首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Gene transcription and steviol glycoside accumulation in Stevia rebaudiana under polyethylene glycol‐induced drought stress in greenhouse cultivation
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Gene transcription and steviol glycoside accumulation in Stevia rebaudiana under polyethylene glycol‐induced drought stress in greenhouse cultivation

机译:聚乙二醇诱导的温室干旱胁迫下甜叶菊中的基因转录和甜菊醇糖苷的积累

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摘要

Stevia rebaudiana is a sweet herb of the Astraceae family, which is cultivated for the natural sweeteners it contains. The aim of this study was to assess the effect of drought, simulated by the application of polyethylene glycol (5%, 10%, and 15% w/v), on the content of steviol glycosides (SVglys) and transcription levels of six genes involved in the biosynthesis of these natural sweeteners. The transcription levels of ent‐kaurene synthase, ent‐kaurene oxidase, ent‐kaurenoic acid hydroxylase, and three UDP‐dependent glycosyltransferases, UGT85C2,UGT74G1 and UGT76G1 were downregulated under polyethylene glycol treatment. Polyethylene glycol treatment significantly decreased the amount of stevioside, rebaudioside A, B, C and F, steviolbioside, dulcoside A, rubusoside, and total SVglys. These results strongly suggest a close relationship of SVglys content with the transcription of genes involved in the SVglys biosynthesis pathway. Comparing the observations of the present study with other reports provided the knowledge that the Stevia response to drought stress can be influenced by different environmental and experimental factors, in addition to intensity of drought stress. In conclusion, these results strongly suggest that polyethylene glycol‐induced drought stress has a negative effect on the content of SVglys and transcription of SVglys biosynthetic genes and that this should be investigated further. We recommend that sufficient irrigation of Stevia is required to obtain a high content of SVglys.
机译:甜叶菊甜叶菊(Stevia rebaudiana)是Astraceae家族的一种甜味植物,是为其所含的天然甜味剂而种植的。这项研究的目的是评估干旱的影响,通过应用聚乙二醇(5%,10%和15%w / v)模拟,对甜菊糖苷(SVglys)的含量和六个基因的转录水平的影响参与这些天然甜味剂的生物合成。在聚乙二醇处理下,ent-kaurene合酶,ent-kaurene氧化酶,ent-kaurenoic酸羟化酶和三种UDP依赖性糖基转移酶,UGT85C2,UGT74G1和UGT76G1的转录水平被下调。聚乙二醇处理可显着减少甜菊糖苷,莱鲍迪苷A,B,C和F,甜菊双糖苷,杜尔可甙A,红果糖苷和总SVglys的含量。这些结果强烈暗示了SVglys含量与SVglys生物合成途径中所涉及的基因的转录之间的密切关系。将本研究的观察结果与其他报告进行比较,可以了解到,甜菊对干旱胁迫的反应除了干旱胁迫的强度外,还可能受不同的环境和实验因素的影响。总之,这些结果有力地表明,聚乙二醇诱导的干旱胁迫对SVglys的含量和SVglys生物合成基因的转录具有负面影响,应对此进行进一步研究。我们建议需要充分灌溉甜叶菊以获得高含量的SVglys。

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