Cargando…

Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress

INTRODUCTION: Melatonin is a multipotent molecule that exists widely in animals and plants and plays an active regulatory role in abiotic stresses. The B3 superfamily is a ubiquitous transcription factor with a B3 functional domain in plants, which can respond temporally to abiotic stresses by activ...

Descripción completa

Detalles Bibliográficos
Autores principales: Ren, Chunyuan, Wang, Huamei, Zhou, Zhiheng, Jia, Jingrui, Zhang, Qi, Liang, Changzhi, Li, Wanting, Zhang, Yuxian, Yu, Gaobo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9880549/
https://www.ncbi.nlm.nih.gov/pubmed/36714689
http://dx.doi.org/10.3389/fpls.2022.1091907
_version_ 1784878938272563200
author Ren, Chunyuan
Wang, Huamei
Zhou, Zhiheng
Jia, Jingrui
Zhang, Qi
Liang, Changzhi
Li, Wanting
Zhang, Yuxian
Yu, Gaobo
author_facet Ren, Chunyuan
Wang, Huamei
Zhou, Zhiheng
Jia, Jingrui
Zhang, Qi
Liang, Changzhi
Li, Wanting
Zhang, Yuxian
Yu, Gaobo
author_sort Ren, Chunyuan
collection PubMed
description INTRODUCTION: Melatonin is a multipotent molecule that exists widely in animals and plants and plays an active regulatory role in abiotic stresses. The B3 superfamily is a ubiquitous transcription factor with a B3 functional domain in plants, which can respond temporally to abiotic stresses by activating defense compounds and plant hormones. Despite the fact that the B3 genes have been studied in a variety of plants, their role in soybean is still unknown. METHODS: The regulation of melatonin on cold resistance of soybean and the response of B3 genes to cold stress were investigated by measuring biochemical indexes of soybean. Meanwhile, the genome-wide identification of B3 gene family was conducted in soybean, and B3 genes were analyzed based on phylogeny, motifs, gene structure, collinearity, and cis-regulatory elements analysis. RESULTS: We found that cold stress-induced oxidative stress in soybean by producing excessive reactive oxygen species. However, exogenous melatonin treatment could increase the content of endogenous melatonin and other hormones, including IAA and ABA, and enhance the antioxidative system, such as POD activity, CAT activity, and GSH/GSSG, to scavenge ROS. Furthermore, the present study first revealed that melatonin could alleviate the response of soybean to cold stress by inducing the expression of B3 genes. In addition, we first identified 145 B3 genes in soybean that were unevenly distributed on 20 chromosomes. The B3 gene family was divided into 4 subgroups based on the phylogeny tree constructed with protein sequence and a variety of plant hormones and stress response cis-elements were discovered in the promoter region of the B3 genes, indicating that the B3 genes were involved in several aspects of the soybean stress response. Transcriptome analysis and results of qRT-PCR revealed that most GmB3 genes could be induced by cold, the expression of which was also regulated by melatonin. We also found that B3 genes responded to cold stress in plants by interacting with other transcription factors. DISCUSSION: We found that melatonin regulates the response of soybean to cold stress by regulating the expression of the transcription factor B3 gene, and we identified 145 B3 genes in soybean. These findings further elucidate the potential role of the B3 gene family in soybean to resist low-temperature stress and provide valuable information for soybean functional genomics study.
format Online
Article
Text
id pubmed-9880549
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-98805492023-01-28 Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress Ren, Chunyuan Wang, Huamei Zhou, Zhiheng Jia, Jingrui Zhang, Qi Liang, Changzhi Li, Wanting Zhang, Yuxian Yu, Gaobo Front Plant Sci Plant Science INTRODUCTION: Melatonin is a multipotent molecule that exists widely in animals and plants and plays an active regulatory role in abiotic stresses. The B3 superfamily is a ubiquitous transcription factor with a B3 functional domain in plants, which can respond temporally to abiotic stresses by activating defense compounds and plant hormones. Despite the fact that the B3 genes have been studied in a variety of plants, their role in soybean is still unknown. METHODS: The regulation of melatonin on cold resistance of soybean and the response of B3 genes to cold stress were investigated by measuring biochemical indexes of soybean. Meanwhile, the genome-wide identification of B3 gene family was conducted in soybean, and B3 genes were analyzed based on phylogeny, motifs, gene structure, collinearity, and cis-regulatory elements analysis. RESULTS: We found that cold stress-induced oxidative stress in soybean by producing excessive reactive oxygen species. However, exogenous melatonin treatment could increase the content of endogenous melatonin and other hormones, including IAA and ABA, and enhance the antioxidative system, such as POD activity, CAT activity, and GSH/GSSG, to scavenge ROS. Furthermore, the present study first revealed that melatonin could alleviate the response of soybean to cold stress by inducing the expression of B3 genes. In addition, we first identified 145 B3 genes in soybean that were unevenly distributed on 20 chromosomes. The B3 gene family was divided into 4 subgroups based on the phylogeny tree constructed with protein sequence and a variety of plant hormones and stress response cis-elements were discovered in the promoter region of the B3 genes, indicating that the B3 genes were involved in several aspects of the soybean stress response. Transcriptome analysis and results of qRT-PCR revealed that most GmB3 genes could be induced by cold, the expression of which was also regulated by melatonin. We also found that B3 genes responded to cold stress in plants by interacting with other transcription factors. DISCUSSION: We found that melatonin regulates the response of soybean to cold stress by regulating the expression of the transcription factor B3 gene, and we identified 145 B3 genes in soybean. These findings further elucidate the potential role of the B3 gene family in soybean to resist low-temperature stress and provide valuable information for soybean functional genomics study. Frontiers Media S.A. 2023-01-13 /pmc/articles/PMC9880549/ /pubmed/36714689 http://dx.doi.org/10.3389/fpls.2022.1091907 Text en Copyright © 2023 Ren, Wang, Zhou, Jia, Zhang, Liang, Li, Zhang and Yu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Ren, Chunyuan
Wang, Huamei
Zhou, Zhiheng
Jia, Jingrui
Zhang, Qi
Liang, Changzhi
Li, Wanting
Zhang, Yuxian
Yu, Gaobo
Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title_full Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title_fullStr Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title_full_unstemmed Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title_short Genome-wide identification of the B3 gene family in soybean and the response to melatonin under cold stress
title_sort genome-wide identification of the b3 gene family in soybean and the response to melatonin under cold stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9880549/
https://www.ncbi.nlm.nih.gov/pubmed/36714689
http://dx.doi.org/10.3389/fpls.2022.1091907
work_keys_str_mv AT renchunyuan genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT wanghuamei genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT zhouzhiheng genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT jiajingrui genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT zhangqi genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT liangchangzhi genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT liwanting genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT zhangyuxian genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress
AT yugaobo genomewideidentificationoftheb3genefamilyinsoybeanandtheresponsetomelatoninundercoldstress