Li Yueqing, Shan Xiaotong, Zhou Liudi, Gao Ruifang, Yang Song, Wang Shucai, Wang Li, Gao Xiang
Key Laboratory of Molecular Epigenetics of MOE and Institute of Genetics and Cytology Northeast, Normal University, Changchun, China.
National Demonstration Center for Experimental Biology Education, Northeast Normal University, Changchun, China.
Front Plant Sci. 2019 Jan 7;9:1935. doi: 10.3389/fpls.2018.01935. eCollection 2018.
The flavonoids are important and nourishing compounds for plants and human. The transcription regulation of anthocyanin and proanthocyanidin (PA) biosynthesis was extensively studied in dicot compared with monocot plants. In this study, we characterized the functionality of an R2R3-MYB gene from the monocotyledonous flowering plant of Iridaceae, Multiple sequence alignment and phylogenetic analysis implied that FhMYB5 was clustered into grapevine VvMYB5b subclade. Correlation analysis indicated that the spatio-temporal expression patterns of coincided well with anthocyanin and PA accumulations in . Furthermore, transient transfection assays in protoplasts revealed that the late flavonoid biosynthetic genes (e.g., and ) were slightly up-regulated by alone, whereas both early and late biosynthetic genes were significantly activated when were co-infected with either of the two IIIf clade bHLH genes, and . Moreover, these results were further confirmed by co-transfection of with either of the bHLH genes aforementioned into protoplasts expressing reporter gene driven by promoters. In addition, the overexpression of in tobacco and could also significantly up-regulate the expression of genes participating in the general flavonoid pathway. In conclusion, was proved to function in the general flavonoid pathway in . The results implied a function conservation of flavonoid biosynthesis related MYB regulators in angiosperm plants.
类黄酮是对植物和人类都很重要且具营养的化合物。与单子叶植物相比,在双子叶植物中对花青素和原花青素(PA)生物合成的转录调控进行了广泛研究。在本研究中,我们对鸢尾科单子叶开花植物中的一个R2R3-MYB基因的功能进行了表征。多序列比对和系统发育分析表明,FhMYB5聚类到葡萄VvMYB5b亚分支中。相关性分析表明,其时空表达模式与[具体植物]中的花青素和PA积累非常吻合。此外,在[具体植物]原生质体中的瞬时转染试验表明,晚期类黄酮生物合成基因(如[具体基因]和[具体基因])单独被FhMYB5轻微上调,而当FhMYB5与两个IIIf进化枝bHLH基因[具体基因1]和[具体基因2]中的任何一个共同感染时,早期和晚期生物合成基因均被显著激活。此外,通过将FhMYB5与上述任何一个bHLH基因共转染到由[具体启动子]驱动的[具体报告基因]表达的原生质体中,进一步证实了这些结果。另外,FhMYB5在烟草和[具体植物]中的过表达也能显著上调参与类黄酮通用途径的基因的表达。总之,FhMYB5被证明在[具体植物]的类黄酮通用途径中发挥作用。这些结果暗示了被子植物中类黄酮生物合成相关MYB调节因子的功能保守性。