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Effects of different concentrations of mannitol on gene expression in Stevia rebaudiana Bertoni

机译:不同浓度甘露醇对甜叶菊植物基因表达的影响

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Stevia rebaudiana Bertoni is one of the most important herbal sweetener plants from Asteracea family that have a lot of Steviol glycosides. Among different methods, tissue culture is the best way with high efficiency that is useful for studying stress tolerance mechanisms to obtain drought tolerance of stevia. For this purpose, different concentrations of mannitol (0, 10, 20, 30, 40, 50 mg/l) were used as various treatments in the culture medium of stevia. According to the results, the highest level of UGT85C2 gene expression (1.181 Total lab unit) was seen in plants grown under 30 mg/l mannitol treatment and the lowest level of this gene expression (0.603 Total lab unit) was observed under 40 mg/l mannitol treatment. However, the highest level of KO gene expression (1.323 Total lab unit) was observed under 20 mg/l mannitol. It shows stevia growth is affected by osmotic stress. Water deficiency has a negative impact on Stevia. However, the expression of genes had increased by particular mannitol concentrations. Actually, stevia can survive under various abiotic stresses.
机译:史蒂维亚雷劳迪安娜贝特尼是来自阿尔特拉科西族家族的最重要的草药甜味剂植物之一,具有许多甜菊糖苷。在不同的方法中,组织培养是具有高效率的最佳方法,可用于研究应力耐受机制以获得甜叶菊的耐旱性。为此目的,将不同浓度的甘露醇(0,110,20,30,40,50mg / L)用作甜叶菊的培养基中的各种处理。根据结果​​,在30mg / L甘露醇治疗的植物中看到最高水平的UGT85C2基因表达(1.181总实验室单元),并且在40mg /中观察到该基因表达(0.603总实验室单元)的最低水平l甘露醇治疗。然而,在20mg / L甘露醇下观察到最高水平的KO基因表达(1.323总实验室单元)。它显示甜叶菊生长受渗透压的影响。缺水对甜叶菊产生负面影响。然而,基因的表达通过特定的甘露醇浓度增加。实际上,甜叶菊可以在各种非生物胁迫下存活。

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