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Influence of nano-zinc oxide on tropane alkaloid production, h6h gene transcription and antioxidant enzyme activity in Hyoscyamus reticulatus L. hairy roots

机译:氧化氧化物对旱生生物碱产量,H6H基因转录和抗氧化酶活性的影响在Hyoscyamus Reticulatus L.毛状根

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The use of nanotechnology and biotechnology to improve the production of plant bioactive compounds is growing. Hyoscyamus reticulatus L. is a major source of tropane alkaloids with a wide therapeutic use, including treatment of Parkinson's disease and to calm schizoid patients. In the present study, hairy roots were obtained from two-week-old cotyledon explants of H. reticulatus L. using the A7 strain of Agrobacterium rhizogenes. The effects of different concentrations of the signaling molecule nano-zinc oxide (ZnO) (0, 50, 100 and 200 mg/L), with three exposure times (24, 48 and 72 h), on the growth rate, antioxidant enzyme activity, total phenol contents (TPC), tropane alkaloid contents and hyoscyamine-6-beta-hydroxylase (h6h) gene expression levels were investigated. Growth curve analysis revealed a decrease in fresh and dry weight of ZnO-treated hairy roots compared to the control. ANOVA results showed that the antioxidant activity of the enzymes catalase, guaiacol peroxidase and ascorbate peroxidase was significantly higher in the ZnO-treated hairy roots than in the control, as was the TPC. The highest levels of hyoscyamine (37%) and scopolamine (37.63%) were obtained in hairy roots treated with 100 mg/L of ZnO after 48 and 72 h, respectively. Semi-quantitative RT-PCR analysis revealed the highest h6h gene expression was in hairy roots treated with 100 mg/L of ZnO after 24 h. It can be concluded that ZnO is as an effective elicitor of tropane alkaloids such as hyoscyamine and scopolamine due to its enhancing effect on expression levels of the biosynthetic h6h gene.
机译:使用纳米技术和生物技术来改善植物生物活性化合物的生产正在生长。 Hyoscyamus Reticulatus L.是酞甲酸盐的主要来源,具有广泛的治疗用途,包括帕金森病的治疗和平静的分泌物患者。在本研究中,毛状根从H. Reticulatus L的两周左右的子叶外植体获得。使用A7菌株的土壤杆菌菌株。不同浓度的信号传导分子纳米氧化锌(ZnO)(0,50,100和200mg / L)的影响,具有三次暴露时间(24,48和72小时),对生长速率,抗氧化酶活性,研究总酚含量(TPC),酞甲酸盐含量和杂胺-6-β-羟化酶(H6H)基因表达水平。生长曲线分析显示与对照相比,Zno处理的毛状根的新鲜和干重的减少。 ANOVA结果表明,ZnO治疗的毛状根的酶过氧化物酶,愈缩液过氧化物酶和抗坏血酸过氧化物酶的抗氧化活性比TPC在对照中显着高。在48和72小时后,在用100mg / L ZnO处理的毛状根中获得最高水平的杂胺(37%)和CoCopolamine(37.63%)。半定量RT-PCR分析显示,最高的H6H基因表达是在24小时后用100mg / L ZnO处理的毛状根。可以得出结论,ZnO是酞菁生物碱的有效引导者,如莨菪碱和氯化物,因为它增强了生物合成H6H基因的表达水平的影响。

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