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Cell Suspension Culture of Plumbago europaea L. Towards Production of Plumbagin

机译:欧洲白花蜂的细胞悬浮培养对白花菜素生产的影响

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Background: Plumbagin is as an important bioactive secondary metabolite found in the roots of Plumbago spp. The only one species, Plumbago europaea L., grows wild in Iran. The therapeutic use of plumbagin is limited due to its insufficient supply from the natural sources as the plants grow slowly and take several years to produce quality roots. Objectives: To develop an efficient protocol for the establishment of callus and cell suspension cultures of P. europaea and to evaluate production of plumbagin in callus and cell suspension cultures of P. europaea for the first time. Material and Methods: Stems and leaves explants were cultured on agar solidified (7% w/v) MS media, supplemented with different combination of 2, 4-D and Kin or 6-Benzylaminopurin (BA) for callus induction. The rapid growing calli were cultured in liquid Murashige and Skoog (MS) media in agitated condition for establishing cell suspension cultures of P. europaea. Moreover, the effects of light and dark conditions on the cell growth, cell viability and plumbagin production in cell suspension cultures of P. europaea were assessed. Results: Friable calli were successfully induced using stem segments of P. europaea in semisolid MS medium supplemented with 1 mg.L-1 2, 4-Dichlorophenoxy acetic acid (2, 4-D) and 0.5 mg.L-1of kinetin (Kin). Optimal cell growth was obtained when the cells were grown in MS liquid media supplemented with 1 mg.L-1 2, 4-D and 0.5 mg.L-1 kinetin with an initial cell density of ~3×105 cellsper ml incubated in the dark at 25 ± 1 °C. Growth curve revealed that the maximum cell growth rate (14.83×105 cellsper ml) achieved on the day 18 and the highest plumbagin content (0.9 mg.g-1 Dry Cell Weight (DCW)) in the cells was obtained at the late exponential phase under dark condition which determined by High Performance Liquid Chromatography (HPLC) technique. Based on the obtained results, cell viability remained around 82.73% during the 18 days of cell culture in darkness. These suspension cultures showed continuous and stable production of plumbagin. Conclusions: Our study suggests that cell suspension cultures of P. europaea represent an effective system for biosynthesis and production of plumbagin as a valuable bioactive compound.
机译:背景:铅蛋白是在石墨树种根中发现的重要的生物活性次生代谢产物。唯一的一种,欧洲白头翁(Plumbago europaea L.)在伊朗野生。由于植物生长缓慢且需要数年才能产生优质根,因此天然来源的供应不足,限制了李子的治疗用途。目的:建立一种有效的方案,用于建立欧洲假单胞菌的愈伤组织和细胞悬液培养物,并首次评估欧洲假单胞菌的愈伤组织和细胞悬液培养物中铅肽的产生。材料和方法:将茎和叶外植体培养在琼脂固化的(7%w / v)MS培养基上,补充2、4-D和Kin或6-苄基氨基嘌呤(BA)的不同组合以诱导愈伤组织。将快速生长的愈伤组织在液体Murashige和Skoog(MS)培养基中在搅拌条件下进行培养,以建立欧洲假单胞菌的细胞悬浮培养物。此外,评估了光照和黑暗条件对欧洲假单胞菌细胞悬浮培养物中细胞生长,细胞生存力和铅白蛋白产生的影响。结果:在添加1 mg.L-1 2、2,4-二氯苯氧基乙酸(2,4-D)和0.5 mg.L-1激动素(Kinin)的半固体MS培养基中,用欧洲假单胞菌的茎段成功诱导了脆性愈伤组织。 )。当细胞在补充有1 mg.L-1 2、4-D和0.5 mg.L-1激动素的MS液体培养基中生长时,可获得最佳细胞生长,初始细胞密度为每毫升〜3×105细胞。 25±1°C时黑暗。生长曲线显示,在第18天达到了最大的细胞生长速率(14.83×105细胞/ ml),并且在指数后期获得了最高的铅蛋白含量(0.9 mg.g-1干细胞重量(DCW))。在黑暗条件下通过高效液相色谱(HPLC)技术测定。根据获得的结果,在黑暗中细胞培养的18天中,细胞活力保持在82.73%左右。这些悬浮培养物显示出连续且稳定地生产李子。结论:我们的研究表明,欧洲假单胞菌的细胞悬浮培养物代表了一种有效的系统,可用于合成和生产作为有价值的生物活性化合物的羽扇豆。

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