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首页> 外文期刊>Acta Physiologiae Plantarum >Changes in the expression of key genes involved in the biosynthesis of menthol and menthofuran in Mentha piperita L. under drought stress
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Changes in the expression of key genes involved in the biosynthesis of menthol and menthofuran in Mentha piperita L. under drought stress

机译:薄荷孢子术中薄荷粥生物合成的关键基因表达的变化在术后施工中

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摘要

Peppermint (Mentha piperita) is known as an important medicinal plant throughout the world. In the present study, after exposing peppermint plants under drought stress, the qRT-PCR was use to analyze the expression of genes involved in menthol biosynthesis pathway and encoding: limonene synthase (lS), limon-3-hydroxylase (l3oh), trans-isopiperitenol dehydrogenase (ipd), isopiperitenone reductase (ipr), pulegone reductase (pr), menthol dehydrogenase (mdeh), and menthofuran synthase (mfs), which also evaluated the morphological and physiological traits. The results revealed that due to water stress, the gene expression levels of ipd, ipr, and mfs were increased, whereas the gene expression level of pr and mdeh was decreased under water stress conditions. The most of essential oil components (menthol, menthofuran, and plugene), which were analyzed by gas chromatography-mass spectrometry (GC-MS), was positively correlated with genes expression. Drought stress decreased morphological and induces increasing contents of pulegone and menthofuran and reduction in menthol percentages. Results from this study suggest that up-regulation of mfs might contribute to the altered of menthofuran as well as down-regulation of mdeh might cause the reduction of menthol. Furthermore, increasing ls gene expression levels might induce more essential oil yield, while reduction of mfs gene expression levels causes an improvement of essential oil quality.
机译:薄荷(Mentha Piperita)被称为全世界重要的药用植物。在本研究中,在干旱胁迫下暴露薄荷植物后,用于分析薄荷醇生物合成途径和编码所涉及的基因的表达:柠檬烯合酶(LS),柠檬烯-3-羟化酶(L3OH),反式IsopiPeritenol脱氢酶(IPD),异哌啶酮还原酶(IPR),焊酮还原酶(PR),薄荷醇脱氢酶(MDEH)和铭文呋喃合酶(MFS),其还评估了形态学和生理性状。结果表明,由于水分应激,IPD,IPR和MFS的基因表达水平增加,而PR和MDEH的基因表达水平在水胁迫条件下降低。通过气相色谱 - 质谱(GC-MS)分析的大部分精油组分(Menthol,Menthofuran和溶液)与基因表达呈正相关。干旱胁迫降低了形态学,诱导肺葡萄酒和仪表含量的增加,并降低薄荷醇百分比。本研究表明,MFS的上调可能导致临床呋喃的改变以及MDEH的下调可能导致薄荷醇的减少。此外,增加LS基因表达水平可能诱导更精油的油产量,同时降低MFS基因表达水平导致精油质量的提高。

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