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β-Ecdysterone accumulation and regulation in Ajuga multiflora Bunge suspension culture

机译:β-蜕皮甾酮在何首乌悬浮培养中的积累和调控

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摘要

Ajuga multiflora Bunge cells contain β-ecdysterone (β-EC) that regulates the molting process of insect larvae. In this study, different conditions of culture have been studied to optimize the production of β-EC. A. multiflora Bunge growth fitted the curve of logistic equation with one growth cycle of 17 days. The electric conductivity of medium had a negative correlation with not only the weight of dry cell but also the β-EC accumulation, and thus, could be used for monitoring the peak of both cell growth and β-EC accumulation. The pH value of the culture medium varied from 4.67 to 5.84 and reached the maximum at the end of the culture (on the 17th day). The relation of cell growth and nutrient consumption in A. multiflora Bunge cell suspension culture was distinctly correlated. Continuous subculture caused a reduction in β-EC synthesis; passages 7–15, the β-EC content declined (p < 0.05). At passage 11, the β-EC content was only 42.72% of that at passage 5. Additives such as mevalonic acid (MVA), l-phenylalanine (l-Phe), α-pinene, terpineol, and nitric oxide (NO) in the suspension culture medium, could significantly promote the cell growth and stimulate β-EC accumulation. The optimal concentrations of l-Phe, MVA, terpineol, and α-pinene were 0.2 mmol/l, 10 mg/l, 1 mmol/l and 6 mmol/l, respectively, with the β-EC concentrations as 1.914 ± 0.1948 mg/g (p < 0.01), 6.012 ± 0.4252 mg/g (p < 0.01), 5.147 ± 0.4819 mg/g (p < 0.01), 2.801 ± 0.1253 mg/g (p < 0.01), respectively. The optimal concentration of sodium nitroprusside, the provider of NO, was 3 mmol/l with the β-EC concentration 2.87 ± 0.2493 mg/g (p < 0.01). The results offer a strategy for massive production of β-EC.
机译:杂种杜鹃(Ajuga multiflora Bunge)细胞含有调节昆虫幼虫蜕皮过程的β-蜕皮甾酮(β-EC)。在这项研究中,研究了不同的培养条件以优化β-EC的产生。 A. multiflora Bunge生长与一个逻辑周期为17天的logistic方程曲线拟合。培养基的电导率不仅与干细胞的重量成负相关,而且与β-EC的积聚也呈负相关,因此可用于监测细胞生长和β-EC的积聚峰。培养基的pH值在4.67至5.84之间变化,并在培养结束时(第17天)达到最大值。何首乌悬浮细胞悬浮培养中细胞生长与养分消耗的关系明显相关。连续的继代培养导致β-EC合成减少;第7-15代,β-EC含量下降(p <0.05)。在第11代时,β-EC含量仅为第5代时的42.72%。添加剂包括甲羟戊酸(MVA),1-苯丙氨酸(1-Phe),α-pine烯,萜品醇和一氧化氮(NO)。悬浮培养基可以显着促进细胞生长并刺激β-EC的积累。 L-Phe,MVA,松油醇和α-pine烯的最佳浓度分别为0.2 mmol / l,10 mg / l,1 mmol / l和6 mmol / l,β-EC浓度为1.914±0.1948mg / g(p <0.01),6.012±0.4252 mg / g(p <0.01),5.147±0.4819 mg / g(p <0.01),2.801±0.1253 mg / g(p <0.01)。 NO的提供者硝普钠的最佳浓度为3 mmol / l,β-EC浓度为2.87±0.2493 mg / g(p <0.01)。该结果提供了大规模生产β-EC的策略。

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