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环境线索诱导甜菊糖甙含量的变化和相应生物合成基因在甜叶菊中的转录。

Environmental cues induce changes of steviol glycosides contents and transcription of corresponding biosynthetic genes in Stevia rebaudiana.

机构信息

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China; Institute of Botany, Jiangsu Province and the Chinese Academy of Sciences, Nanjing 210014, China.

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China; Institute of Botany, Jiangsu Province and the Chinese Academy of Sciences, Nanjing 210014, China.

出版信息

Plant Physiol Biochem. 2015 Jan;86:174-180. doi: 10.1016/j.plaphy.2014.12.004. Epub 2014 Dec 4.

Abstract

Plant growth and secondary metabolism are commonly regulated by external cues such as light, temperature and water availability. In this study, the influences of low and high temperatures, dehydration, photoperiods, and different growing stages on the changes of steviol glycosides (SGs) contents and transcription levels of fifteen genes involved in SGs biosynthesis of Stevia rebaudiana Bertoni were examined using HPLC and RT-PCR. The observations showed that the transcript levels of all the fifteen genes were maximum under 25 °C treatment, and the transcription of SrDXS, SrDXR, SrMCT, SrCMK, SrMDS, SrHDS, SrHDR, SrIDI, SrGGDPS, SrCPPS1, SrUGT85C2 and SrUGT76G1 were restrained both in low temperature (15 °C) and high temperature (35 °C). Most genes in SGs biosynthesis pathway exhibited down-regulation in dehydration. To elucidate the effect of photoperiods, the plants were treated by different simulated photoperiods (8 L/16 D, 1 0L/14 D, 14 L/10 D and 16 L/8 D), but no significant transcription changes were observed. In the study of growing stages, there were evident changes of SGs contents, and the transcript levels of all the fifteen genes were minimal in fast growing period, and exhibited evident increase both in flower-bud appearing stage and flowering stage. The obtained results strongly suggest that the effect of environmental cues on steviol glycosides contents and transcription of corresponding biosynthetic genes in S. rebaudiana is significant. It is worth to study deeply.

摘要

植物生长和次生代谢通常受到外部信号的调节,如光、温度和水分供应等。本研究采用 HPLC 和 RT-PCR 技术,研究了低温和高温、脱水、光周期以及不同生长阶段对甜菊叶中甜菊糖苷(SGs)含量和 15 个参与 SGs 生物合成基因转录水平变化的影响。结果表明,在 25℃处理下,15 个基因的转录水平最高,SrDXS、SrDXR、SrMCT、SrCMK、SrMDS、SrHDS、SrHDR、SrIDI、SrGGDPS、SrCPPS1、SrUGT85C2 和 SrUGT76G1 的转录在低温(15℃)和高温(35℃)下均受到抑制。SGs 生物合成途径中的大多数基因在脱水时表达下调。为了阐明光周期的影响,对植物进行了不同模拟光周期(8L/16D、10L/14D、14L/10D 和 16L/8D)的处理,但未观察到明显的转录变化。在生长阶段的研究中,SGs 含量有明显变化,15 个基因的转录水平在快速生长阶段最低,在花蕾出现阶段和开花阶段明显增加。研究结果表明,环境信号对甜菊叶中甜菊糖苷含量和相应生物合成基因的转录有显著影响。值得深入研究。

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