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首页> 外文期刊>Molecular biology reports >Study of gene expression and steviol glycosides accumulation in Stevia rebaudiana Bertoni under various mannitol concentrations
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Study of gene expression and steviol glycosides accumulation in Stevia rebaudiana Bertoni under various mannitol concentrations

机译:在各种甘露醇浓度下甜叶菊雷尼尼百吉基因表达及甜菊糖糖苷累积研究

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摘要

Stevia rebaudiana produces sweet steviol glycosides that are 300 times sweeter than sugar and have the beneficial effects on human health including anti-hyperglycaemic. Tissue culture is the best method with high efficacy to propagate stevia. Abiotic stress has an impact on steviol glycoside contents in stevia. Therefore, we investigated the effect of mannitol on the expression of four genes involved in the biosynthesis of stevia including UGT74G1, UGT76G1, kaurene oxidase and kaurene synthase genes and steviol glycosides accumulation in stevia under in vitro conditions. The highest expression of UGT76G1 gene occurred in the plants grown under 20g/l mannitol. While for the kaurene synthase gene, the highest amount of gene expression was observed at 40g/l mannitol. The results were different about kaurene oxidase gene. As the highest and lowest gene expression were seen in 50 and 30g/l mannitol conditions respectively. There were the same results for UGT74G1 that means the most appropriate and also the most inopportune treatment for the gene expression were same as the condition for the kaurene oxidase gene. Compared with control, adding mannitol to media in all concentrations increases the expression of UGT76G1 gene. Estimation of steviol glycosides contents under different treatments of mannitol carried out by HPLC. According to the results, the highest amount of stevioside was produced under 20g/l mannitol treatment. However, rebaudioside A was accumulated in its maximum amounts under 30g/l mannitol. It can be concluded that adding mannitol to media in the certain concentration increases steviol glycoside contents in the stevia.
机译:甜叶菊雷吉亚洲生产甜味甜蜜糖苷,比糖更甜300倍,对人类健康有益效果,包括抗血压血糖。组织培养是具有繁殖甜叶菊的高效力的最佳方法。非生物胁迫对甜叶菊的脂肪醇糖苷含量产生影响。因此,我们研究了甘露醇对甜叶菊生物合成的四种基因表达的影响,包括UGT74G1,UGT76G1,Kaurene氧化酶和Kaurene综合基因在体外条件下甜叶菊的甜蜜糖苷累积。在20g / L甘露醇的植物中发生UGT76G1基因的最高表达。虽然对于kaurene合成酶基因,但在40g / l甘露醇中观察到最高量的基因表达。结果对Kaurene氧化酶基因不同。作为50和30g / L甘露醇条件的最高和最低基因表达。 UGT74G1具有相同的结果,这意味着最合适的,并且最重要的基因表达的治疗也与Kaurene氧化酶基因的条件相同。与对照相比,将甘露醇添加到所有浓度的培养基中增加了UGT76G1基因的表达。用HPLC进行不同处理甘露醇甘露醇含量的脂肪醇糖苷含量的估计。根据结果​​,在20g / L甘露醇处理下生产最多的甜菊糖醇。然而,Rebaudioside A累积在30g / L甘露醇下的最大量。可以得出结论,将甘露醇添加到某些浓度中的介质增加了甜叶菊中的甜菊糖苷含量。

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