Department of Botany, University of Stockholm, S-106 91 Stockholm, Sweden.
Plant Physiol. 1987 Nov;85(3):865-7. doi: 10.1104/pp.85.3.865.
The effects of ammonium application on nitrate utilization were studied in N-limited cultures of Lemna gibba L. G3. Addition of ammonium instantaneously inhibited net nitrate uptake by at least 60%, followed by a slight recovery. The inhibition was equally clear after near-complete inactivation of glutamine synthetase by application of l-methionine-d,l-sulfoximine. Experiments where (13)N-labeled nitrate was used as an influx tracer revealed that ammonium specifically inhibited influx, but did not promote nitrate efflux. Nitrate accumulation was relatively more inhibited than nitrate reduction and net uptake. Nitrate reductase, extracted and assayed in vitro in the presence of the thiol proteinase inhibitor leupeptin, was unaffected by short-term treatment of the plants with either nitrate, ammonium, or ammonium nitrate. Nitrate reductase activity recovered in the absence of leupeptin was considerably lower; however, it was enhanced by all the nitrogen sources, with ammonium as the most potent. It is argued that the effect of ammonium on nitrate utilization in Lemna is due to inhibition of nitrate influx, and that the effect should be attributed to ammonium itself, not to a newly formed nitrogen derivative. The decreased nitrate flux caused a decrease in nitrate reduction, whereas the activity of nitrate reductase per se rather is stabilized by presence of ammonium.
在 N 限制培养的浮萍 G3 中研究了铵的应用对硝酸盐利用的影响。铵的添加会立即抑制净硝酸盐吸收,至少 60%,随后略有恢复。应用 L-蛋氨酸-d,l-亚砜亚胺几乎完全失活谷氨酰胺合成酶后,抑制作用同样明显。用 (13)N 标记的硝酸盐作为内流示踪剂的实验表明,铵特异性抑制内流,但不促进硝酸盐外排。硝酸盐积累的抑制程度相对高于硝酸盐还原和净吸收。在含有硫醇蛋白酶抑制剂亮肽素的体外提取和测定的情况下,硝酸还原酶不受植物短期处理硝酸盐、铵或硝酸铵的影响。在没有亮肽素的情况下,硝酸还原酶活性的恢复要低得多;然而,所有氮源都能增强它的活性,其中铵的作用最强。因此,铵对浮萍中硝酸盐利用的影响是由于抑制了硝酸盐的内流,并且这种影响应该归因于铵本身,而不是新形成的氮衍生物。减少的硝酸盐通量导致硝酸盐还原减少,而硝酸还原酶本身的活性则通过铵的存在而稳定。