首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Molecular characterization of flavonoid biosynthetic genes and accumulation of baicalin baicalein and wogonin in plant and hairy root of Scutellaria lateriflora
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Molecular characterization of flavonoid biosynthetic genes and accumulation of baicalin baicalein and wogonin in plant and hairy root of Scutellaria lateriflora

机译:黄S植物及毛状根中黄酮类生物合成基因的分子特征及黄ical苷黄ical素和wogonin的积累

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摘要

Scutellaria lateriflora is well known for its medical applications because of the presence of flavanoids and alkaloids. The present study aimed to explore the molecular aspects and regulations of flavanoids. Five partial cDNAs encoding genes that are involved in the flavonoid biosynthetic pathway: phenylalanine ammonia lyase (SlPAL), cinnamate 4-hydroxylase (SlC4H), 4-coumaroyl CoA ligase (Sl4CL), chalcone synthase (SlCHS), and chalcone isomerase (SlCHI) were isolated from S. lateriflora. Organ expression analysis showed that these genes were expressed in all organs analyzed with the highest levels correlating with the richest accumulation of wogonin in the roots. Baicalin and baicalein differentially accumulated in S. lateriflora plants, with the highest concentration of baicalin and baicalein detected in the leaves and stems, respectively. Exogenous methyl jasmonate (MeJA) significantly enhanced the expression of SlCHS and SlCHI, and accumulation of baicalin (22.54 mg/g), baicalein (1.24 mg/g), and wogonin (5.39 mg/g) in S. lateriflora hairy roots. In addition, maximum production of baicalin, baicalein, and wogonin in hairy roots treated with MeJA was approximately 7.44-, 2.38-, and 2.12-fold, respectively. Light condition increased the expression level of SlCHS, the first committed step in flavonoid biosynthesis in hairy roots of S. lateriflora after 3 and 4 weeks of development compared to the dark condition. Dark-grown hairy roots contained a higher content of baicalin and baicalein than light-grown hairy roots, while light-grown hairy roots accumulated more wogonin than dark-grown hairy roots. These results may helpful for the metabolic engineering of flavonoids biosynthesis in S. lateriflora.
机译:由于存在类黄酮和生物碱,黄在医学上广为人知。本研究旨在探讨类黄酮的分子方面和法规。五个部分cDNA编码与类黄酮生物合成途径有关的基因:苯丙氨酸氨裂合酶(SlPAL),肉桂酸4-羟化酶(SlC4H),4-香豆酰CoA连接酶(Sl4CL),查尔酮合酶(SlCHS)和查尔酮异构酶(SlCHI)分离自S.lateiflora。器官表达分析表明,这些基因在所有器官中表达的水平最高,与根中wogonin最丰富的积累有关。黄ical素和黄ical素在S.lateiflora植物中差异积累,在叶和茎中分别检出的黄ical素和黄ical素浓度最高。外源茉莉酸甲酯(MeJA)显着增强了S.lateiflora毛状根中SlCHS和SlCHI的表达以及黄ical苷(22.54 mg / g),黄ical素(1.24 mg / g)和wogonin(5.39 mg / g)的积累。此外,在用MeJA处理的毛状根中,黄,苷,黄,素和wogonin的最大产量分别约为7.44倍,2.38倍和2.12倍。与黑暗条件相比,光照条件提高了SlCHS的表达水平,这是发育后3和4周后红花链球菌毛状根中类黄酮生物合成的第一个重要步骤。深色生长的毛状根中黄ical苷和黄ical素的含量高于浅色生长的毛状根,而浅色生长的毛状根比深色生长的毛状根积累更多的wogonin。这些结果可能有助于S.lateiflora中黄酮类生物合成的代谢工程。

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