首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Transgenerational Perpetuation of CHS Gene Expression and DNA Methylation Status Induced by Short Oligodeoxynucleotides in Flax (Linum usitatissimum)
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Transgenerational Perpetuation of CHS Gene Expression and DNA Methylation Status Induced by Short Oligodeoxynucleotides in Flax (Linum usitatissimum)

机译:短寡核苷酸在亚麻中诱导的CHS基因表达和DNA甲基化状态的世代永存

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摘要

Over two decades ago, short oligodeoxynucleotides (ODNs) were proven to be an effective and rapid technique for analysis of gene function without interference in the plant genome. Our previous research has shown the successful regulation of chalcone synthase (CHS) gene expression in flax by ODN technology. The CHS gene encodes a pivotal enzyme in flavonoid biosynthesis. The manipulation of its transcript level was the result of the specific methylation status developed after treatment with ODNs. In further analysis of the application of oligodeoxynucleotides in plants, we will focus on maintaining the methylation status induced originally by ODNs homologous to the regulatory regions of the CHS gene in flax. This article reports the latest investigation applied to stabilization and inheritance of the epigenetic marks induced by plants’ treatment with ODNs. The methylation status was analyzed in the particular CCGG motifs located in the CHS gene sequence. Individual plants were able to maintain alterations induced by ODNs. In order to confirm the impact of methylation marks on the nucleosome rearrangement, chromatin accessibility assay was performed. The perpetuation of targeted plant modulation induced by ODNs exhibits strong potential for improving crops and intensified application for medicine, nutrition and industry.
机译:二十多年前,事实证明,短寡核苷酸(ODN)是一种有效而快速的技术,可以在不干扰植物基因组的情况下分析基因功能。我们之前的研究表明,利用ODN技术可以成功调节亚麻中查尔酮合酶(CHS)基因的表达。 CHS基因编码类黄酮生物合成中的关键酶。其转录水平的操纵是用ODNs处理后形成的特定甲基化状态的结果。在进一步分析寡聚脱氧核苷酸在植物中的应用时,我们将集中于维持最初由与亚麻中CHS基因调控区同源的ODN诱导的甲基化状态。本文报道了最新的研究成果,这些研究成果适用于由植物用ODN处理诱导的表观遗传标记的稳定和遗传。在位于CHS基因序列中的特定CCGG基序中分析了甲基化状态。单个植物能够维持由ODNs诱导的改变。为了确认甲基化标记对核小体重排的影响,进行了染色质可及性测定。由ODNs诱导的定向植物调节作用的持久性具有改善作物的潜力,并在医药,营养和工业领域得到广泛应用。

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