Impact of nutrient supply on growth and synthesis of metabolites of in vitro shoot cultures of S. rebaudiana

Iryna Smetanska, Mamdouh Diaa, Gruda Nazim, Mykola Patyka, Oksana Tonkha
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Abstract

Stevia rebaudiana plants produce sweet tasting compounds, steviosides, which are 300 times sweeter as sugar and can be used as natural sweeteners. Moreover, stevia leaves contain high amount of antioxidants. The use of plant compounds as components of functional nutrition and nutraceuticals is extremely relevant today. The purpose of this study was to investigate the effect of increased nitrogen and saccharose supply on growth and accumulation of steviosides and anthocyanins as well as antioxidative activity in fast-growing shoot cultures of S. rebaudiana. The morphological changes of the leaves, the accumulation of steviosides and anthocyanins, and the antioxidant properties of the extracts were determined. It was shown that during three weeks of in vitro cultivation of shoots on MS medium with double concentration of nitrogen, the biomass increased by 71.0%, after application of double concentration of saccharose – by 133%, and after increasing nitrogen in combination with saccharose supply – by 162.0% compared to the control. Sucrose stimulated the accumulation of biomass. Anti-oxidative potential after nitrogen application was 2.4 times higher than the control, and with saccharose supply it increased 2.7 times. Shoots treated with increased nitrogen and saccharose concentration contained 50.7 and 57.8 mg/g-1 steviosides, respectively. However, the combination of nitrogen and saccharose led to accumulation of 73.4 1 mg/g-1 steviosides. Shoots grown on MS medium culture had 26.0 mg/g-1 of steviosides. The content of anthocyanins was 1.7 times greater under added nitrogen supply, and 2.3 times greater after the application of nitrogen and saccharose. Optimum cultivation media developed individually for each in vitro culture increase the production of valuable plant secondary metabolites up to 3 times
营养供给对黄芪离体芽培养物生长及代谢物合成的影响
甜菊糖植物产生甜味化合物,甜菊苷,甜度是糖的300倍,可以用作天然甜味剂。此外,甜菊叶含有大量的抗氧化剂。使用植物化合物作为功能性营养和营养保健品的成分在今天是非常相关的。本研究旨在探讨增加氮素和蔗糖供给对甜菊苷和花青素生长、积累及抗氧化活性的影响。测定了甜叶菊叶片的形态变化、甜叶菊苷和花青素的积累以及提取物的抗氧化性能。结果表明,在双氮MS培养基上离体培养3周,植株生物量比对照增加了71.0%,双氮加糖后生物量比对照增加了133%,加氮加糖后生物量比对照增加了162.0%。蔗糖促进了生物量的积累。施氮后抗氧化电位比对照高2.4倍,加糖后抗氧化电位提高2.7倍。增加氮和糖浓度处理的芽中甜菊苷含量分别为50.7和57.8 mg/g-1。而氮与糖的组合使甜菊苷累积量达到73.4 mg/g-1。MS培养基上生长的芽中甜菊苷含量为26.0 mg/g-1。施氮处理下花青素含量增加1.7倍,施氮加糖处理后花青素含量增加2.3倍。为每种离体培养单独开发的最佳培养基可使有价值的植物次生代谢物的产量提高3倍
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