Urbanczyk-Wochniak Ewa, Fernie Alisdair R
Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, D-14476 Golm, Germany.
J Exp Bot. 2005 Jan;56(410):309-21. doi: 10.1093/jxb/eri059. Epub 2004 Dec 13.
The role of inorganic nitrogen assimilation in the production of amino acids is one of the most important biochemical processes in plants. For this reason, a detailed broad-range characterization of the metabolic response of tomato (Solanum lycopersicum) leaves to the alteration of nitrate level was performed. Tomato plants were grown hydroponically in liquid culture under three different nitrate regimes: saturated (8 mM NO3-), replete (4 mM NO3-) and deficient (0.4 mM NO3-). All treatments were performed under varied light intensity, with leaf samples being collected after 7, 14, and 21 d. In addition, the short-term response (after 1, 24, 48, and 94 h) to varying nutrient status was evaluated at the higher light intensity. GC-MS analysis of the levels of amino acids, tricarboxylic acid cycle intermediates, sugars, sugar alcohols, and representative compounds of secondary metabolism revealed substantial changes under the various growth regimes applied. The data presented here suggest that nitrate nutrition has wide-ranging effects on plant leaf metabolism with nitrate deficiency resulting in decreases in many amino and organic acids and increases in the level of several carbohydrates and phosphoesters, as well as a handful of secondary metabolites. These results are compared with previously reported transcript profiles of altered nitrogen regimes and discussed within the context of current models of carbon nitrogen interaction.
无机氮同化在氨基酸合成中的作用是植物中最重要的生化过程之一。因此,对番茄(Solanum lycopersicum)叶片对硝酸盐水平变化的代谢反应进行了详细的广泛表征。番茄植株在三种不同硝酸盐处理的液体培养中进行水培:饱和(8 mM NO3-)、充足(4 mM NO3-)和缺乏(0.4 mM NO3-)。所有处理均在不同光照强度下进行,在7、14和21天后采集叶片样本。此外,在较高光照强度下评估了对不同营养状况的短期反应(1、24、48和94小时后)。对氨基酸、三羧酸循环中间体、糖类、糖醇类和次生代谢代表性化合物水平的气相色谱-质谱分析显示,在所应用的各种生长条件下有显著变化。此处呈现的数据表明,硝酸盐营养对植物叶片代谢有广泛影响,硝酸盐缺乏导致许多氨基酸和有机酸减少,几种碳水化合物和磷酸酯水平增加,以及少数次生代谢产物增加。将这些结果与先前报道的氮素状况改变的转录谱进行了比较,并在当前碳氮相互作用模型的背景下进行了讨论。