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生态学报  2012 

Protein expression characteristics and their response to nitrogen application during grain-filling stage of rice (Oryza Sativa.L)
水稻籽粒灌浆过程中蛋白质表达特性及其对氮肥运筹的响应

Keywords: Rice,superior and inferior grains,grain filling,proteomics,nitrogen fertilization
水稻
,强弱势籽粒,灌浆,蛋白组学,氮肥

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Abstract:

Grain-filling directly relates to the productivity and quality of rice, and the degree and rate of rice grain-filling differ considerably according to the position to the grain's position on a panicle. In general, the earlier flowering and superior grains, which are located on the apical primary branches, are filled faster and formed larger and heavier grains, while the inferior grains are set on the proximal secondary branches with sterile or poor quality. To meet a high productivity requirement for the modern rice variety, the following issues have to be answered: (a) what is the molecular ecological process of grain-filling, (b) how can the grain-filling of inferior grains be enhanced, and (c) how can the yield of the large panicle rice, in particular, be increased. Previous studies have shown that nitrogen (N) fertilization has significantly positive effect on rice's grain-filling. However, whether N fertilization in the post-growth stage of rice is appropriate largely depending on the dynamic transport of N in rice leaves, which plays an important role in the physiological activity and hence affects the grain-filling of rice. Furthermore, the underlying molecular ecological effect of N fertilization on the grain-filling is less investigated particularly in large-panicle rice in the field. The present study investigated the characteristics of protein expression and their response to different N fertilizations during the grain-filling stage of an indica large-panicle rice cultivar (Jinhui 809), by the 2D technique. The field experiments were carried out at the Experimentation Station of Fujian Agriculture and Forestry University, Fuzhou (119.280E, 26.080 N), Fujian, China during the rice growing season (June-November) in 2006 and 2007. Field management was the same, except the N application ratios between the 2006 and 2007 experiments. In 2006, the 225 kg/hm2 N were applied with the regular fertilization. In 2007, the constant of the total N supply, but the N fertilizer was given in two early to late growth stage application ratios. i.e., 7:3 and 6:4, as the treatments. The grain samples were collected in 2006 and the superior and inferior grains samples under the different N application ratios were collected separately in 2007 were used for the protein extraction. Then, the extracted grain proteins were separated with the two-dimensional gel electrophoresis(2DE) with the Isoelectric focusing (IEF) tube gels for the first dimension, and sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) for the second dimension (2D) separation. A total of 32 differentially expressed proteins at different grain-filling phases were detected by the 2D maps of grain proteome. Among them, 27 proteins were successfully identified by Mass Spectrometry (MS). And, these identified proteins in different grain-filling phases were grouped into five expression patterns according to their functions in starch synthesis, energy metabolism, signal transductio

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