Dooki Aliasghar Dadashi, Mayer-Posner Franz J, Askari Hossein, Zaiee Abed-ali, Salekdeh Ghasem Hosseini
Agricultural Biotechnology Research Institute of Iran, Karaj, Iran.
Proteomics. 2006 Dec;6(24):6498-507. doi: 10.1002/pmic.200600367.
Rice (Oryza sativa) is most sensitive to salinity during the reproductive stage. We employed a proteomic approach to further understand the mechanism of plant responses to salinity at an early reproductive stage. Plants were grown in culture solution and salt stress imposed at panicle initiation. After 12 days of stress, young panicles were collected from control and salt stressed plants. The Na+ and K+ content of panicle and several yield components changed significantly in response to short-term salt stress. The collected panicles were sorted into three different sizes (7 +/- 1, 11 +/- 1, and 15 +/- 1 mm) and their proteome patterns were analyzed using 2-DE in triplicates. The expression pattern of 13 proteins significantly changed in all panicle sizes in response to stress. MS analysis of salt responsive proteins and 16 other highly abundant proteins of panicle led to the identification of proteins involved in several salt responsive mechanisms which may increase plant adaptation to salt stress including higher constitutive expression level and up-regulation of antioxidants, up-regulation of proteins involved in translation, transcription, signal transduction, and ATP generation. To the best of our knowledge, this is the first proteome analysis of plant young panicle which may enhance our understanding of plant molecular responses to salinity. Proteome reference map of rice young panicle is available at http://www.proteome.ir.
水稻(Oryza sativa)在生殖阶段对盐度最为敏感。我们采用蛋白质组学方法来进一步了解植物在生殖早期对盐度的响应机制。将植株种植在培养液中,并在幼穗分化期施加盐胁迫。胁迫12天后,从对照植株和盐胁迫植株上采集幼穗。幼穗的Na+和K+含量以及几个产量构成因素在短期盐胁迫下发生了显著变化。将采集到的幼穗分为三种不同大小(7±1、11±1和15±1毫米),并对其蛋白质组图谱进行三次重复的二维电泳分析。有13种蛋白质的表达模式在所有大小的幼穗中因胁迫而发生了显著变化。对盐响应蛋白和幼穗中其他16种高丰度蛋白进行质谱分析,从而鉴定出了参与几种盐响应机制的蛋白质,这些机制可能会增强植物对盐胁迫的适应性,包括更高的组成型表达水平以及抗氧化剂的上调、参与翻译、转录、信号转导和ATP生成的蛋白质的上调。据我们所知,这是首次对植物幼穗进行蛋白质组分析,这可能会增进我们对植物对盐度分子响应的理解。水稻幼穗的蛋白质组参考图谱可在http://www.proteome.ir获取。