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首页> 外文期刊>Plant Biotechnology Journal >Isolation of amaranthin synthetase from Chenopodium quinoa and construction of an amaranthin production system using suspension‐cultured tobacco BY‐2 cells
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Isolation of amaranthin synthetase from Chenopodium quinoa and construction of an amaranthin production system using suspension‐cultured tobacco BY‐2 cells

机译:从藜喹啉藜藜中分离苋菜藜酶及苋菜生产系统的施工悬浮培养的烟草 - 2细胞

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摘要

Betalains are plant pigments primarily produced by plants of the order Caryophyllales. Because betalain possesses anti‐inflammatory and anticancer activities, it may be useful as a pharmaceutical agent and dietary supplement. Recent studies have identified the genes involved in the betalain biosynthesis of betanin. Amaranthin and celosianin II are abundant in the quinoa (Chenopodium quinoa Willd.) hypocotyl, and amaranthin comprises glucuronic acid bound to betanin; therefore, this suggests the existence of a glucuronyltransferase involved in the synthesis of amaranthin in the quinoa hypocotyl. To identify the gene involved in amaranthin biosynthesis, we performed a BLAST analysis and phylogenetic tree analysis based on sequences homologous to flavonoid glycosyltransferase, followed by expression analysis on the quinoa hypocotyl to obtain three candidate proteins. Production of amaranthin in a transient Nicotiana benthamiana expression system was evaluated for these candidates and one was identified as having the ability to produce amaranthin. The gene encoding this protein was quinoa amaranthin synthetase 1 (CqAmaSy1). We also created a transgenic tobacco bright yellow‐2 (BY‐2) cell line wherein four betalain biosynthesis genes were introduced to facilitate amaranthin production. This transgenic cell line produced 13.67?±?4.13?μ m (mean?±?SEM) amaranthin and 26.60?±?1.53?μ m betanin, whereas the production of isoamaranthin and isobetanin could not be detected. Tests confirmed the ability of amaranthin and betanin to slightly suppress cancer cell viability. Furthermore, amaranthin was shown to significantly inhibit HIV‐1 protease activity, whereas betanin did not.
机译:贝纳索是主要由秩序植物植物产生的植物颜料。因为贝纳莱因具有抗炎和抗癌活动,因此它可能是药剂和膳食补充剂。最近的研究鉴定了参与Betanin生物合成的基因。 Amaranthin和CeloSianin II在藜氨藜(藜哌啶藜lion。)下丘脑,Amaranthin包含血糖蛋白酸结合于甜菜糖酸;因此,这表明存在于奎奴亚藜下的Amaranthin合成的葡糖基转移酶的存在。为了鉴定Amaranthin生物合成中涉及的基因,我们基于对类黄酮糖基转移酶同源的序列进行了爆炸分析和系统发育树分析,其次是对藜甲骨菌的表达分析以获得三种候选蛋白。对这些候选人进行了评估了Amanthin的生产,对这些候选人进行了评估,并被确定为有能力生产苋菜。编码该蛋白质的基因是奎奴亚藜苋菜合成酶1(CQamasy1)。我们还创造了一种转基因烟草亮黄-2(BY-2)细胞系,其中引入了四种β-生物合成基因以促进苋菜生产。该转基因细胞系产生13.67°?±4.13?μm(平均值?±ΔEm)Amaranthin和26.60?±1.53?μmbetanin,而Isoamaranthin和Isobetanin的生产无法检测到。试验证实了苋菜和白桦蛋白略微抑制癌细胞活力的能力。此外,Amaranthin显示出显着抑制HIV-1蛋白酶活性,而Betanin则没有。

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