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丹参酮生物合成中甲基化组的特征及DNA甲基化的调控机制

Characteristics of methylome and the regulatory mechanism of DNA methylation in tanshinone biosynthesis.

作者信息

Li Jiang, Li Caili, Deng Yuxing, Wei Hairong, Lu Shanfa

机构信息

Key Lab of Chinese Medicine Resources Conservation, State Administration of Traditional Chinese Medicine of the People' s Republic of China, Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100193, China.

Engineering Research Center of Chinese Medicine Resource, Ministry of Education, Beijing 100193, China.

出版信息

Hortic Res. 2023 May 31;10(7):uhad114. doi: 10.1093/hr/uhad114. eCollection 2023 Jul.

Abstract

is a model medicinal plant with significant economic and medicinal value. Its roots produce a group of diterpenoid lipophilic bioactive components, termed tanshinones. Biosynthesis and regulation of tanshinones has attracted widespread interest. However, the methylome of has not been analysed and the regulatory mechanism of DNA methylation in tanshinone production is largely unknown. Here we report single-base resolution DNA methylomes from roots and leaves. Comparative analysis revealed differential methylation patterns for CG, CHG, and CHH contexts and the association between DNA methylation and the expression of genes and small RNAs. Lowly methylated genes always had higher expression levels and 24-nucleotide sRNAs could be key players in the RdDM pathway in . DNA methylation variation analysis showed that CHH methylation contributed mostly to the difference. Go enrichment analysis showed that diterpenoid biosynthetic process was significantly enriched for genes with downstream overlapping with hypoCHHDMR in July_root when comparing with those in March_root. Tanshinone biosynthesis-related enzyme genes, such as , , , , , , , and were less CHH methylated in gene promoters or downstream regions in roots collected in July than those collected in March. Consistently, gene expression was up-regulated in roots collected in July compared with March and the treatment of DNA methylation inhibitor 5-azacytidine significantly promoted tanshinone production. It suggests that DNA methylation plays a significant regulatory role in tanshinone biosynthesis in through changing the levels of CHH methylation in promoters or downstreams of key enzyme genes.

摘要

是一种具有重要经济和药用价值的模式药用植物。其根产生一组二萜类亲脂性生物活性成分,称为丹参酮。丹参酮的生物合成和调控引起了广泛关注。然而,尚未对其甲基化组进行分析,丹参酮生产中DNA甲基化的调控机制在很大程度上尚不清楚。在这里,我们报告了来自根和叶的单碱基分辨率DNA甲基化组。比较分析揭示了CG、CHG和CHH背景下的差异甲基化模式以及DNA甲基化与基因和小RNA表达之间的关联。低甲基化基因总是具有较高的表达水平,并且24核苷酸的小RNA可能是其RNA介导的DNA甲基化途径中的关键参与者。DNA甲基化变异分析表明,CHH甲基化对差异的贡献最大。基因本体富集分析表明,与3月根中的基因相比,7月根中与低CHH甲基化差异区域下游重叠的基因在二萜生物合成过程中显著富集。丹参酮生物合成相关的酶基因,如……在7月采集的根中的基因启动子或下游区域的CHH甲基化程度低于3月采集的根。一致地,与3月相比,7月采集的根中基因表达上调,并且DNA甲基化抑制剂5-氮杂胞苷的处理显著促进了丹参酮的产生。这表明DNA甲基化通过改变关键酶基因启动子或下游的CHH甲基化水平,在丹参酮生物合成中发挥重要的调控作用。

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