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Enhancement of phenylethanoid glycosides biosynthesis in cell cultures of Cistanche deserticola by osmotic stress

机译:渗透胁迫增强肉stan蓉肉细胞培养物中苯乙醇类生物合成的研究

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The effect of osmotic stress on cell growth and phenylethanoid glycosides (PeGs) biosynthesis was investigated in cell suspension cultures of Cistanche deserticola Y. C. Ma, a desert medicinal plant grown in west region of China. Various initial sucrose concentrations significantly affected cell growth and PeGs biosynthesis in the suspension cultures, and the highest dry weight and PeGs accumulation reached 15.9 g l?1-DW and 20.7 mg g?1-DW respectively at the initial osmotic stress of 300 mOsm kg?1 where the sucrose concentration was 175.3 mM. Stoichiometric analysis with different combinations of sucrose and non-metabolic sugar (mannitol) or non-sugar osmotic agents (PEG and NaCl) revealed that osmotic stress itself was an important factor for enhancing PeGs biosynthesis in cell suspension cultures of C. deserticola. The maximum PeGs contents of 26.9 and 23.8 mg g?1-DW were obtained after 21 days at the combinations of 87.6 mM sucrose with 164.7 mM mannitol (303 mOsm kg?1) or 20 mM PEG respectively, which was higher than that of C. deserticola cell cultures grown under an initial sucrose concentration of 175.3 mM after 30 days. The stimulated PeGs accumulation in the cell suspension cultures was correlated to the increase of phenylalanine ammonium lyase (PAL) activity induced by osmotic stress.
机译:在中国西部地区的沙漠药用植物肉stan蓉肉的细胞悬浮培养物中,研究了渗透胁迫对细胞生长和苯乙醇类苷(PeGs)生物合成的影响。不同的初始蔗糖浓度显着影响悬浮培养物中的细胞生长和PeGs的生物合成,最高干重和PeGs积累分别达到15.9 gl?1 -DW和20.7 mg g?1 -DW。初始渗透压为300 mOsm kg?1 ,蔗糖浓度为175.3 mM。用蔗糖和非代谢糖(甘露醇)或非糖渗透剂(PEG和NaCl)的不同组合进行的化学计量分析表明,渗透胁迫本身是增强C. deserticola细胞悬浮培养物中PeGs生物合成的重要因素。 21天后,分别以87.6 mM蔗糖与164.7 mM甘露醇(303 mOsm kg?1 )或20 mM PEG的组合获得最大PeGs含量为26.9和23.8 mg g?1 -DW。 ,这比30天后在初始蔗糖浓度为175.3 mM的条件下生长的C. deserticola细胞培养物高。刺激的PeGs在细胞悬浮培养物中的积累与渗透胁迫诱导的苯丙氨酸铵裂解酶(PAL)活性增加有关。

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