首页> 外文期刊>Plant Cell, Tissue and Organ Culture (PCTOC) >RNAi suppression and overexpression studies of hydroxyphenylpyruvate reductase (HPPR) and rosmarinic acid synthase (RAS) genes related to rosmarinic acid biosynthesis in hairy root cultures of Coleus blumei
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RNAi suppression and overexpression studies of hydroxyphenylpyruvate reductase (HPPR) and rosmarinic acid synthase (RAS) genes related to rosmarinic acid biosynthesis in hairy root cultures of Coleus blumei

机译:彩叶毛状根培养物中羟基苯丙酮酸还原酶(HPPR)和迷迭香酸合酶(RAS)基因与迷迭香酸生物合成相关的RNAi抑制和过表达研究

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Hydroxyphenylpyruvate reductase (HPPR) and rosmarinic acid synthase (RAS) have been described as enzymes involved in rosmarinic acid (RA) biosynthesis. In this study, elucidating the role of HPPR and RAS in the formation of RA was pursued. For this purpose, hairy root lines of Coleus blumei carrying HPPR or RAS RNAi suppression and overexpression constructs were established using Agrobacterium rhizogenes-mediated transformation. Transgenic lines were evaluated for RA accumulation. Hairy root lines showing undetectable HPPR or RAS mRNA levels displayed strongly reduced RA contents with reduction of up to 92 % compared to control hairy root lines. An increase of RA levels up to 176 % was shown in overexpression hairy root lines with equally increased HPPR transcript levels while RAS overexpression resulted in co-suppression effects with reduced RA levels. These observations support the participation of HPPR and RAS in RA biosynthesis.
机译:羟基苯丙酮酸还原酶(HPPR)和迷迭香酸合酶(RAS)被描述为参与迷迭香酸(RA)生物合成的酶。在这项研究中,试图阐明HPPR和RAS在RA形成中的作用。为此,使用发根农杆菌介导的转化,建立了带有HPPR或RAS RNAi抑制和过度表达构建体的彩叶锦鸡儿的毛状根系。评价转基因品系的RA积累。与对照组毛状根系相比,显示出无法检测到的HPPR或RAS mRNA水平的毛状根系显示出RA含量大大降低,最多可降低92%。在过表达的毛状根系中,HPPR转录水平同样增加,RA水平最多可提高176%,而RAS过表达会导致RA水平降低的共抑制作用。这些观察结果支持HPPR和RAS参与RA生物合成。

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