Department of Biological Sciences, Graduate School of Science, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033 Japan.
Plant Cell Physiol. 2010 May;51(5):810-22. doi: 10.1093/pcp/pcq033. Epub 2010 Mar 19.
Expression of alternative oxidase (AOX) and cyanide (CN)-resistant respiration are often highly enhanced in plants exposed to low-nitrogen (N) stress. Here, we examined the effects of AOX deficiency on plant growth, gene expression of respiratory components and metabolic profiles under low-N stress, using an aox1a knockout transgenic line (aox1a) of Arabidopsis thaliana. We exposed wild-type (WT) and aox1a plants to low-N stress for 7 d and analyzed their shoots and roots. In WT plants, the AOX1a mRNA levels and AOX capacity increased in proportion to low-N stress. Expression of the genes of the components for non-phosphorylating pathways and antioxidant enzymes was enhanced, but differences between WT and aox1a plants were small. Metabolome analyses revealed that AOX deficiency altered the levels of certain metabolites, such as sugars and sugar phosphates, in the shoots under low-N stress. However, the carbon (C)/N ratios and carbohydrate levels in aox1a plants were similar to those in the WT under low-N stress. Our results indicated that the N-limited stress induced AOX expression in A. thaliana plants, but the induced AOX may not play essential roles under stress due to low-N alone, and the C/N balance under low-N stress may be tightly regulated by systems other than AOX.
在暴露于低氮(N)胁迫下的植物中,交替氧化酶(AOX)和氰化物(CN)抗性呼吸的表达通常会高度增强。在这里,我们使用拟南芥的 aox1a 敲除转基因系(aox1a)研究了 AOX 缺乏对植物生长、呼吸成分基因表达和代谢谱的影响。我们将野生型(WT)和 aox1a 植物暴露于低氮胁迫下 7 天,并对其地上部分和根部进行了分析。在 WT 植物中,AOX1a mRNA 水平和 AOX 能力随低氮胁迫而增加。非磷酸化途径和抗氧化酶成分的基因表达增强,但 WT 和 aox1a 植物之间的差异很小。代谢组学分析表明,AOX 缺乏会改变低氮胁迫下地上部分某些代谢物(如糖和糖磷酸)的水平。然而,在低氮胁迫下,aox1a 植物的 C/N 比和碳水化合物水平与 WT 相似。我们的结果表明,氮限制胁迫诱导了拟南芥植物中 AOX 的表达,但由于氮素单独胁迫,诱导的 AOX 可能在胁迫下不起关键作用,低氮胁迫下的 C/N 平衡可能受到 AOX 以外的系统的严格调节。