Medina-Puche Laura, Molina-Hidalgo Francisco Javier, Boersma Maaike, Schuurink Robert C, López-Vidriero Irene, Solano Roberto, Franco-Zorrilla José-Manuel, Caballero José Luis, Blanco-Portales Rosario, Muñoz-Blanco Juan
Departamento de Bioquímica y Biología Molecular, Campus Universitario de Rabanales y Campus de Excelencia Internacional Agroalimentario 3, Universidad de Córdoba, 14071 Cordoba, Spain (L.M.-P., F.J.M.-H., J.L.C., R.B.-P., J.M.-B.);Department of Plant Physiology, Swammerdam Institute for Life Sciences, University of Amsterdam, 1098 XH Amsterdam, The Netherlands (M.B., R.C.S.); andGenomics Unit (I.L.-V., J.-M.F.-Z.) and Department of Plant Molecular Genetics (R.S.), Centro Nacional de Biotecnología-Consejo Superior de Investigaciones Científicas, 28049 Madrid, Spain.
Departamento de Bioquímica y Biología Molecular, Campus Universitario de Rabanales y Campus de Excelencia Internacional Agroalimentario 3, Universidad de Córdoba, 14071 Cordoba, Spain (L.M.-P., F.J.M.-H., J.L.C., R.B.-P., J.M.-B.);Department of Plant Physiology, Swammerdam Institute for Life Sciences, University of Amsterdam, 1098 XH Amsterdam, The Netherlands (M.B., R.C.S.); andGenomics Unit (I.L.-V., J.-M.F.-Z.) and Department of Plant Molecular Genetics (R.S.), Centro Nacional de Biotecnología-Consejo Superior de Investigaciones Científicas, 28049 Madrid, Spain
Plant Physiol. 2015 Jun;168(2):598-614. doi: 10.1104/pp.114.252908. Epub 2015 Apr 30.
Eugenol is a volatile phenylpropanoid that contributes to flower and ripe fruit scent. In ripe strawberry (Fragaria × ananassa) fruit receptacles, eugenol is biosynthesized by eugenol synthase (FaEGS2). However, the transcriptional regulation of this process is still unknown. We have identified and functionally characterized an R2R3 MYB transcription factor (emission of benzenoid II [FaEOBII]) that seems to be the orthologous gene of PhEOBII from Petunia hybrida, which contributes to the regulation of eugenol biosynthesis in petals. The expression of FaEOBII was ripening related and fruit receptacle specific, although high expression values were also found in petals. This expression pattern of FaEOBII correlated with eugenol content in both fruit receptacle and petals. The expression of FaEOBII was repressed by auxins and activated by abscisic acid, in parallel to the ripening process. In ripe strawberry receptacles, where the expression of FaEOBII was silenced, the expression of cinnamyl alcohol dehydrogenase1 and FaEGS2, two structural genes involved in eugenol production, was down-regulated. A subsequent decrease in eugenol content in ripe receptacles was also observed, confirming the involvement of FaEOBII in eugenol metabolism. Additionally, the expression of FaEOBII was under the control of FaMYB10, another R2R3 MYB transcription factor that regulates the early and late biosynthetic genes from the flavonoid/phenylpropanoid pathway. In parallel, the amount of eugenol in FaMYB10-silenced receptacles was also diminished. Taken together, these data indicate that FaEOBII plays a regulating role in the volatile phenylpropanoid pathway gene expression that gives rise to eugenol production in ripe strawberry receptacles.
丁香酚是一种挥发性苯丙烷类化合物,它赋予花朵和成熟果实香味。在成熟草莓(凤梨草莓)的果实托杯中,丁香酚由丁香酚合酶(FaEGS2)生物合成。然而,这一过程的转录调控仍不清楚。我们已经鉴定并对一个R2R3 MYB转录因子(苯丙烷类化合物II的释放[FaEOBII])进行了功能表征,它似乎是矮牵牛中PhEOBII的直系同源基因,该基因有助于花瓣中丁香酚生物合成的调控。FaEOBII的表达与成熟相关且具有果实托杯特异性,尽管在花瓣中也发现了高表达值。FaEOBII的这种表达模式与果实托杯和花瓣中的丁香酚含量相关。FaEOBII的表达受到生长素的抑制,并被脱落酸激活,这与成熟过程一致。在成熟草莓托杯中,FaEOBII的表达被沉默,参与丁香酚生成的两个结构基因肉桂醇脱氢酶1和FaEGS2的表达被下调。随后还观察到成熟托杯中丁香酚含量的下降,证实了FaEOBII参与丁香酚代谢。此外,FaEOBII的表达受另一个R2R3 MYB转录因子FaMYB10的控制,FaMYB10调节类黄酮/苯丙烷类途径的早期和晚期生物合成基因。同时,FaMYB10沉默的托杯中丁香酚的含量也减少。综上所述,这些数据表明FaEOBII在挥发性苯丙烷类途径基因表达中起调节作用,该途径导致成熟草莓托杯中丁香酚的产生。