[Formation of protodioscin and deltoside isomers in suspension cultures of Nepal yam (Dioscorea deltoidea Wall.) cells].

M T Khandy, M V Titova, S V Konstantinova, D V Kochkin, I M Ivanov, A M Nosov
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Abstract

Changes in the content of the furostanol glycosides protodioscin and deltoside, particularly that of the (25S)-isomers of the glycosides, during suspension cultivation of different lines of Nepal yam (Dioscorea deltoidea Wall.) cells of the strain IFR-DM-0.5 has been investigated. The composition of furostanol glycosides has been characterized, and the dynamics of the accumulation of individual glycosides during lengthy subcultivation of cells maintained in flasks or in a barbotage bioreactor has been analyzed. A positive correlation between the growth and accumulation of substances that belonged to the class of furostanol glycosides has been demonstrated for cultured dioscorea cells, whereas the content of some of the individual glycosides varied considerably between the lines of the strain, cultures maintained under different conditions, and even between cells in different phases of the growth cycle. The increased content of (25R)-forms of the glycosides (protodioscin and deltoside) was correlated with a decrease in the cellular growth rate, whereas an increase in culture growth intensity occurred concomitantly to an increase of the amount of (25S)-isomers. This may be indicative of the specific stimulatory effect of (25S)-glycosides, but not the (25R)-forms, on cell proliferation in vitro. Thus, the concentration of (25S)-forms may increase due to the autoselection of cells capable of intensive division during prolonged cultivation.

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[尼泊尔山药(Dioscorea deltoidea Wall.)细胞悬浮培养中原薯蓣皂苷和三角糖苷异构体的形成]。
本文研究了不同品系尼泊尔山药(Dioscorea deltoidea Wall.) IFR-DM-0.5细胞悬浮培养过程中糠甾醇苷原薯蓣皂苷和三角糖苷含量的变化,特别是其(25S)-异构体含量的变化。糠醇苷的组成已经被表征,并且在长时间的继代培养中,在烧瓶中或在barbarage生物反应器中,分析了单个苷的积累动态。已经证明,在培养的薯蓣细胞中,糠醇苷类物质的生长和积累之间存在正相关关系,然而,在菌株的不同系之间,在不同条件下的培养,甚至在生长周期的不同阶段的细胞之间,某些单个苷的含量差异很大。(25R)型糖苷(原薯蓣皂苷和三角糖苷)含量的增加与细胞生长速率的降低有关,而(25S)-异构体数量的增加则伴随着培养生长强度的增加。这可能表明(25S)-糖苷对体外细胞增殖的特异性刺激作用,而不是(25R)-形式。因此,(25S)型的浓度可能会增加,这是由于在长时间培养过程中能够进行密集分裂的细胞的自动选择。
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