Saito Akinori, Tanabata Sayuri, Tanabata Takanari, Tajima Seiya, Ueno Manabu, Ishikawa Shinji, Ohtake Norikuni, Sueyoshi Kuni, Ohyama Takuji
Graduate School of Science and Technology, Niigata University, Niigata 950-2181, Japan.
RIKEN Center for Sustainable Resource Science, Ibaraki 305-0074, Japan.
Int J Mol Sci. 2014 Mar 13;15(3):4464-80. doi: 10.3390/ijms15034464.
The application of combined nitrogen, especially nitrate, to soybean plants is known to strongly inhibit nodule formation, growth and nitrogen fixation. In the present study, we measured the effects of supplying 5 mM nitrate on the growth of nodules, primary root, and lateral roots under light at 28 °C or dark at 18 °C conditions. Photographs of the nodulated roots were periodically taken by a digital camera at 1-h intervals, and the size of the nodules was measured with newly developed computer software. Nodule growth was depressed approximately 7 h after the addition of nitrate under light conditions. The nodule growth rate under dark conditions was almost half that under light conditions, and nodule growth was further suppressed by the addition of 5 mM nitrate. Similar results were observed for the extending growth rate of the primary root as those for nodule growth supplied with 5 mM nitrate under light/dark conditions. In contrast, the growth of lateral roots was promoted by the addition of 5 mM nitrate. The 2D-PAGE profiles of nodule protein showed similar patterns between the 0 and 5 mM nitrate treatments, which suggested that metabolic integrity may be maintained with the 5 mM nitrate treatment. Further studies are required to confirm whether light or temperature condition may give the primary effect on the growth of nodules and roots.
已知向大豆植株施用复合氮,尤其是硝酸盐,会强烈抑制根瘤形成、生长和固氮作用。在本研究中,我们测定了在28℃光照或18℃黑暗条件下供应5 mM硝酸盐对根瘤、主根和侧根生长的影响。用数码相机每隔1小时定期拍摄带根瘤根系的照片,并用新开发的计算机软件测量根瘤大小。在光照条件下添加硝酸盐后约7小时,根瘤生长受到抑制。黑暗条件下根瘤生长速率几乎是光照条件下的一半,添加5 mM硝酸盐进一步抑制了根瘤生长。在光照/黑暗条件下,主根伸长生长速率与供应5 mM硝酸盐的根瘤生长情况观察到类似结果。相反,添加5 mM硝酸盐促进了侧根生长。根瘤蛋白的二维聚丙烯酰胺凝胶电泳图谱在0和5 mM硝酸盐处理之间显示出相似模式,这表明5 mM硝酸盐处理可能维持了代谢完整性。需要进一步研究以确认光照或温度条件是否对根瘤和根系生长产生主要影响。