Korea Bio Polytechnic College, 315-1, Chaewoon-ri, Ganggyeong-eup, Nonsan-si, Chungnam, 320-905 Korea.
Physiol Mol Biol Plants. 2009 Jan;15(1):31-41. doi: 10.1007/s12298-009-0003-0. Epub 2009 May 14.
Nitrogen fertilization is essential for increasing rice production to meet the food demands of increasing world's population. We established an in vivo hydroponic rice seedling culture system to investigate physio-biochemical/molecular responses of various rice japonica and indica cultivars to low nitrogen (N). Three-week-old seedlings grown in Yoshida's nutrient solution manifested stable and reproducible symptoms, such as reduced shoot growth and length under low N. Out of 12 genetically selected cultivars, 11 cultivars showed varied degrees of growth reduction response to applied N (4 and 40 ppm N for treatment and control, respectively), whereas one cultivar (no. 12) showed similar growth as the control though its leaf width was smaller than control. Leaves of a representative low N-responsive cultivar (BG90-2) were sampled for revealing protein profiles between low and normal (control) N application by two-dimensional gel electrophoresis (2-DGE). Forty-one proteins were identified with MALDI-TOF-MS and nESI-LC-MS/MS. Assignment of proteins into major (energy metabolism, photosynthesis and oxidative stress) and minor functional categories, revealed many novel low N-responsive proteins, including those having energy/photosynthesis- and defense/stress- and iron homeostasis-related functions. Results suggest the usefulness of proteomics in identifying novel N-responsive proteins and may provide potential markers for rice response to low N.
氮肥对于提高水稻产量以满足不断增长的世界人口的粮食需求至关重要。我们建立了一种活体水培水稻幼苗培养系统,以研究不同水稻粳稻和籼稻品种对低氮(N)的生理生化/分子响应。在 Yoshida 营养液中生长的 3 周龄幼苗表现出稳定且可重复的症状,例如在低氮下,茎生长和长度减少。在 12 个经过基因选择的品种中,有 11 个品种对施加的 N(分别为 4 和 40 ppm N 用于处理和对照)表现出不同程度的生长减少反应,而一个品种(12 号)的生长与对照相似,尽管其叶片宽度小于对照。对具有代表性的低氮响应品种(BG90-2)的叶片进行采样,通过二维凝胶电泳(2-DGE)揭示低氮和正常(对照)氮处理之间的蛋白质图谱。通过 MALDI-TOF-MS 和 nESI-LC-MS/MS 鉴定了 41 种蛋白质。将蛋白质分配到主要(能量代谢、光合作用和氧化应激)和次要功能类别中,揭示了许多新的低氮响应蛋白,包括具有能量/光合作用和防御/应激和铁稳态相关功能的蛋白。结果表明蛋白质组学在鉴定新的 N 响应蛋白方面的有用性,并可能为水稻对低 N 的响应提供潜在的标记。