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The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa

The SHPRH (SNF2, histone linker, PHD, RING, helicase) subfamily belonging to ATP-dependent chromatin remodeling factor is the effective tumor-suppressor, which can polyubiquitinate PCNA (proliferating cell nuclear antigen) and participate in post-replication repair in human. However, little is known...

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Autores principales: Zhu, Wei, Xie, Zhengqing, Chu, Zhenni, Ding, Yakun, Shi, Gongyao, Chen, Weiwei, Wei, Xiaochun, Yuan, Yuxiang, Wei, Fang, Tian, Baoming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051476/
https://www.ncbi.nlm.nih.gov/pubmed/36987072
http://dx.doi.org/10.3390/plants12061384
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author Zhu, Wei
Xie, Zhengqing
Chu, Zhenni
Ding, Yakun
Shi, Gongyao
Chen, Weiwei
Wei, Xiaochun
Yuan, Yuxiang
Wei, Fang
Tian, Baoming
author_facet Zhu, Wei
Xie, Zhengqing
Chu, Zhenni
Ding, Yakun
Shi, Gongyao
Chen, Weiwei
Wei, Xiaochun
Yuan, Yuxiang
Wei, Fang
Tian, Baoming
author_sort Zhu, Wei
collection PubMed
description The SHPRH (SNF2, histone linker, PHD, RING, helicase) subfamily belonging to ATP-dependent chromatin remodeling factor is the effective tumor-suppressor, which can polyubiquitinate PCNA (proliferating cell nuclear antigen) and participate in post-replication repair in human. However, little is known about the functions of SHPRH proteins in plants. In this study, we identified a novel SHPRH member BrCHR39 and obtained BrCHR39-silenced transgenic Brassica rapa. In contrast to wild-type plants, transgenic Brassica plants exhibited a released apical dominance phenotype with semi-dwarfism and multiple lateral branches. Furthermore, a global alteration of DNA methylation in the main stem and bud appeared after silencing of BrCHR39. Based on the GO (gene ontology) functional annotation and KEGG (Kyoto encyclopedia of genes and genomes) pathway analysis, the plant hormone signal transduction pathway was clearly enriched. In particular, we found a significant increase in the methylation level of auxin-related genes in the stem, whereas auxin- and cytokinin-related genes were hypomethylated in the bud of transgenic plants. In addition, further qRT-PCR (quantitative real-time PCR) analysis revealed that DNA methylation level always had an opposite trend with gene expression level. Considered together, our findings indicated that suppression of BrCHR39 expression triggered the methylation divergence of hormone-related genes and subsequently affected transcription levels to regulate the apical dominance in Brassica rapa.
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spelling pubmed-100514762023-03-30 The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa Zhu, Wei Xie, Zhengqing Chu, Zhenni Ding, Yakun Shi, Gongyao Chen, Weiwei Wei, Xiaochun Yuan, Yuxiang Wei, Fang Tian, Baoming Plants (Basel) Article The SHPRH (SNF2, histone linker, PHD, RING, helicase) subfamily belonging to ATP-dependent chromatin remodeling factor is the effective tumor-suppressor, which can polyubiquitinate PCNA (proliferating cell nuclear antigen) and participate in post-replication repair in human. However, little is known about the functions of SHPRH proteins in plants. In this study, we identified a novel SHPRH member BrCHR39 and obtained BrCHR39-silenced transgenic Brassica rapa. In contrast to wild-type plants, transgenic Brassica plants exhibited a released apical dominance phenotype with semi-dwarfism and multiple lateral branches. Furthermore, a global alteration of DNA methylation in the main stem and bud appeared after silencing of BrCHR39. Based on the GO (gene ontology) functional annotation and KEGG (Kyoto encyclopedia of genes and genomes) pathway analysis, the plant hormone signal transduction pathway was clearly enriched. In particular, we found a significant increase in the methylation level of auxin-related genes in the stem, whereas auxin- and cytokinin-related genes were hypomethylated in the bud of transgenic plants. In addition, further qRT-PCR (quantitative real-time PCR) analysis revealed that DNA methylation level always had an opposite trend with gene expression level. Considered together, our findings indicated that suppression of BrCHR39 expression triggered the methylation divergence of hormone-related genes and subsequently affected transcription levels to regulate the apical dominance in Brassica rapa. MDPI 2023-03-20 /pmc/articles/PMC10051476/ /pubmed/36987072 http://dx.doi.org/10.3390/plants12061384 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
Zhu, Wei
Xie, Zhengqing
Chu, Zhenni
Ding, Yakun
Shi, Gongyao
Chen, Weiwei
Wei, Xiaochun
Yuan, Yuxiang
Wei, Fang
Tian, Baoming
The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title_full The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title_fullStr The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title_full_unstemmed The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title_short The Chromatin Remodeling Factor BrCHR39 Targets DNA Methylation to Positively Regulate Apical Dominance in Brassica rapa
title_sort chromatin remodeling factor brchr39 targets dna methylation to positively regulate apical dominance in brassica rapa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051476/
https://www.ncbi.nlm.nih.gov/pubmed/36987072
http://dx.doi.org/10.3390/plants12061384
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