Suppr超能文献

葡萄中的R2R3MYB转录因子VvMYBPA1可重塑烟草花中的苯丙烷类代谢途径。

The R2R3MYB VvMYBPA1 from grape reprograms the phenylpropanoid pathway in tobacco flowers.

作者信息

Passeri Valentina, Martens Stefan, Carvalho Elisabete, Bianchet Chantal, Damiani Francesco, Paolocci Francesco

机构信息

CNR, Institute of Biosciences and Bioresources, Perugia Division, Via Madonna Alta, 130 06128, Perugia, Italy.

Research and Innovation Center, Fondazione Edmund Mach - IASMA, via E. Mach 1, 38010, San Michele All'adige, Italy.

出版信息

Planta. 2017 Aug;246(2):185-199. doi: 10.1007/s00425-017-2667-y. Epub 2017 Mar 15.

Abstract

This work shows that, in tobacco, the ectopic expression of VvMYBPA1 , a grape regulator of proanthocyanidin biosynthesis, up- or down-regulates different branches of the phenylproanoid pathway, in a structure-specific fashion. Proanthocyanidins are flavonoids of paramount importance for animal and human diet. Research interest increasingly tilts towards generating crops enriched with these health-promoting compounds. Flavonoids synthesis is regulated by the MBW transcriptional complex, made of R2R3MYB, bHLH and WD40 proteins, with the MYB components liable for channeling the complex towards specific branches of the pathway. Hence, using tobacco as a model, here, we tested if the ectopic expression of the proanthocyanidin regulator VvMYBPA1 from grape induces the biosynthesis of these compounds in not-naturally committed cells. Here, we show, via targeted transcriptomic and metabolic analyses of primary transgenic lines and their progeny, that VvMYBPA1 alters the phenylpropanoid pathway in tobacco floral organs, in a structure-specific fashion. We also report that a modest VvMYBPA1 expression is sufficient to induce the expression of both proanthocyanidin-specific and early genes of the phenylpropanoid pathway. Consequently, proanthocyanidins and chlorogenic acids are induced or de novo synthetised in floral limbs, tubes and stamens. Other phenylpropanoid branches are conversely induced or depleted according to the floral structure. Our study documents a novel and distinct function of VvMYBPA1 with respect to other MYBs regulating proanthocyanidins. Present findings may have major implications in designing strategies for enriching crops with health-promoting compounds.

摘要

这项研究表明,在烟草中,原花青素生物合成的葡萄调控因子VvMYBPA1的异位表达以结构特异性方式上调或下调苯丙烷类途径的不同分支。原花青素是对动物和人类饮食至关重要的类黄酮。研究兴趣越来越倾向于培育富含这些促进健康化合物的作物。类黄酮的合成由由R2R3MYB、bHLH和WD40蛋白组成的MBW转录复合体调控,其中MYB组分负责将复合体导向该途径的特定分支。因此,在这里我们以烟草为模型,测试了来自葡萄的原花青素调控因子VvMYBPA1的异位表达是否能在非天然产生这些化合物的细胞中诱导其生物合成。在这里,通过对初代转基因株系及其后代进行靶向转录组和代谢分析,我们表明VvMYBPA1以结构特异性方式改变了烟草花器官中的苯丙烷类途径。我们还报告说,适度的VvMYBPA1表达足以诱导原花青素特异性基因和苯丙烷类途径早期基因的表达。因此,原花青素和绿原酸在花的花瓣、花管和雄蕊中被诱导或重新合成。相反,其他苯丙烷类分支根据花的结构被诱导或减少。我们的研究记录了VvMYBPA1相对于其他调控原花青素的MYB具有一种新且独特的功能。目前的研究结果可能对设计用促进健康的化合物丰富作物的策略具有重要意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验