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Investigation of different concentrations of MS media effects on gene expression and steviol glycosides accumulation in Stevia rebaudiana Bertoni

机译:对史蒂维亚雷吉尼亚群岛基因表达和甜菊糖苷累积不同浓度的MS培养基效应研究

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Stevia rebaudiana Bertoni is one of two species that contains steviol glycosides. Among steviol glycosides that extracted from leaves, stevioside and rebaudioside A are the two major and the sweetest glycosides that are about 200-300 times sweeter than sucrose with zero calories. The best method for stevia propagation is tissue culture. So, for investigation of nutrients in medium, we studied the effect of different concentrations of MS media (MS, 0.5 MS, 0.25 MS, 0 MS) on morphological traits, UGT74G1 and UGT76G1 genes expression and accumulation of steviol glycosides in stevia leaves. The best growth rate (0.472 mm/d) has occurred in plants grown in MS media. Also, the highest gene expression of UGT74G1 gene (1.000 Total lab unit) was seen under MS treatment. However, the highest expression level of UGT76G1 gene (1.701 Total lab unit) was observed at plants grown in 0 MS. The highest amount of both Stevioside and Rebaudioside A (14.23 and 8.12, respectively) were accumulated in plants under MS treatment. Obviously, dilution of MS media associated with decreasing in both expression of the intended genes and accumulation of steviol glycosides.
机译:甜叶菊雷迪恩亚洲百吉是含有甜菊糖糖苷的两种物种之一。从叶片中提取的甜菊糖糖苷中,甜菊甙和莱鲍迪甙A是两种主要和最甜的糖苷,其比蔗糖约200-300倍,含有零卡路里。甜叶菊繁殖的最佳方法是组织培养。因此,为了研究培养基中的营养素,我们研究了不同浓度的MS培养基(MS,0.5ms,0.25ms,0 ms)对形态性状的影响,UGT74G1和UGT76G1基因表达和甜叶醇糖苷的甜蜜糖苷的积累。在MS介质生长的植物中发生了最佳的增长率(0.472mm / d)。此外,在MS处理下,可以看到UGT74G1基因(1.000总实验室单元)的最高基因表达。然而,在0 ms生长的植物中观察到UGT76G1基因(1.701总实验室单元)的最高表达水平。甜菊甙和莱鲍迪甙A(分别为14.23和8.12分别)在MS治疗下的植物中积累了最高量。显然,稀释与脂肪醇糖苷的预期基因的表达和积累的递减相关的MS培养基。

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