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Co-expression of AaPMT and AaTRI effectively enhances the yields of tropane alkaloids in Anisodus acutangulus hairy roots

机译:AaPMT和AaTRI的共表达有效提高了尖顶An毛状根中托烷生物碱的产量

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Background Tropane alkaloids (TA) including anisodamine, anisodine, hyoscyamine and scopolamine are a group of important anticholinergic drugs with rapidly increasing market demand, so it is significant to improve TA production by biotechnological approaches. Putrescine N -methyltransferase (PMT) was considered as the first rate-limiting upstream enzyme while tropinone reductase I (TRI) was an important branch-controlling enzyme involved in TA biosynthesis. However, there is no report on simultaneous introduction of PMT and TRI genes into any TA-producing plant including Anisodus acutangulus ( A. acutangulus ), which is a Solanaceous perennial plant that is endemic to China and is an attractive resource plant for production of TA. Results In this study, 21 AaPMT and AaTRI double gene transformed lines (PT lines), 9 AaPMT single gene transformed lines (P lines) and 5 AaTRI single gene transformed lines (T lines) were generated. RT-PCR and real-time fluorescence quantitative analysis results revealed that total AaPMT ( AaPMT T ) and total AaTRI ( AaTRI T ) gene transcripts in transgenic PT, P and T lines showed higher expression levels than native AaPMT ( AaPMT E ) and AaTRI ( AaTRI E ) gene transcripts. As compared to the control and single gene transformed lines (P or T lines), PT transgenic hairy root lines produced significantly higher levels of TA. The highest yield of TA was detected as 8.104 mg/g dw in line PT18, which was 8.66, 4.04, and 3.11-times higher than those of the control (0.935 mg/g dw), P3 (highest in P lines, 2.004 mg/g dw) and T12 (highest in T lines, 2.604 mg/g dw), respectively. All the tested samples were found to possess strong radical scavenging capacity, which were similar to control. Conclusion In the present study, the co-expression of AaPMT and AaTRI genes in A. acutangulus hairy roots significantly improved the yields of TA and showed higher antioxidant activity than control because of higher total TA content, which is the first report on simultaneous introduction of PMT and TRI genes into TA-producing plant by biotechnological approaches.
机译:背景技术山pan碱,山iso碱,d碱和东pol碱是一类重要的抗胆碱能药物,市场需求迅速增长,因此通过生物技术方法改善TA的生产具有重要意义。腐胺N-甲基转移酶(PMT)被认为是第一个限速上游酶,而肌钙蛋白还原酶I(TRI)是参与TA生物合成的重要分支控制酶。但是,尚无关于将PMT和TRI基因同时引入任何TA生产植物的报道,包括Aisodus acutangulus(A. acutangulus),这是中国特有的多年生茄科植物,是生产TA的有吸引力的资源植物。 。结果在本研究中,产生了21个AaPMT和AaTRI双基因转化株(PT株),9个AaPMT单基因转化株(P株)和5个AaTRI单基因转化株(T株)。 RT-PCR和实时荧光定量分析结果表明,转基因PT,P和T系中的总AaPMT(AaPMT T)和总AaTRI(AaTRI T)基因转录本的表达水平高于天然AaPMT(AaPMT E)和AaTRI( AaTRI E)基因转录物。与对照和单基因转化品系(P或T品系)相比,PT转基因毛状根系产生的TA水平明显更高。在PT18品系中检测到最高的TA产量为8.104 mg / g dw,比对照(0.935 mg / g dw),P3(在P品系中最高,2.004 mg)高8.66、4.04和3.11倍。 / g dw)和T12(在T线中最高,为2.604 mg / g dw)。发现所有测试样品都具有很强的自由基清除能力,与对照相似。结论在本研究中,Acutangulus毛状根中AaPMT和AaTRI基因的共表达显着提高了TA的产量,由于总TA含量较高,因此其抗氧化活性高于对照,这是有关同时引入AaPMT和AaTRI基因的首次报道。通过生物技术方法将PMT和TRI基因转化为生产TA的植物。

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