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全转录组范围内鉴定由VviMYBF1调控的新型UV-B和光调节的黄酮醇途径基因。

Transcriptome-Wide Identification of Novel UV-B- and Light Modulated Flavonol Pathway Genes Controlled by VviMYBF1.

作者信息

Czemmel Stefan, Höll Janine, Loyola Rodrigo, Arce-Johnson Patricio, Alcalde José Antonio, Matus José Tomás, Bogs Jochen

机构信息

Quantitative Biology Center, University of TübingenTübingen, Germany.

Centre for Organismal Studies HeidelbergHeidelberg, Germany.

出版信息

Front Plant Sci. 2017 Jun 22;8:1084. doi: 10.3389/fpls.2017.01084. eCollection 2017.

Abstract

Flavonols constitute a group of flavonoids with important photoprotective roles in plants. In addition, flavonol content and composition greatly influences fruit quality. We previously demonstrated that the grapevine R2R3-MYB transcription factor (TF) VviMYBF1 promotes flavonol accumulation by inducing the expression of flavonol synthase (), a key step of the initial flavonol pathway. Despite this, gene networks underlying flavonol modification in grapevine including both structural and regulatory genes remain poorly understood. In order to identify flavonol modifying genes and TFs acting downstream of VviMYBF1 a microarray-based transcriptome analysis was performed on grapevine hairy roots ectopically expressing or a Green Fluorescent Protein as control. was induced in VviMYBF1 transgenic roots and glycosylated flavonols accumulated significantly compared with control lines. Among the differentially expressed genes, potential flavonol-modifying enzymes with predicted rhamnosyltransferase (e.g., RhaT1) or glycosyltransferase (e.g., GT3) activities were identified. In addition, important TFs of the MYB and bZIP families such as the proanthocyanidin regulator VviMYBPA1 and the UV-B light responsive HY5 homolog VviHYH were significantly altered in their expression pattern by overexpression of VviMYBF1. Co-temporal expression analysis demonstrated positive correlation of with , , and during berry development and in fruits ripened with different light and UV-B radiation conditions at field. These results show that VviMYBF1 overexpression led to the identification of novel genes of the flavonol pathway and that the flavonol modifying machinery can be influenced by agricultural practices to optimize flavonol composition in grapes.

摘要

黄酮醇是一类在植物中具有重要光保护作用的黄酮类化合物。此外,黄酮醇的含量和组成对果实品质有很大影响。我们之前证明,葡萄R2R3-MYB转录因子(TF)VviMYBF1通过诱导黄酮醇合酶()的表达促进黄酮醇积累,这是黄酮醇初始途径的关键步骤。尽管如此,葡萄中黄酮醇修饰的基因网络,包括结构基因和调控基因,仍然知之甚少。为了鉴定在VviMYBF1下游起作用的黄酮醇修饰基因和转录因子,对异位表达或绿色荧光蛋白作为对照的葡萄毛状根进行了基于微阵列的转录组分析。在VviMYBF1转基因根中诱导表达,与对照品系相比,糖基化黄酮醇显著积累。在差异表达基因中,鉴定出具有预测鼠李糖基转移酶(如RhaT1)或糖基转移酶(如GT3)活性的潜在黄酮醇修饰酶。此外,MYB和bZIP家族的重要转录因子,如原花青素调节因子VviMYBPA1和UV-B光响应HY5同源物VviHYH,在VviMYBF1过表达后其表达模式发生了显著改变。共时表达分析表明,在浆果发育过程中以及在田间不同光照和UV-B辐射条件下成熟的果实中,与、和呈正相关。这些结果表明,VviMYBF1过表达导致了黄酮醇途径新基因的鉴定,并且黄酮醇修饰机制可以受到农业实践的影响,以优化葡萄中的黄酮醇组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b211/5479930/684fda1dcd68/fpls-08-01084-g002.jpg

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