University of Stavanger, Centre for Organelle Research, Faculty of Science and Technology, N-4036 Stavanger, Norway.
J Plant Physiol. 2009 Dec 15;166(18):2071-6. doi: 10.1016/j.jplph.2009.05.010. Epub 2009 Jun 18.
Previously we have shown that nitrate reductase (NR) activity was impaired in Arabidopsis seedlings and rosette stage leaves when the basic leucine zipper transcription factors HY5 and HYH were absent. In the present work, we investigated the influence of hy5 and hyh null mutations on the expression of the NR encoding genes NIA1 and NIA2, as well as genes involved in nitrate uptake and further assimilation of nitrite. Only NIA2, and not NIA1, transcript levels were positively influenced by the presence of HY5 and HYH. In the hy5 hyh mutant, enhancement of NIA2 expression by light was impaired in both seedlings and rosette stage plants. Induction of NIA2 transcription by nitrate was not influenced by HY5 or HYH. Although the peak NIA2 transcript level was much higher in wild type in comparison with the hy5 hyh mutant plant, diurnal variations of NIA2 expression were also observed in the mutant. A dual affinity nitrate transporter gene, NRT1.1, was expressed at a higher level in hy5 hyh than in the wild type, indicating that HY5 and HYH are repressors of NRT1.1. In conclusion, HY5 and HYH were activators of NIA2, but inhibitors of NRT1.1 when tested across various light treatments and tissue types.
先前,我们发现当基本亮氨酸拉链转录因子 HY5 和 HYH 缺失时,拟南芥幼苗和莲座叶的硝酸还原酶(NR)活性受到损害。在本研究中,我们研究了 hy5 和 hyh 缺失突变对 NR 编码基因 NIA1 和 NIA2 以及硝酸盐摄取和亚硝酸盐进一步同化相关基因表达的影响。只有 NIA2,而不是 NIA1,其转录水平受到 HY5 和 HYH 的正向影响。在 hy5 hyh 突变体中,光照增强 NIA2 表达的作用在幼苗和莲座叶植物中均受损。HY5 或 HYH 并不影响硝酸盐诱导的 NIA2 转录。尽管与 hy5 hyh 突变体植物相比,野生型植物中 NIA2 转录本的峰值更高,但在突变体中也观察到 NIA2 表达的昼夜变化。双亲和硝酸转运体基因 NRT1.1 在 hy5 hyh 中的表达水平高于野生型,表明 HY5 和 HYH 是 NRT1.1 的抑制剂。总之,在各种光照处理和组织类型中,HY5 和 HYH 是 NIA2 的激活剂,但 NRT1.1 的抑制剂。