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首页> 外文期刊>Electronic Journal of Biotechnology >Comparison of the phenolic contents and epigenetic and genetic variability of wild and cultivated watercress ( Rorippa nasturtium var. aquaticum L.)
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Comparison of the phenolic contents and epigenetic and genetic variability of wild and cultivated watercress ( Rorippa nasturtium var. aquaticum L.)

机译:野生和栽培豆瓣菜(Rorippa nasturtium v​​ar。aquaticum L.)的酚含量,表观遗传和遗传变异比较

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BackgroundEpigenetic modifications are key factors modulating the expression of genes involved in the synthesis of phytochemicals. The knowledge of plant epigenetic and genetic variations can contribute to enhance the production of bioactive compounds. These issues have been little explored thus far inRorippa nasturtiumvar.aquaticumL. (watercress), an edible and medicinal plant. The aim of the current study was to determine and compare the phenolic composition and epigenetic and genetic variations between wild and cultivated watercress.ResultsSignificant differences were found in the quantitative phenolic composition between wild and cultivated watercress. The eight primer combinations used in the methylation-sensitive amplification polymorphism (MSAP) method revealed different epigenetic status for each watercress type, the cultivated one being the most epigenetically variable. The genetic variability revealed by theEcoRI/MspIamplification profile and also by eight inter-simple sequence repeat (ISSR) primers was different between the two types of watercress. The results of the Mantel test showed that the correlation between genetic and epigenetic variations has diminished in the cultivated type. Cluster analyses showed that the epigenetic and genetic characterizations clearly discriminated between wild and cultivated watercress.ConclusionsRelevant chemical, epigenetic, and genetic differences have emerged between wild and cultivated watercress. These differences can contribute to fingerprint and develop quality control tools for the integral and safety use and the commercialization of watercress. The richness of epialleles could support the development of tools to manipulate the watercress epigenome to develop high bioproduct–producing cultivars.How to cite: Gutiérrez-Velázquez MV, Almaraz-Abarca N, Herrera-Arrieta Y, et al. Comparison of the phenolic contents and the epigenetic and genetic variability of wild and cultivated watercress (Rorippa nasturtiumvar.aquaticumL.). Electron J Biotechnol 2018;34.https://doi.org/10.1016/j.ejbt.2018.04.005.
机译:背景表观遗传修饰是调节参与植物化学合成的基因表达的关键因素。植物表观遗传和遗传变异的知识可以有助于提高生物活性化合物的产量。迄今为止,在Rorippa nasturtiumvar.aquaticumL中很少探讨这些问题。 (豆瓣菜),可食用和药用植物。本研究的目的是确定和比较野生和栽培豆瓣菜中酚类成分以及表观遗传和遗传变异。结果野生和栽培豆瓣菜中酚类成分的定量差异显着。甲基化敏感性扩增多态性(MSAP)方法中使用的八种引物组合显示了每种豆瓣类型的表观遗传状态,其中一种表观遗传变异最大。在两种类型的豆瓣菜中,EcoRI / MspI扩增图谱以及八种简单序列重复序列(ISSR)引物揭示的遗传变异性是不同的。 Mantel试验的结果表明,在栽培类型中,遗传变异与表观遗传变异之间的相关性已减弱。聚类分析表明,野生和栽培豆瓣之间的表观遗传和遗传特征明显不同。这些差异可有助于指纹识别,并开发用于西洋菜的整体和安全使用以及商业化的质量控制工具。表等位基因的丰富性可以支持操纵豆瓣表观基因组以开发产生高生物产品的品种的工具的开发。野生和栽培豆瓣菜(Rorippa nasturtiumvar.aquaticumL。)的酚含量以及表观遗传和遗传变异的比较。 Electron J Biotechnol 2018; 34.https://doi.org/10.1016/j.ejbt.2018.04.005。

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