Verdonk Julian C, Haring Michel A, van Tunen Arjen J, Schuurink Robert C
Department of Plant Physiology, Swammerdam Institute for Life Sciences, University of Amsterdam, 1098 SM Amsterdam, The Netherlands.
Plant Cell. 2005 May;17(5):1612-24. doi: 10.1105/tpc.104.028837. Epub 2005 Apr 1.
Floral scent is important to plant reproduction because it attracts pollinators to the sexual organs. Therefore, volatile emission is usually tuned to the foraging activity of the pollinators. In Petunia hybrida, volatile benzenoids determine the floral aroma. Although the pathways for benzenoid biosynthesis have been characterized, the enzymes involved are less well understood. How production and emission are regulated is unknown. By targeted transcriptome analyses, we identified ODORANT1 (ODO1), a member of the R2R3-type MYB family, as a candidate for the regulation of volatile benzenoids in Petunia hybrida cv W115 (Mitchell) flowers. These flowers are only fragrant in the evening and at night. Transcript levels of ODO1 increased before the onset of volatile emission and decreased when volatile emission declined. Downregulation of ODO1 in transgenic P. hybrida Mitchell plants strongly reduced volatile benzenoid levels through decreased synthesis of precursors from the shikimate pathway. The transcript levels of several genes in this pathway were reduced by suppression of ODO1 expression. Moreover, ODO1 could activate the promoter of the 5-enol-pyruvylshikimate-3-phosphate synthase gene. Flower pigmentation, which is furnished from the same shikimate precursors, was not influenced because color and scent biosynthesis occur at different developmental stages. Our studies identify ODO1 as a key regulator of floral scent biosynthesis.
花香对植物繁殖至关重要,因为它能吸引传粉者至性器官。因此,挥发性物质的释放通常会根据传粉者的觅食活动进行调节。在矮牵牛中,挥发性苯类化合物决定了花香。尽管苯类生物合成途径已得到表征,但其中涉及的酶却了解较少。其产生和释放是如何被调控的尚不清楚。通过靶向转录组分析,我们鉴定出R2R3型MYB家族成员气味蛋白1(ODO1)是矮牵牛品种W115(米切尔)花朵中挥发性苯类化合物调控的候选因子。这些花朵仅在傍晚和夜间有香味。ODO1的转录水平在挥发性物质释放开始前升高,在挥发性物质释放减少时降低。在转基因矮牵牛米切尔植株中下调ODO1会通过减少莽草酸途径中前体物质的合成而强烈降低挥发性苯类化合物的水平。该途径中几个基因的转录水平因ODO1表达的抑制而降低。此外,ODO1可激活5-烯醇丙酮酸莽草酸-3-磷酸合酶基因的启动子。由相同莽草酸前体物质产生的花朵色素沉着并未受到影响,因为颜色和香味的生物合成发生在不同的发育阶段。我们的研究确定ODO1是花香生物合成的关键调节因子。