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Effects of life cycle and leaves location on gene expression and glycoside biosynthesis pathway in Stevia rebaudiana Bertoni

机译:生命周期的影响和叶片位置对史蒂维亚雷吉尼亚州甜叶菊基因表达和糖苷生物合成途径的影响

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摘要

Stevia rebaudiana Bertoni is One of the most important biologically sourced and low-calorie sweeteners that known as "Sweet Weed". It contains steviol glycosides that they are about 200-300 times sweeter than sucrose. Tissue culture is the best method with high efficiency that can overcome to problems of traditional methods, and it is the most useful tools for studying stress tolerance mechanisms under in vitro conditions to obtain drought tolerance. In the present research, we investigated the impact of life cycle, leaves location and the harvesting time on expression of UGT74G1 and UGT76G1 as well as steviol glycosides accumulation. The highest gene expression of both UGT74G1 and UGT76G1 (207.677 and 208.396 Total Lab unit, respectively) was observed in young leaves in the second vegetative year. Also, the highest amount of stevioside accumulation (13.04) was due to the old leaves in vegetative stage which had significant differences with other effects whereas the lowest accumulation (7.47) was seen at young leaves at vegetative stage. Interestingly, the highest level of rebaudioside a production (15.74) was occurred at the young leaves at vegetative stage. There was significant differences between life cycle and leaves location on steviol glycoside production in stevia.
机译:甜叶菊莱巴迪亚洲贝尔尼斯是最重要的生物学和低热量甜味剂之一,称为“甜蜜杂草”。它含有比蔗糖更甜的甜菊醇糖苷,它们约为200-300倍。组织培养是具有高效率的最佳方法,可以克服传统方法的问题,并且是研究在体外条件下研究应力耐受机制的最有用的工具,以获得耐旱性。在本研究中,我们研究了生命周期,叶子位置和收获时间对UGT74G1和UGT76G1表达以及甜叶醇糖苷的积累的影响。在第二件营养年度,在幼叶中观察到UGT74G1和UGT76G1(分别为207.677和208.396个总实验室单元的最高基因表达。此外,最高量的甜菊甙积累(13.04)是由于植物阶段中的旧叶子与其他影响有显着差异,而在营养阶段的幼叶中看到最低的积累(7.47)。有趣的是,在植物阶段的年轻叶片发生了最高水平的莱鲍迪甙生产(15.74)。生命周期与甜叶菊糖苷糖苷的叶片之间存在显着差异。

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