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多级工程有助于番茄中苯丙烷类化合物的生成。

Multi-level engineering facilitates the production of phenylpropanoid compounds in tomato.

作者信息

Zhang Yang, Butelli Eugenio, Alseekh Saleh, Tohge Takayuki, Rallapalli Ghanasyam, Luo Jie, Kawar Prashant G, Hill Lionel, Santino Angelo, Fernie Alisdair R, Martin Cathie

机构信息

Department of Metabolic Biology, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.

Max-Planck-Institute of Molecular Plant Physiology, Am Muehlenberg 1, 14476 Potsdam-Golm, Germany.

出版信息

Nat Commun. 2015 Oct 26;6:8635. doi: 10.1038/ncomms9635.

Abstract

Phenylpropanoids comprise an important class of plant secondary metabolites. A number of transcription factors have been used to upregulate-specific branches of phenylpropanoid metabolism, but by far the most effective has been the fruit-specific expression of AtMYB12 in tomato, which resulted in as much as 10% of fruit dry weight accumulating as flavonols and hydroxycinnamates. We show that AtMYB12 not only increases the demand of flavonoid biosynthesis but also increases the supply of carbon from primary metabolism, energy and reducing power, which may fuel the shikimate and phenylalanine biosynthetic pathways to supply more aromatic amino acids for secondary metabolism. AtMYB12 directly binds promoters of genes encoding enzymes of primary metabolism. The enhanced supply of precursors, energy and reducing power achieved by AtMYB12 expression can be harnessed to engineer high levels of novel phenylpropanoids in tomato fruit, offering an effective production system for bioactives and other high value ingredients.

摘要

苯丙烷类化合物是植物次生代谢产物中的一类重要物质。许多转录因子已被用于上调苯丙烷类代谢的特定分支,但迄今为止最有效的方法是在番茄中果实特异性表达AtMYB12,这使得番茄果实干重中有高达10%以黄酮醇和羟基肉桂酸的形式积累。我们发现,AtMYB12不仅增加了类黄酮生物合成的需求,还增加了来自初级代谢的碳、能量和还原力的供应,这可能为莽草酸和苯丙氨酸生物合成途径提供燃料,从而为次生代谢提供更多芳香族氨基酸。AtMYB12直接结合编码初级代谢酶的基因的启动子。通过AtMYB12表达实现的前体、能量和还原力的增加供应,可用于在番茄果实中构建高水平的新型苯丙烷类化合物,为生物活性物质和其他高价值成分提供一个有效的生产系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b97/4639801/694933a39ab2/ncomms9635-f1.jpg

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