Suppr超能文献

暴露于细胞外自身DNA的根:表观遗传效应的证据。

Roots Exposed to Extracellular Self-DNA: Evidence of Epigenetic Effects.

作者信息

Ronchi Alessia, Incerti Guido, De Paoli Emanuele, Panico Speranza Claudia, Sciabbarrasi Giovanni Luca, Termolino Pasquale, Cartenì Fabrizio, Langella Mariachiara, Chiusano Maria Luisa, Mazzoleni Stefano

机构信息

Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, Via delle Scienze 206, 33100 Udine, Italy.

Department of Agronomy, Food, Natural Resources, Animals and Environment, University of Padova, Via dell'Università 16, 35020 Legnaro, Italy.

出版信息

Epigenomes. 2025 Apr 30;9(2):13. doi: 10.3390/epigenomes9020013.

Abstract

BACKGROUND

Previous evidence demonstrated DNA methylation changes in response to stress in plants, showing rapid changes within a limited time frame. Exposure to self-DNA inhibits seedling root elongation, and it was shown that it causes changes in CG DNA methylation in . We assessed cytosine methylation changes and associated gene expression patterns in roots of Col-0 seedlings exposed to self-DNA for 6 and 24 h.

METHODS

We used whole genome bisulfite sequencing (WGBS) and RNA-seq analyses to assess genomic cytosine methylation and corresponding gene expression, respectively, on DNA and RNA extracted with commercial kits from roots exposed to self-DNA by an original setup. Fifteen hundred roots replicates, including the control in distilled water, were collected after exposure. Sequencing was performed on a NovaSeq 6000 platform and Ultralow Methyl-Seq System for RNA and DNA WGBS, respectively.

RESULTS

Gene expression in roots exposed to self-DNA differed from that of untreated controls, with a total of 305 genes differentially expressed and 87 ontologies enriched in at least one treatment vs. control comparison, and particularly after 24 h of exposure. DNA methylation, particularly in CHG and CHH contexts, was also different, with hyper- and hypomethylation prevailing in treatments vs. controls at 6 h and 24 h, respectively. Differentially expressed genes (DEGs) analysis, Gene Ontology (GO) enrichment analysis, and differentially methylated regions (DMRs) analysis, provided an integrated understanding of the changes associated with self-DNA exposure. Our results suggest differential gene expression associated with DNA methylation in response to self-DNA exposure in roots, enhanced after prolonged exposure.

CONCLUSIONS

Main functional indications of association between DNA methylation and gene expression involved hypomethylation and downregulation of genes related to nucleotide/nucleoside metabolism (ATP synthase subunit) and cell wall structure (XyG synthase), consistent with previous observations from metabolomics and physiological studies. Further confirmation of these findings will contribute to improving our understanding of the plant molecular response to self-DNA and its implications in stress responses.

摘要

背景

先前的证据表明,植物在应激反应中会发生DNA甲基化变化,在有限的时间内呈现快速变化。暴露于自身DNA会抑制幼苗根的伸长,并且已表明其会导致拟南芥中CG DNA甲基化的变化。我们评估了暴露于自身DNA 6小时和24小时的Col-0幼苗根中的胞嘧啶甲基化变化及相关基因表达模式。

方法

我们使用全基因组亚硫酸氢盐测序(WGBS)和RNA测序分析,分别评估从通过原始装置暴露于自身DNA的根中用商业试剂盒提取的DNA和RNA上的基因组胞嘧啶甲基化和相应的基因表达。暴露后收集了1500个根重复样本,包括在蒸馏水中的对照样本。分别在NovaSeq 6000平台和用于RNA和DNA WGBS的超低温甲基化测序系统上进行测序。

结果

暴露于自身DNA的根中的基因表达与未处理的对照不同,共有305个基因差异表达,并且在至少一种处理与对照的比较中,特别是在暴露24小时后,有87个本体富集。DNA甲基化,特别是在CHG和CHH背景下,也有所不同,在处理组与对照组中,6小时时主要是高甲基化,24小时时主要是低甲基化。差异表达基因(DEG)分析、基因本体(GO)富集分析和差异甲基化区域(DMR)分析,提供了对与自身DNA暴露相关变化的综合理解。我们的结果表明,在拟南芥根中,响应自身DNA暴露,基因表达与DNA甲基化存在差异,长时间暴露后增强。

结论

DNA甲基化与基因表达之间关联的主要功能指征涉及与核苷酸/核苷代谢(ATP合酶亚基)和细胞壁结构(木葡聚糖合酶)相关基因的低甲基化和下调,这与代谢组学和生理学研究先前的观察结果一致。对这些发现的进一步证实将有助于增进我们对植物对自身DNA的分子反应及其在应激反应中的意义的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e5/12101399/e8b071c48e19/epigenomes-09-00013-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验