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In-season expression of nitrate and ammonium transporter genes in roots of winter wheat (Triticum aestivum L.) genotypes with different nitrogen-uptake efficiencies

机译:不同氮素吸收效率的冬小麦根系中硝态氮和转运蛋白基因的季节表达

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Although nitrate and ammonium transporter genes of wheat have been cloned, little is known about their expression characteristics. A greenhouse experiment was established to study temporal expression patterns over a growing season for four nitrate-transporter genes (TaNRT2.1, TaNRT2.2, TaNRT2.3 and TaNRT1.2) and two ammonium-transporter genes (TaAMT1.1 and TaAMT1.2) in wheat genotypes with different nitrogen (N)-uptake efficiencies. Genotypes that were N-efficient (XY107) and N-inefficient (XY6) were planted in soils that were N-limited (no N added) and N-adequate (added 0.3g N kg(-1) soil). Roots were sampled at tillering, jointing, heading and grain-filling stages, and the expression of the six genes was quantified using real-time, reverse transcription PCR (polymerase chain reaction). Results indicated that maintaining active N uptake during reproduction was the main strategy used by genotype XY107 to sustain its high N-uptake efficiencies in both N treatments. The expression of all NRT and AMT genes showed significant temporal dynamics, and generally matched the pattern of in-season N uptake of wheat plants. Several NRT or AMT genes (especially TaNRT2.1) showed greater expression at reproduction in the N-efficient genotype, XY107, than in the N-inefficient genotype, XY6, suggesting that nitrate and ammonium transporters play important roles in determining the genotypic variation of N uptake in wheat.
机译:尽管已经克隆了小麦的硝酸盐和铵转运蛋白基因,但对其表达特性知之甚少。建立了一个温室实验来研究四个硝酸盐转运蛋白基因(TaNRT2.1,TaNRT2.2,TaNRT2.3和TaNRT1.2)和两个铵转运蛋白基因(TaAMT1.1和TaAMT1)在生长期的时间表达模式。 2)在具有不同氮(N)吸收效率的小麦基因型中。将氮有效型(XY107)和氮无效型(XY6)的基因型种植在氮有限(不添加氮)和氮充足(添加0.3g N kg(-1)土壤)的土壤中。在分ing,拔节,抽穗和灌浆阶段对根进行采样,并使用实时逆转录PCR(聚合酶链反应)对这六个基因的表达进行定量。结果表明,在繁殖过程中保持活跃的氮吸收是基因型XY107在两种氮处理中维持其高氮吸收效率的主要策略。所有NRT和AMT基因的表达均表现出明显的时间动态,并且通常与小麦植物季节性氮吸收的模式相吻合。几个NRT或AMT基因(特别是TaNRT2.1)在N型有效基因型XY107中的繁殖时表达高于N型无效基因型XY6,这表明硝酸盐和铵盐转运蛋白在确定N基因型的基因型变异中起重要作用。小麦吸收氮。

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