transcriptome analysis. We investigated the role of EbbHLH80 in salt stress response. Our results showed that the expression of EbbHLH80 increased following salt treatment. Integrating the metabolome and transcriptome analysis of EbbHLH80-OE and Yunyan 87 (WT) seeds, we identified several genes and metabolites related to flavonoid biosynthesis and salt stress. Moreover, EbbHLH80-OE plants displayed higher salt tolerance than wild-type plants during seed germination and seedling growth. After salt treatment, transgenic tobacco had significantly lower levels of reactive oxygen species (ROS) than WT, with enhanced levels of antioxidant enzyme expression. Altogether, our results demonstrated that EbbHLH80 might be a positive regulator, promoting salt tolerance by modulating ROS scavenging and increasing stress-responsive genes.
format Online
Article
Text
id pubmed-10341687
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103416872023-07-14 EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels Gao, Qingqing Li, Xia Xiang, Chunfan Li, Ruolan Xie, Hongchun Liu, Jia Li, Xiaoning Zhang, Guanghui Yang, Shengchao Liang, Yanli Zhai, Chenxi Zhao, Yan Int J Mol Sci Article bHLH transcription factors are involved in multiple aspects of plant biology, such as the response to abiotic stress. Erigeron breviscapus is a composite plant, and its rich flavonoids have strong preventive and therapeutic effects on cardio cerebral vascular disease. EbbHLH80, a gene from E. breviscapus that positively regulates flavonoid synthesis, was previously characterized. However, it is unclear whether EbbHLH80 increases flavonoid accumulation, which affects salt tolerance. The function of EbbHLH80 in transgenic tobacco seeds was identified by phylogenetic analysis and metabolome-transcriptome analysis. We investigated the role of EbbHLH80 in salt stress response. Our results showed that the expression of EbbHLH80 increased following salt treatment. Integrating the metabolome and transcriptome analysis of EbbHLH80-OE and Yunyan 87 (WT) seeds, we identified several genes and metabolites related to flavonoid biosynthesis and salt stress. Moreover, EbbHLH80-OE plants displayed higher salt tolerance than wild-type plants during seed germination and seedling growth. After salt treatment, transgenic tobacco had significantly lower levels of reactive oxygen species (ROS) than WT, with enhanced levels of antioxidant enzyme expression. Altogether, our results demonstrated that EbbHLH80 might be a positive regulator, promoting salt tolerance by modulating ROS scavenging and increasing stress-responsive genes. MDPI 2023-07-04 /pmc/articles/PMC10341687/ /pubmed/37446256 http://dx.doi.org/10.3390/ijms241311080 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
Gao, Qingqing
Li, Xia
Xiang, Chunfan
Li, Ruolan
Xie, Hongchun
Liu, Jia
Li, Xiaoning
Zhang, Guanghui
Yang, Shengchao
Liang, Yanli
Zhai, Chenxi
Zhao, Yan
EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title_full EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title_fullStr EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title_full_unstemmed EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title_short EbbHLH80 Enhances Salt Responses by Up-Regulating Flavonoid Accumulation and Modulating ROS Levels
title_sort ebbhlh80 enhances salt responses by up-regulating flavonoid accumulation and modulating ros levels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341687/
https://www.ncbi.nlm.nih.gov/pubmed/37446256
http://dx.doi.org/10.3390/ijms241311080
work_keys_str_mv AT gaoqingqing ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT lixia ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT xiangchunfan ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT liruolan ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT xiehongchun ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT liujia ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT lixiaoning ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT zhangguanghui ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT yangshengchao ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT liangyanli ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT zhaichenxi ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels
AT zhaoyan ebbhlh80enhancessaltresponsesbyupregulatingflavonoidaccumulationandmodulatingroslevels