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转NAT3基因水稻氮素利用效率分析(4)

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[11] 查中萍,万丙良,杜雪树,等.农杆菌介导的氮高效利用转基因植株的获得[J].湖北农业科学,2011,50(24):5247-5249. [12] 李合生.植物生理生化实验原理和技术[M].北京:高等教育出版社,2007. [13] FRAISIER

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  [13] FRAISIER V, GOJON A, TILLARD P, et al. Constitutive expression of a putative high-affinity nitrate transporter in Nicotiana plumbaginifolia: evidence for post-transcriptional regulation by a reduced nitrogen source[J]. The Plant Journal, 2000,23(4):489-496.

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  [15] KRAPP A, FRAISIER V, SCHEIBLE W R,et. al. Expression studies of Nrt2: 1Np, a putative high-affinity nitrate transporter: evidence for its role in nitrate uptake[J]. The Plant Journal, 1998,14(6):723-731.

  [16] FILLEUR S, DANIEL V F. Expression analysis of a high-affinity nitrate transporter isolated from Arabidopsis thaliana by differential display[J]. Planta, 1999,207(3):461-469.

  [17] LI W, WANG Y, OKAMOTO M, et. al.Dissection of the AtNRT2.1:AtNRT2.2 inducible high-affinity nitrate transporter gene cluster[J]. Plant Physiol,2007,143:425-433.

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  [19] FILLEUR S, DORBE M F, CEREZO M, et al.An Arabidopsis T-DNA mutant affected in Nrt2 genes is impaired in nitrate uptake[J]. FEBS Lett, 2001,489:220-224.

  [20] LAUGIER E, BOUGUYON E, MAURIS A, et al. Regulation of high-affinity nitrate uptake in roots of Arabidopsis depends predominantly on posttranscriptional control of the NRT2.1/NAR2.1 transport system[J]. Plant physiology, 2012,158(2):1067-1078.

  [21] 彭少兵,黄见良,钟旭华,等.提高中国稻田氮肥利用率的研究策略[J].中国农业科学,2002,35(9):1095-1103.

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