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Nitrate supply affects root growth differentially in two rice cultivars differing in nitrogen use efficiency

机译:氮素供应对两种氮素利用效率不同的水稻根系生长的影响不同

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Partial nitrate nutrition was testified to improve rice (Oryza sativa L.) growth. However, how partial nitrate nutrition is related to root growth in rice cultivars with different N-use efficiency is still unclear. Two rice cultivars, Nanguang (high N-use efficiency) and Elio (low N-use efficiency), were grown on six ratios of NH (4) (+) /NO (3) (-) in the solution. The response of root growth to partial nitrate nutrition was investigated and N status and auxin concentration were recorded in order to elucidate the mechanisms by which the optimal ratio of NH (4) (+) /NO (3) (-) that controls the architecture of the root system. The length of adventitious and lateral roots was stimulated only in cv. Nanguang by partial nitrate nutrition. Nitrate-stimulated root length in Nanguang resulted mainly from root initiation rather than root elongation. Root biomass was similar between two rice cultivars under NH (4) (+) supplied, while higher root biomass was observed in cv. Nanguang than in cv. Elio under 25% nitrate supplied for 10 weeks. Significant IAA increase was recorded in cv. Nanguang under 25% nitrate presence in the nutrition compared to under sole NH (4) (+) solution. The presence of nitrate increased root initiation in the rice with high N-use efficiency, which led to faster biomass accumulation and higher N-use efficiency at later growth stages.
机译:已证明部分硝酸盐营养可改善水稻(Oryza sativa L.)的生长。但是,尚不清楚氮素利用率不同的水稻品种中硝酸盐的部分营养与根系生长的关系如何。在溶液中以六种比率的NH(4)(+)/ NO(3)(-)种植两个水稻品种Nanguang(氮利用率高)和Elio(氮利用率低)。研究了根部生长对部分硝酸盐营养的响应,并记录了氮的状态和植物生长素的浓度,以阐明控制体系结构的最佳NH(4)(+)/ NO(3)(-)比例的机理。根系统。不定根和侧根的长度仅在简历中被刺激。南光靠部分硝酸盐营养。南光硝酸盐刺激的根长主要来源于根的萌生,而不是根的伸长。在供应NH(4)(+)的两个水稻品种之间,根系生物量相似,而在cv中观察到更高的根系生物量。南光比简历。在25%硝酸盐下的艾里奥(Elio)供应了10周。简历中IAA显着增加。与单独的NH(4)(+)溶液相比,Nanguang营养液中硝酸盐含量低于25%。硝酸盐的存在增加了水稻的氮素利用率,提高了氮素的利用效率,这导致了更快的生物量积累和更高的氮素利用效率。

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