Leleu Olivier, Vuylsteker Christophe
Unité de Nutrition Azotée des Plantes, INRA Versailles, Route de Saint Cyr, F-78000 Versailles, France.
J Exp Bot. 2004 Apr;55(398):815-23. doi: 10.1093/jxb/erh088. Epub 2004 Feb 27.
The effect of supplying either nitrate or ammonium on nitrate reductase activity (NRA) was investigated in Brassica napus seedlings. In roots, nitrate reductase activity (NRA) increased as a function of nitrate content in tissues and decreased when ammonium was the sole nitrogen source. Conversely, in the shoots (comprising the cotyledons and hypocotyl), NRA was shown to be independent of nitrate content. Moreover, when ammonium was supplied as the sole nitrogen source, NRA in the shoots was surprisingly higher than under nitrate supply and increased as a function of the tissue ammonium content. Under 15 mM of exogenous ammonium, the NRA was up to 2.5-fold higher than under nitrate supply after 6 d of culture. The NR mRNA accumulation under ammonium nutrition was 2-fold higher than under nitrate supply. The activation state of NR in shoots was especially high compared with roots: from nearly 80% under nitrate supply it reached 94% under ammonium. This high NR activation state under ammonium supply could be the consequence of the slight acidification observed in the shoot tissue. The effect of ammonium on NRA was only observed in cotyledons and when more than 3 mM ammonium was supplied. No such NRA increase was evident in the roots or in foliar discs. Addition of 1 mM nitrate under ammonium nutrition halved NRA and decreased the ammonium content in shoots. Thus, this unusual NRA was restricted to seedling cotyledons when nitrate was lacking in the nitrogen source.
研究了供应硝酸盐或铵对甘蓝型油菜幼苗硝酸还原酶活性(NRA)的影响。在根中,硝酸还原酶活性(NRA)随组织中硝酸盐含量的增加而增加,而当铵作为唯一氮源时则降低。相反,在地上部分(包括子叶和下胚轴),NRA显示与硝酸盐含量无关。此外,当铵作为唯一氮源供应时,地上部分的NRA出人意料地高于硝酸盐供应时的水平,并随组织铵含量的增加而增加。在15 mM外源铵处理下,培养6 d后NRA比硝酸盐供应时高出2.5倍。铵营养条件下NR mRNA的积累比硝酸盐供应时高2倍。与根相比,地上部分NR的激活状态特别高:从硝酸盐供应时的近80% 达到铵供应时的94%。铵供应下这种高NR激活状态可能是地上部分组织中观察到的轻微酸化的结果。铵对NRA的影响仅在子叶中观察到,且当供应超过3 mM铵时才出现。在根或叶圆片中没有明显的NRA增加。在铵营养条件下添加1 mM硝酸盐可使NRA减半,并降低地上部分的铵含量。因此,当氮源中缺乏硝酸盐时,这种异常的NRA仅限于幼苗子叶。