Fraisier V, Dorbe M F, Daniel-Vedele F
Biologie Cellulaire, INRA de Versailles, France.
Plant Mol Biol. 2001 Jan;45(2):181-90. doi: 10.1023/a:1006426616760.
Higher plants have both high- and low-affinity nitrate uptake systems (HATS and LATS respectively). Here we report the isolation and characterization of two genes, NpNRT1.1 and NpNRT1.2, from Nicotiana plumbaginifolia whose structural features suggest that they both belong to the NRT1 gene family, which is involved in the LATS. Amino acid sequence alignment showed that the N. plumbaginifolia proteins have greater similarity to their corresponding tomato homologues than to each other. Genomic Southern blot analysis indicates that there are probably more than two members of this family in N. plumbaginifolia. Northern blot analysis shows that NpNRT1.2 expression is restricted strictly to roots, whereas NpNRT1.1, in addition to roots, is expressed at a basal level in all other plant organs. Likewise, differential expression in response to external treatments with various N sources was observed for these two genes: NpNRT1.1 can be considered as a constitutively expressed gene whereas NpNRT1.2 expression is dependent strictly on high nitrate concentrations. Finally, over-expression of a gene involved in the HATS does not lead to any modification of LATS gene expression.
高等植物具有高亲和力和低亲和力硝酸盐吸收系统(分别为HATS和LATS)。在此,我们报道了从白花烟草中分离和鉴定出两个基因,即NpNRT1.1和NpNRT1.2,其结构特征表明它们都属于参与LATS的NRT1基因家族。氨基酸序列比对显示,白花烟草蛋白与其相应的番茄同源物之间的相似性高于它们彼此之间的相似性。基因组Southern杂交分析表明,白花烟草中该家族可能有两个以上成员。Northern杂交分析表明,NpNRT1.2的表达严格局限于根部,而NpNRT1.1除根部外,在所有其他植物器官中均以基础水平表达。同样,观察到这两个基因在对各种氮源的外部处理反应中的差异表达:NpNRT1.1可被视为一个组成型表达基因,而NpNRT1.2的表达严格依赖于高硝酸盐浓度。最后,参与HATS的一个基因的过表达不会导致LATS基因表达的任何改变。