Wang C, Van den Ende W, Tillberg J E
Department of Botany, Stockholm University, Sweden.
Planta. 2000 Oct;211(5):701-7. doi: 10.1007/s004250000335.
Hydroponically cultivated barley plants were exposed to nitrogen (N)-deficiency followed by N-resupply. Metabolic and genetic regulation of fructan accumulation in the leaves were investigated. Fructan accumulated in barley leaves under N-deficiency was mobilized during N-resupply. The enhanced total activity of fructan-synthesizing enzymes, sucrose:sucrose 1-fructosyltransferase (EC 2.4.1.99) and sucrose:fructan 6-fructosyltransferase (6-SFT; EC 2.4. 1.10) caused by N-deficiency decreased with the mobilization of fructan during N-resupply. The activity of the barley fructan-degrading enzyme, fructan exohydrolyase (EC 3.2.1.80) was less affected by the N status. The low level of foliar soluble acid invertase activity under N-deficiency conditions was maintained during the commencement of N-resupply but increased subsequently. Further analyses by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, western blot and northern blot demonstrated that the fructan accumulation and the total activity of fructan-synthesizing enzymes correlated with the 6-SFT mRNA level. We suggest that the changes in fructan levels under N stress are intimately connected with the regulation of fructan synthetic rate which is mostly controlled by 6-SFT.
水培大麦植株先经历缺氮处理,随后再进行氮素再供应处理。研究了叶片中果聚糖积累的代谢和遗传调控。缺氮条件下大麦叶片中积累的果聚糖在氮素再供应期间被调动。缺氮引起的果聚糖合成酶——蔗糖:蔗糖1-果糖基转移酶(EC 2.4.1.99)和蔗糖:果聚糖6-果糖基转移酶(6-SFT;EC 2.4.1.10)的总活性增强,在氮素再供应期间随着果聚糖的调动而降低。大麦果聚糖降解酶——果聚糖外切水解酶(EC 3.2.1.80)的活性受氮素状况的影响较小。缺氮条件下叶片可溶性酸性转化酶活性较低的水平在氮素再供应开始时保持不变,但随后升高。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、蛋白质免疫印迹和Northern印迹的进一步分析表明,果聚糖积累和果聚糖合成酶的总活性与6-SFT mRNA水平相关。我们认为,氮胁迫下果聚糖水平的变化与主要由6-SFT控制的果聚糖合成速率的调控密切相关。