Morse Alison M, Tschaplinski Timothy J, Dervinis Christopher, Pijut Paula M, Schmelz Eric A, Day Wendy, Davis John M
School of Forest Resources and Conservation, University of Florida, P.O. Box 110410, Gainesville, FL 32611, USA.
Phytochemistry. 2007 Aug;68(15):2043-52. doi: 10.1016/j.phytochem.2007.05.014. Epub 2007 Jun 27.
Metabolic profiling was used to investigate the molecular phenotypes of a transgenic Populus tremula x P. alba hybrid expressing the nahG transgene, a bacterial gene encoding salicylate hydroxylase that converts salicylic acid to catechol. Despite the efficacy of this transgenic approach to reduce salicylic acid levels in other model systems and thereby elucidate roles for salicylic acid in plant signaling, transgenic poplars had similar foliar levels of salicylic acid and catechol to that of non-transformed controls and exhibited no morphological phenotypes. To gain a deeper understanding of the basis for these observations, we analyzed metabolic profiles of leaves as influenced by transgene expression. Expression of nahG decreased quinic acid conjugates and increased catechol glucoside, while exerting little effect on levels of salicylic acid and catechol, the substrate and product, respectively, of the nahG enzyme. This suggests a biological role of elevated constitutive salicylic acid levels in Populus, in contrast to other plant systems in which nahG dramatically reduces salicylic acid levels.
代谢谱分析被用于研究表达nahG转基因的欧洲山杨与银白杨杂交转基因植株的分子表型,nahG是一种细菌基因,编码将水杨酸转化为儿茶酚的水杨酸羟化酶。尽管这种转基因方法在其他模型系统中能有效降低水杨酸水平,从而阐明水杨酸在植物信号传导中的作用,但转基因杨树的叶片水杨酸和儿茶酚水平与未转化对照相似,且未表现出形态学表型。为了更深入地理解这些观察结果的基础,我们分析了受转基因表达影响的叶片代谢谱。nahG的表达降低了奎尼酸共轭物水平,增加了儿茶酚葡糖苷水平,而对nahG酶的底物水杨酸和产物儿茶酚的水平影响很小。这表明杨树中组成型水杨酸水平升高具有生物学作用,这与nahG能显著降低水杨酸水平的其他植物系统形成对比。