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CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots

Iron (Fe) is an essential micronutrient for all organisms, including plants, whose limited bioavailability restricts plant growth, yield, and nutritional quality. While the transcriptional regulation of plant responses to Fe deficiency have been extensively studied, the contribution of epigenetic mo...

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Autores principales: Zhu, Huihui, Han, Guanghao, Wang, Jiayi, Xu, Jiming, Hong, Yiguo, Huang, Li, Zheng, Shaojian, Yang, Jianli, Chen, Weiwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419876/
https://www.ncbi.nlm.nih.gov/pubmed/37577397
http://dx.doi.org/10.1093/hr/uhad104
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author Zhu, Huihui
Han, Guanghao
Wang, Jiayi
Xu, Jiming
Hong, Yiguo
Huang, Li
Zheng, Shaojian
Yang, Jianli
Chen, Weiwei
author_facet Zhu, Huihui
Han, Guanghao
Wang, Jiayi
Xu, Jiming
Hong, Yiguo
Huang, Li
Zheng, Shaojian
Yang, Jianli
Chen, Weiwei
author_sort Zhu, Huihui
collection PubMed
description Iron (Fe) is an essential micronutrient for all organisms, including plants, whose limited bioavailability restricts plant growth, yield, and nutritional quality. While the transcriptional regulation of plant responses to Fe deficiency have been extensively studied, the contribution of epigenetic modulations, such as DNA methylation, remains poorly understood. Here, we report that treatment with a DNA methylase inhibitor repressed Fe deficiency-induced responses in tomato (Solanum lycopersicum) roots, suggesting the importance of DNA methylation in regulating Fe deficiency responses. Dynamic changes in the DNA methylome in tomato roots responding to short-term (12 hours) and long-term (72 hours) Fe deficiency identified many differentially methylated regions (DMRs) and DMR-associated genes. Most DMRs occurred at CHH sites under short-term Fe deficiency, whereas they were predominant at CG sites following long-term Fe deficiency. Furthermore, no correlation was detected between the changes in DNA methylation levels and the changes in transcript levels of the affected genes under either short-term or long-term treatments. Notably, one exception was CG hypermethylation at the bHLH39 promoter, which was positively correlated with its transcriptional induction. In agreement, we detected lower CG methylation at the bHLH39 promoter and lower bHLH39 expression in MET1-RNA interference lines compared with wild-type seedlings. Virus-induced gene silencing of bHLH39 and luciferase reporter assays revealed that bHLH39 is positively involved in the modulation of Fe homeostasis. Altogether, we propose that dynamic epigenetic DNA methylation in the CG context at the bHLH39 promoter is involved in its transcriptional regulation, thus contributing to the Fe deficiency response of tomato.
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spelling pubmed-104198762023-08-12 CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots Zhu, Huihui Han, Guanghao Wang, Jiayi Xu, Jiming Hong, Yiguo Huang, Li Zheng, Shaojian Yang, Jianli Chen, Weiwei Hortic Res Article Iron (Fe) is an essential micronutrient for all organisms, including plants, whose limited bioavailability restricts plant growth, yield, and nutritional quality. While the transcriptional regulation of plant responses to Fe deficiency have been extensively studied, the contribution of epigenetic modulations, such as DNA methylation, remains poorly understood. Here, we report that treatment with a DNA methylase inhibitor repressed Fe deficiency-induced responses in tomato (Solanum lycopersicum) roots, suggesting the importance of DNA methylation in regulating Fe deficiency responses. Dynamic changes in the DNA methylome in tomato roots responding to short-term (12 hours) and long-term (72 hours) Fe deficiency identified many differentially methylated regions (DMRs) and DMR-associated genes. Most DMRs occurred at CHH sites under short-term Fe deficiency, whereas they were predominant at CG sites following long-term Fe deficiency. Furthermore, no correlation was detected between the changes in DNA methylation levels and the changes in transcript levels of the affected genes under either short-term or long-term treatments. Notably, one exception was CG hypermethylation at the bHLH39 promoter, which was positively correlated with its transcriptional induction. In agreement, we detected lower CG methylation at the bHLH39 promoter and lower bHLH39 expression in MET1-RNA interference lines compared with wild-type seedlings. Virus-induced gene silencing of bHLH39 and luciferase reporter assays revealed that bHLH39 is positively involved in the modulation of Fe homeostasis. Altogether, we propose that dynamic epigenetic DNA methylation in the CG context at the bHLH39 promoter is involved in its transcriptional regulation, thus contributing to the Fe deficiency response of tomato. Oxford University Press 2023-05-12 /pmc/articles/PMC10419876/ /pubmed/37577397 http://dx.doi.org/10.1093/hr/uhad104 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Zhu, Huihui
Han, Guanghao
Wang, Jiayi
Xu, Jiming
Hong, Yiguo
Huang, Li
Zheng, Shaojian
Yang, Jianli
Chen, Weiwei
CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title_full CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title_fullStr CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title_full_unstemmed CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title_short CG hypermethylation of the bHLH39 promoter regulates its expression and Fe deficiency responses in tomato roots
title_sort cg hypermethylation of the bhlh39 promoter regulates its expression and fe deficiency responses in tomato roots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419876/
https://www.ncbi.nlm.nih.gov/pubmed/37577397
http://dx.doi.org/10.1093/hr/uhad104
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