首页> 外文OA文献 >Characterization of a bZIP transcription factor that regulates the phenylpropanoid pathway in grapevine
【2h】

Characterization of a bZIP transcription factor that regulates the phenylpropanoid pathway in grapevine

机译:bZIP转录因子的调控葡萄中苯丙烷途径的表征

摘要

In grapevine (Vitis vinifera L.) flavonoids accumulate preferentially in the skin and seeds of grapes (Downey et al. 2004) determining the colour but also the final flavour and astringency of red and white wines. Furthermore, flavonoids extracted from grape berries and seeds exhibit strong nutraceutical potential with a broad spectrum of pharmacological and therapeutic effects (Nassiri-Asl and Hosseinzadeh 2009). Although the general flavonoid pathway has been genetically and biochemically elucidated in many plant species and most recently also in grapevine (Hichri et al. 2011), its regulation still remains not completely characterized.udIn this study we report the characterization of a grapevine bZIP transcription factor involved in flavonoid biosynthesis regulation. According to the ten-classes classification proposed in Arabidopsis, this VvbZIP belongs to the S-group of bZIP. Its expression along fruit development is higher at the flowering stage and is induced by UV-B treatment. The overexpression of VvbZIP in tobacco transgenic lines positively correlates with the flower content of quercetin and cyanidin in the glycosilated form. Furthermore, transient expression assays by bombardment of grapevine suspension cultures, have revealed that VvbZIP activates the flavonoid pathway at different sites and through the interaction with other co-factors.
机译:在葡萄(Vitis vinifera L.)中,类黄酮优先在葡萄的皮和种子中积累(Downey et al。2004),不仅可以确定颜色,还可以确定红葡萄酒和白葡萄酒的最终风味和涩味。此外,从葡萄浆果和种子中提取的黄酮类化合物具有很强的保健潜力,具有广泛的药理和治疗作用(Nassiri-Asl和Hosseinzadeh 2009)。尽管在许多植物物种中以及在葡萄中最近都通过遗传和生物化学方法阐明了总的类黄酮途径(Hichri等人,2011),但其调控仍未完全表征。 ud在本研究中,我们报道了葡萄bZIP转录的特征黄酮类生物合成调控的相关因子。根据拟南芥中提出的十类分类,该VvbZIP属于bZIP的S组。它在果实发育过程中的表达在开花期较高,并且是通过UV-B处理诱导的。烟草转基因株系中VvbZIP的过表达与糖基化形式的槲皮素和花青素的花含量成正相关。此外,通过轰击葡萄悬浮培养物进行的瞬时表达测定表明,VvbZIP在不同位点并通过与其他辅因子的相互作用激活了类黄酮途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号