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Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato

Whether DNA methylation modification affects the gene transcription and expression of potatoes under drought stress is still unknown. In this study, we used comparative transcriptomics to explore the expression pattern of related genes of the drought-tolerant variety Qingshu 9 (Q) and the drought-se...

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Autores principales: Bi, Zhenzhen, Wang, Yihao, Li, Pengcheng, Li, Chengju, Liu, Yindu, Sun, Chao, Yao, Panfeng, Liu, Yuhui, Liu, Zhen, Bai, Jiangping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778648/
https://www.ncbi.nlm.nih.gov/pubmed/36553527
http://dx.doi.org/10.3390/genes13122260
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author Bi, Zhenzhen
Wang, Yihao
Li, Pengcheng
Li, Chengju
Liu, Yindu
Sun, Chao
Yao, Panfeng
Liu, Yuhui
Liu, Zhen
Bai, Jiangping
author_facet Bi, Zhenzhen
Wang, Yihao
Li, Pengcheng
Li, Chengju
Liu, Yindu
Sun, Chao
Yao, Panfeng
Liu, Yuhui
Liu, Zhen
Bai, Jiangping
author_sort Bi, Zhenzhen
collection PubMed
description Whether DNA methylation modification affects the gene transcription and expression of potatoes under drought stress is still unknown. In this study, we used comparative transcriptomics to explore the expression pattern of related genes of the drought-tolerant variety Qingshu 9 (Q) and the drought-sensitive variety Atlantic (A) under drought stress and DNA methylation inhibitor treatment. The results showed that there was a significant difference in the number of DEGs between the two varieties’ responses to mannitol and 5-azad C, especially when they were co-treated with two reagents, and the gene expression of Q was more sensitive to mannitol after two hours. Furthermore, we found that these differentially expressed genes (DEGs) were significantly enriched in DNA replication, transcription, translation, carbohydrate metabolism, photosynthesis, signal transduction, and glutathione metabolism. These results indicate that the difference in the background of methylation leads to the difference in drought resistance of the two varieties. The complexity of the DNA methylation of variety Q might be higher than that of variety A, and the method of methylation regulation is more refined. This study systematically expands the understanding of the molecular mechanism wherein DNA methylation regulates the response to drought stress.
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spelling pubmed-97786482022-12-23 Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato Bi, Zhenzhen Wang, Yihao Li, Pengcheng Li, Chengju Liu, Yindu Sun, Chao Yao, Panfeng Liu, Yuhui Liu, Zhen Bai, Jiangping Genes (Basel) Article Whether DNA methylation modification affects the gene transcription and expression of potatoes under drought stress is still unknown. In this study, we used comparative transcriptomics to explore the expression pattern of related genes of the drought-tolerant variety Qingshu 9 (Q) and the drought-sensitive variety Atlantic (A) under drought stress and DNA methylation inhibitor treatment. The results showed that there was a significant difference in the number of DEGs between the two varieties’ responses to mannitol and 5-azad C, especially when they were co-treated with two reagents, and the gene expression of Q was more sensitive to mannitol after two hours. Furthermore, we found that these differentially expressed genes (DEGs) were significantly enriched in DNA replication, transcription, translation, carbohydrate metabolism, photosynthesis, signal transduction, and glutathione metabolism. These results indicate that the difference in the background of methylation leads to the difference in drought resistance of the two varieties. The complexity of the DNA methylation of variety Q might be higher than that of variety A, and the method of methylation regulation is more refined. This study systematically expands the understanding of the molecular mechanism wherein DNA methylation regulates the response to drought stress. MDPI 2022-11-30 /pmc/articles/PMC9778648/ /pubmed/36553527 http://dx.doi.org/10.3390/genes13122260 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
Bi, Zhenzhen
Wang, Yihao
Li, Pengcheng
Li, Chengju
Liu, Yindu
Sun, Chao
Yao, Panfeng
Liu, Yuhui
Liu, Zhen
Bai, Jiangping
Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title_full Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title_fullStr Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title_full_unstemmed Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title_short Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato
title_sort transcriptomics analysis reveals a more refined regulation mechanism of methylation in a drought-tolerant variety of potato
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778648/
https://www.ncbi.nlm.nih.gov/pubmed/36553527
http://dx.doi.org/10.3390/genes13122260
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